Human-carnivore conflict is considered to be a major conservation and livelihood issue (Dar et al., 2009). The present study was conducted to assessed human carnivores’ conflict, its causes, severity and recommending conflict mitigation suggestions. Conflict in the study area was assessed through interview questionnaire, focus group discussions, pasture’s visits and observations. Results showed that 19% respondents had experienced conflict with carnivores. Carnivores depredation on livestock and poultry was the main cause of conflict. Wolves and Foxes are among most blamed carnivores in the study area. Last seven years depredation cases indicated that wolfs are the most destructive and lethal predator of livestock among all. In the pastures wolfs contributed 90% of the total damage. While In the adjacent village’s foxes contributed 73% of the total poultry depredation cases. No records of snow leopard depredation cases were found in the last 7 years. Depredation cases of lynx and jackal were very few. Most of the livestock depredation reported during the summer months from May to September while most of poultry depredation w0ere reported during the winter months from September to March. Respondents revealed that no compensation had given to the affected households, not from the responsible authorities nor from NGOs, that’s why their perception towards carnivore is not good. Of the total 28% recommended killing of carnivores, 22% were in favor of paying compensation for losses to affect. While few recommended improving of sheds/corals, employee youth as a guard, understand carnivore’s habitat to reduce conflict. Results indicates that human carnivore conflict is intense in the area. However, it could be reduced by multi-prolonged conservation programs includes compensation, insurance programs, awareness creation and Improving the livestock and poultry Corals/Sheds. Introducing trophy hunting in the area can also play a vital role in mitigating conflict. The money generated from hunting can be utilized for losses compensation and developmental purposes in the area. Keywords: Human-Carnivore conflict; Depredation; Snow leopard; Wolf; Fox; Lynx; Jackal References Ahmad, A. (2013). Study on Livestock depredation pattern in Rumboor and Laspur valley Chitral (World Wide Fund for Nature Pakistan) pp 11. Ahmed, H. (2017). Assessment of Human Widlife Conflicts in Chitral Gol National Park. Wildlife Division Chitral Gol National Park. 21 pp Atwood, T. C., Weeks, H. P., & Gehring, T. M. (2004). Spatial ecology of coyotes along a suburban-to-rural gradient. Journal of Wildlife Management, 68(4), 1000-1009. Bless, C., Higson-Smith, C., & Kagee, A. (2006). Fundamentals of social research methods: An African perspective. Juta and Company Ltd. pp 200 Dar, N. I., Minhas, R. A., Zaman, Q., & Linkie, M. (2009). Predicting the patterns, perceptions and causes of human–carnivore conflict in and around Machiara National Park, Pakistan. Biologica
人类与食肉动物的冲突被认为是一个主要的保护和生计问题(Dar et al., 2009)。本研究旨在评估人类食肉动物的冲突、冲突的原因、严重程度,并提出缓解冲突的建议。通过访谈问卷、焦点小组讨论、牧场走访和观察等方式对研究区冲突进行评估。结果显示,19%的受访者经历过与食肉动物的冲突。肉食动物对牲畜和家禽的掠夺是冲突的主要原因。在研究地区,狼和狐狸是最受指责的食肉动物。过去7年的捕食案例表明,狼是所有动物中最具破坏性和致命性的捕食者。在牧场,狼造成的破坏占总破坏的90%。而在邻近的村庄,狐狸占家禽掠夺案件总数的73%。在过去的7年里,没有发现雪豹捕食的记录。猞猁和豺狼的掠食案例很少。主要发生在夏季的5 - 9月,而主要发生在冬季的9 - 3月。受访者透露,受影响的家庭没有得到任何补偿,无论是主管部门还是非政府组织,这就是为什么他们对食肉动物的看法不好。28%的人建议杀死食肉动物,22%的人赞成赔偿损失。虽然很少有人建议改善棚屋/珊瑚,但员工青年作为警卫,了解食肉动物的栖息地以减少冲突。结果表明,该地区人类食肉动物冲突较为激烈。然而,它可以通过多个长期的保护计划来减少,包括赔偿,保险计划,提高意识和改善畜禽珊瑚/棚。在该地区引入战利品狩猎也可以在缓解冲突方面发挥至关重要的作用。狩猎所得可用于赔偿损失和该地区的发展目的。关键词:人肉冲突;掠夺;雪豹;狼;狐狸;山猫;艾哈迈德,A.(2013)。拉姆布尔和拉斯普尔河谷的牲畜掠夺模式研究(世界自然基金会巴基斯坦)第11页。Ahmed, H.(2017)。吉德拉尔戈尔国家公园人类与野生动物冲突评估吉德拉戈尔国家公园野生动物部。21页。阿特伍德,t.c.,威克斯,h.p.和格林,t.m.(2004)。郊狼沿城郊-乡村梯度的空间生态学。野生动物学报,28(4),391 - 391。Bless, C., Higson-Smith, C., & Kagee, A.(2006)。社会研究方法基础:非洲视角。Juta和公司有限公司pp 200 Dar, n.i., Minhas, R. A., Zaman, Q., & Linkie, M.(2009)。预测巴基斯坦马基亚拉国家公园及其周边地区人类与食肉动物冲突的模式、观念和原因。生物保护,42(10),2076-2082。Hameed, Din, j . U S。,沙,k . A。汗·M·A。汗,年代,阿里,M。&纳瓦兹·M·A(2013)。巴基斯坦兴都库什山脉犬科动物数量及其与人类的冲突评价。实践中的野生动物生物学,9(2)。Don Carlos, a.w., Bright, a.d., Teel, t.l.和Vaske, j.j.(2009)。城市地区人与黑熊的冲突:管理应对的综合方法。野生动物的人文维度,14(3),174-184。Inskip, C, & Zimmermann, A.(2009)。人地冲突:世界范围内的模式和优先事项回顾。羚羊,43(1),18-34。Karanth, K. U, Sunquist, M. E, and Chinnappa, K. M.(1999)。对老虎的长期监测:从Nagarahole吸取的教训。骑虎:在人类主导的景观中保护老虎。剑桥大学出版社,英国剑桥,114-122。凯勒特,S. R.,布莱克,M.,拉什,C. R.,巴斯,A. J.(1996)。北美人类文化与大型食肉动物保护。生态学报,2009(4),379 - 379。Linkie, M., Dinata, Y., Nofrianto, A., and Leader ?——Williams, N.(2007)。苏门答腊岛Kerinci Seblat国家公园及其周围野生动物作物袭击的模式和看法。动物保护,10(1),127-135。罗迪,A.(2007)。《巴基斯坦阿尤比亚国家公园的豹子保护》,77页。麦克伦南,s.d.,格鲁姆,r.j.,麦克唐纳,d.w.和弗兰克,l.g.(2009)。评估一项补偿计划,以使牧民对狮子的容忍度提高。生物保护,42(11),2419-2427。Meriggi, A, and Lovari, S.(1996)。南欧狼捕食的回顾:狼是否更喜欢野生猎物而不是牲畜?应用生态学报,33(6),1561-1571。Morehouse, a.t., Tigner, J., & Boyce, m.s.(2018)。捕食者补偿计划支持与大型食肉动物共存。环境管理,61(5),719-731。ponzi, b.p., Lepczyk, c.a., & Kissui, b.m.(2014)。 坦桑尼亚北部马赛草原野生食肉动物造成的牲畜损失特征及分布人类与野生动物互动,8(2),7。诺顿�?——特里夫斯,L.(1998)。乌干达基巴莱国家公园附近的野生动物预测作物受损模式。生态学报,2012(1),344 - 344。Poessel, S. A, Breck, S. W., Teel, T. L, Shwiff, S., croooks, K. R., and Angeloni, L.(2013)。丹佛都市圈人类与土狼冲突的模式。张建军,张建军,张建军,等(2000)。美洲虎、美洲狮、它们的猎物基地和牧场:管理问题的生态视角(博士论文,佛罗里达大学)228页。Satterfield, L.(2009)。追踪雪豹:拉达克(印度)可持续野生动物保护。霍利奥克山学院。MS thesis-Tibetan and Himalayan Studies, SIT, 72页。silliro - zubiri, C, & Laurenson, M. K.(2001)。食肉动物与当地社区的互动:冲突还是共存?(剑桥大学出版社)第35页。特里夫斯,A, Karanth, k.u.(2003)。人类�?食肉动物冲突和食肉动物管理的观点。生态学报,17(6),1491-1499。
{"title":"Assessment of human-carnivore conflict in Chitral, Pakistan","authors":"O. Ahmad","doi":"10.15421/2020_258","DOIUrl":"https://doi.org/10.15421/2020_258","url":null,"abstract":"Human-carnivore conflict is considered to be a major conservation and livelihood issue (Dar et al., 2009). The present study was conducted to assessed human carnivores’ conflict, its causes, severity and recommending conflict mitigation suggestions. Conflict in the study area was assessed through interview questionnaire, focus group discussions, pasture’s visits and observations. Results showed that 19% respondents had experienced conflict with carnivores. Carnivores depredation on livestock and poultry was the main cause of conflict. Wolves and Foxes are among most blamed carnivores in the study area. Last seven years depredation cases indicated that wolfs are the most destructive and lethal predator of livestock among all. In the pastures wolfs contributed 90% of the total damage. While In the adjacent village’s foxes contributed 73% of the total poultry depredation cases. No records of snow leopard depredation cases were found in the last 7 years. Depredation cases of lynx and jackal were very few. Most of the livestock depredation reported during the summer months from May to September while most of poultry depredation w0ere reported during the winter months from September to March. Respondents revealed that no compensation had given to the affected households, not from the responsible authorities nor from NGOs, that’s why their perception towards carnivore is not good. Of the total 28% recommended killing of carnivores, 22% were in favor of paying compensation for losses to affect. While few recommended improving of sheds/corals, employee youth as a guard, understand carnivore’s habitat to reduce conflict. Results indicates that human carnivore conflict is intense in the area. However, it could be reduced by multi-prolonged conservation programs includes compensation, insurance programs, awareness creation and Improving the livestock and poultry Corals/Sheds. Introducing trophy hunting in the area can also play a vital role in mitigating conflict. The money generated from hunting can be utilized for losses compensation and developmental purposes in the area. \u0000 \u0000Keywords: Human-Carnivore conflict; Depredation; Snow leopard; Wolf; Fox; Lynx; Jackal \u0000 \u0000 \u0000References \u0000 \u0000Ahmad, A. (2013). Study on Livestock depredation pattern in Rumboor and Laspur valley Chitral (World Wide Fund for Nature Pakistan) pp 11. \u0000 \u0000Ahmed, H. (2017). Assessment of Human Widlife Conflicts in Chitral Gol National Park. Wildlife Division Chitral Gol National Park. 21 pp \u0000 \u0000Atwood, T. C., Weeks, H. P., & Gehring, T. M. (2004). Spatial ecology of coyotes along a suburban-to-rural gradient. Journal of Wildlife Management, 68(4), 1000-1009. \u0000 \u0000Bless, C., Higson-Smith, C., & Kagee, A. (2006). Fundamentals of social research methods: An African perspective. Juta and Company Ltd. pp 200 \u0000 \u0000Dar, N. I., Minhas, R. A., Zaman, Q., & Linkie, M. (2009). Predicting the patterns, perceptions and causes of human–carnivore conflict in and around Machiara National Park, Pakistan. Biologica","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"61-65"},"PeriodicalIF":0.0,"publicationDate":"2020-12-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"41697943","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
P. Nykytiuk, V. Moroz, O. Komorna, Yu. A. Nykytiuk, A . Raschenko
Chicken farms need to improve existing and introduce new technologies for the construction of appropriate wastewater treatment plants and processing of solid manure, which will ensure proper treatment of waste before it enters the environment. The results of determining the ecological indices of the sanitary protection zone of poultry farms indicate their negative impact on the biological diversity and richness of insect groups. In particular, the value of the Margalef species richness index is 25% less in the special protected zones in farms, compared to the control area, and the value of Shannon's species diversity by 12%. Further reduction of species diversity may lead to rapid degradation of ecosystems adjacent to the area of poultry farms. The assessment of taxonomic diversity, complexity of insect groups and their competitive structure in the area of poultry production proved the inverse relationship between the percentage of eudominants and sub-precedents, as well as the predominance of the percentage of precedents over the percentage of dominant. Keywords: Technology of environmental protection; Animal complexes; Bioindication; Protection of atmospheric air; Entomological communities; Indices of species diversity References Nahm, K.H. (2005). Factors influencing nitrogen mineralization during poultry litter composting and calculations for available nitrogen. World’s poultry science journal, 61, 238–255. Pelletier, N. (20080. Environmental performance in the US broiler poultry sector: Life cycle energy use and greenhouse gas, ozone depleting, acidifying and eutrophying emissions. Agricultural Systems, 98, 67–73. Pielou, E.C. (1975). Ecological diversity. New York: Wiley. Shannon, C.E. (1949). The mathematical theory of communication. Urbana: Univ. Illinois press. Shennon, K. (1963). Rabota po teoryy ynformacyy y kibernetyky. Moscow. Izdatelstvo inostrannooy literatury, Szogi, A.A. (2009). Prospects for phosphorus recovery from poultry. Bioresource Technology, 22, 5461– 5465.
{"title":"Species diversity indices in poultry farms insect communities","authors":"P. Nykytiuk, V. Moroz, O. Komorna, Yu. A. Nykytiuk, A . Raschenko","doi":"10.15421/2020_259","DOIUrl":"https://doi.org/10.15421/2020_259","url":null,"abstract":"Chicken farms need to improve existing and introduce new technologies for the construction of appropriate wastewater treatment plants and processing of solid manure, which will ensure proper treatment of waste before it enters the environment. The results of determining the ecological indices of the sanitary protection zone of poultry farms indicate their negative impact on the biological diversity and richness of insect groups. In particular, the value of the Margalef species richness index is 25% less in the special protected zones in farms, compared to the control area, and the value of Shannon's species diversity by 12%. Further reduction of species diversity may lead to rapid degradation of ecosystems adjacent to the area of poultry farms. The assessment of taxonomic diversity, complexity of insect groups and their competitive structure in the area of poultry production proved the inverse relationship between the percentage of eudominants and sub-precedents, as well as the predominance of the percentage of precedents over the percentage of dominant. \u0000 \u0000Keywords: Technology of environmental protection; Animal complexes; Bioindication; Protection of atmospheric air; Entomological communities; Indices of species diversity \u0000 \u0000 \u0000References \u0000 \u0000Nahm, K.H. (2005). Factors influencing nitrogen mineralization during poultry litter composting and calculations for available nitrogen. World’s poultry science journal, 61, 238–255. \u0000 \u0000Pelletier, N. (20080. Environmental performance in the US broiler poultry sector: Life cycle energy use and greenhouse gas, ozone depleting, acidifying and eutrophying emissions. Agricultural Systems, 98, 67–73. \u0000 \u0000Pielou, E.C. (1975). Ecological diversity. New York: Wiley. \u0000 \u0000Shannon, C.E. (1949). The mathematical theory of communication. Urbana: Univ. Illinois press. \u0000 \u0000Shennon, K. (1963). Rabota po teoryy ynformacyy y kibernetyky. Moscow. Izdatelstvo inostrannooy literatury, \u0000 \u0000Szogi, A.A. (2009). Prospects for phosphorus recovery from poultry. Bioresource Technology, 22, 5461– 5465.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"66-68"},"PeriodicalIF":0.0,"publicationDate":"2020-12-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"46267984","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
Yu. Chuprina, I. Klymenko, D. Havva, L. Golovan, I. Buzina, A. Y. Titova, V. Mikheev, I. V. Zabrodina, S. Stankevych
In the Eastern Forest-Steppe zone of Ukraine, which is characterized by a sharp change in weather conditions during the growing season of agricultural crops, it is very important to grow hybrids that are most adapted to frequent weather anomalies during the growing season. This can significantly reduce their negative impact on the productivity of spring wheat. The results of a study of 20 samples (soft spring wheat Triticum aestivum L.) and (durum spring wheat Tr?ticum durum) of different ecological and geographical origin for adaptability when changing environmental conditions (Ukraine, Russia, Kazakhstan, Mexico, Sweden) are presented. Adaptability indicators were determined by the following characteristics: mass of one spike, mass of grain from one spike, number of grains from one spike, mass of 1000 seeds, mass of grain from 1 m2. Samples that have high plasticity and stability by these characteristics have been identified. As a result of the conducted studies, the dependence between the main signs of productivity were established: the number of grains from one spike, the mass of grains from one spike, the mass of 1000 seeds, the mass of one spike, the mass of seeds from 1 m2 of Triticum aestium and Triticum durum samples. We have considered the adaptability of selection characteristics of samples by years with different environmental conditions: air temperature, relative humidity, precipitation amount, and hydrothermal coefficient. Keywords: Spring wheat; sample; yield; adaptability; plasticity; cropping
{"title":"The level of adaptability of perspective samples of soft and durum spring wheat in Ukrainian forest-steppe","authors":"Yu. Chuprina, I. Klymenko, D. Havva, L. Golovan, I. Buzina, A. Y. Titova, V. Mikheev, I. V. Zabrodina, S. Stankevych","doi":"10.15421/2020_251","DOIUrl":"https://doi.org/10.15421/2020_251","url":null,"abstract":"In the Eastern Forest-Steppe zone of Ukraine, which is characterized by a sharp change in weather conditions during the growing season of agricultural crops, it is very important to grow hybrids that are most adapted to frequent weather anomalies during the growing season. This can significantly reduce their negative impact on the productivity of spring wheat. \u0000 \u0000The results of a study of 20 samples (soft spring wheat Triticum aestivum L.) and (durum spring wheat Tr?ticum durum) of different ecological and geographical origin for adaptability when changing environmental conditions (Ukraine, Russia, Kazakhstan, Mexico, Sweden) are presented. Adaptability indicators were determined by the following characteristics: mass of one spike, mass of grain from one spike, number of grains from one spike, mass of 1000 seeds, mass of grain from 1 m2. Samples that have high plasticity and stability by these characteristics have been identified. \u0000 \u0000As a result of the conducted studies, the dependence between the main signs of productivity were established: the number of grains from one spike, the mass of grains from one spike, the mass of 1000 seeds, the mass of one spike, the mass of seeds from 1 m2 of Triticum aestium and Triticum durum samples. We have considered the adaptability of selection characteristics of samples by years with different environmental conditions: air temperature, relative humidity, precipitation amount, and hydrothermal coefficient. \u0000 \u0000Keywords: Spring wheat; sample; yield; adaptability; plasticity; cropping","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"12-22"},"PeriodicalIF":0.0,"publicationDate":"2020-11-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"48702059","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
V. Lyasota, T. Bakhur, M. V. Utechenko, M. Fedorchenko, I. O. Rublenko, N. Bukalova, N. Bogatko, A. Antipov, S. Tkachuk, T. Prilipko, N. I. Sakhniuk, A. F. Bogatko
We presented the effect of prebiotic "Bio-active" on preservation, increase of the body weight, the microflora composition in the distal small intestine, histological examination of the intestinal wall and liver of rabbits gray giant breed 45 days aged. Prebiotic "Bio-active" contains products of metabolism of lactic acid bacteria Lactobacillus bulgaricus delbrueckii adsorbed on zeolite. Our results proved the safety of this prebiotic for the rabbits. Optimal scheme for oral administration of the prebiotic was 2.0 g per 1 kg of body weight for 30 days. Such a course provided 95% of animal preservation and increase in the weight gain of the experimental animals, an average of 43.1% compared with the non-treated rabbits. In scarifies of distal intestine in 20% of animals that received the prebiotic and in 100% of those who did not receive it, Bacteria of Proteus genus have been detected. After the course of prebiotic we registered an increased number of Enterobacteriaceae (4.5–6.0 × 108 CFU) and Bifidobacteria (8 × 107–108 CFU) in rabbits’ intestines. We also mentioned the enhanced gram-positive/gram-negative ratio with a predominance of gram-positive (1:1.17 against 1:2.9 in control group). In case of prebiotic usage, the stimulation of goblet cells’ development was determined in the small intestine walls. Almost 100% of rabbits, who did not receive the prebiotic, had dystrophic changes in hepatocytes (74.5 % of the animals had fatty hepato-dystrophy and 25 % had protein granular dystrophy). We registered that only 25% of the animals had fatty hepato-dystrophy and 15% had protein granular dystrophy among those, which received the preparation.
{"title":"Effect of a complex prebiotic preparation on the preservation, growth intensity and microflora in rabbits intestine","authors":"V. Lyasota, T. Bakhur, M. V. Utechenko, M. Fedorchenko, I. O. Rublenko, N. Bukalova, N. Bogatko, A. Antipov, S. Tkachuk, T. Prilipko, N. I. Sakhniuk, A. F. Bogatko","doi":"10.15421/2020_250","DOIUrl":"https://doi.org/10.15421/2020_250","url":null,"abstract":"We presented the effect of prebiotic \"Bio-active\" on preservation, increase of the body weight, the microflora composition in the distal small intestine, histological examination of the intestinal wall and liver of rabbits gray giant breed 45 days aged. Prebiotic \"Bio-active\" contains products of metabolism of lactic acid bacteria Lactobacillus bulgaricus delbrueckii adsorbed on zeolite. Our results proved the safety of this prebiotic for the rabbits. Optimal scheme for oral administration of the prebiotic was 2.0 g per 1 kg of body weight for 30 days. Such a course provided 95% of animal preservation and increase in the weight gain of the experimental animals, an average of 43.1% compared with the non-treated rabbits. In scarifies of distal intestine in 20% of animals that received the prebiotic and in 100% of those who did not receive it, Bacteria of Proteus genus have been detected. After the course of prebiotic we registered an increased number of Enterobacteriaceae (4.5–6.0 × 108 CFU) and Bifidobacteria (8 × 107–108 CFU) in rabbits’ intestines. We also mentioned the enhanced gram-positive/gram-negative ratio with a predominance of gram-positive (1:1.17 against 1:2.9 in control group). In case of prebiotic usage, the stimulation of goblet cells’ development was determined in the small intestine walls. Almost 100% of rabbits, who did not receive the prebiotic, had dystrophic changes in hepatocytes (74.5 % of the animals had fatty hepato-dystrophy and 25 % had protein granular dystrophy). We registered that only 25% of the animals had fatty hepato-dystrophy and 15% had protein granular dystrophy among those, which received the preparation.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":" ","pages":""},"PeriodicalIF":0.0,"publicationDate":"2020-11-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"41611902","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
I. Suhanova, S. Sonko, O. Vasylenko, O. Nikitina, A. Balabak, M. Shchetyna, I. Hurskyi, N. Shevchenko, L. Soroka, N. Nechyporenko
We studied the interrelation between the population health and content of heavy metals in the soils of urban ecosystems. We researched the situation in the city of Uman, Cherkasy region (Ukraine), and determined the links between the ecological quality of the urban environment and the occurrence of ecologically dependent diseases (oncopathology) in the old industrial region (Kryvyi Rih iron-ore basin). We found that the indicators did not exceed the MPC using spectral analysis of the gross content of Cu and Zn, in Uman soils. Spectral analysis of the content of mobile forms of heavy metals in the city soils was performed since mobile forms of heavy metals can be assimilated by plants and subsequently enter the human body and the abiotic component of the ecosystem of extraordinary danger to living organisms. We registered that Ni and Pb content significantly exceeded the MPC, especially in the city areas with heavy traffic. Correlation analysis showed a correlation of low and medium level (r = 0.40–0.52) between the content of mobile forms of heavy metals and the rate of oncological diseases. The correlation for Pb and Ni, the content of which significantly exceeded the MPC, was 0.40 and 0.49, respectively. Thus, we concluded that heavy metals could be a dangerous factor in the territory of Uman. Keywords: heavy metals; gross content; content of movable connections; urban ecosystem; ecologically specified diseases; oncopathology References Alekseenko, V.A., Suvorinov, A.V., Vlasova, E.V. (2011). Metals in the environment: assessment of ecological and geochemical changes. Logos, Moscow (in Russian). Alloway, B. J. (2013). Sources of heavy metals and metalloids in soils. Heavy metals in soils (Dordrecht: Springer Netherlands), 11–50. Djuvelikjan, H.A., Zheglov, D.I., Gorbunova, N.S. (2009). Soil contamination with heavy metals. Methods of control and regulation of contaminated soils. Voronezh. Fan, Zhang, Xuedong, Yan, Chen, Zeng (2012). Influence of traffic activity on heavy metal concentrations of roadside farmland soil in mountainous areas. Int J Environ Res Public Health, 9(5), 1715–1731. doi: 10.3390/ijerph9051715. Gasangadjieva, A.G. (2010). Ecological and geographical principles of predicting the incidence of malignant neoplasms in the population of the Republic of Dagestan. Mahachkala. Glazovskaja, M.A. (2007). Geochemistry of natural and technogenic landscapes. (Landscape-geochemical processes). Moscow. Human Exposure Assessment. (2000). Environmental Health ?riteria. Geneva. WHO/IPCS. Jarup, L. (2003). Hazards of heavy metal contamination December British. Medical Bulletin, 68(1), 167-182. doi: 10.1093/bmb/ldg032. Kiku, P. F. (2010). Socio-hygienic analysis of the impact of environmental factors on distribution of ecology-dependent diseases. Bulletin SB RAMS, 30(1), 31–56. Ljung, K., Selinus, O., Otabbong, E. (2006). Metals in soils of children's urban environments in the small northern European city
我们研究了人口健康与城市生态系统土壤重金属含量之间的相互关系。我们研究了乌克兰切尔卡西地区乌曼市的情况,并确定了城市环境的生态质量与旧工业区(Kryvyi-Rih铁矿盆地)生态依赖性疾病(肿瘤学)发生之间的联系。通过对乌曼土壤中Cu和Zn总含量的光谱分析,我们发现这些指标没有超过MPC。对城市土壤中重金属的移动形式含量进行了光谱分析,因为移动形式的重金属可以被植物吸收,随后进入人体和对生物具有特殊危险的生态系统的非生物成分。我们发现,Ni和Pb含量显著超过MPC,尤其是在交通繁忙的城市地区。相关分析显示,重金属的流动形式含量与肿瘤疾病发生率之间存在中低水平的相关性(r=0.40–0.52)。铅和镍的含量显著超过MPC,其相关性分别为0.40和0.49。因此,我们得出结论,重金属可能是乌曼地区的一个危险因素。关键词:重金属;毛含量;可移动连接的内容;城市生态系统;生态特定疾病;肿瘤学参考文献Alekseenko,V.A.,Suvorinov,A.V.,Vlasova,E.V.(2011)。环境中的金属:生态和地球化学变化的评估。Logos,莫斯科(俄语)。Alloway,B.J.(2013)。土壤中重金属和类金属的来源。土壤中的重金属(Dordrecht:Springer Netherlands),11–50。Djuvelikjan,H.A.,Zheglov,D.I.,Gorbunova,N.S.(2009)。重金属污染土壤。污染土壤的控制和调节方法。沃罗涅日。范,张,薛东,严,陈,曾(2012)。交通活动对山区路边农田土壤重金属浓度的影响。Int J Environ Res Public Health,9(5),1715–1731.doi:10.3390/ijerph9051715。Gasangadjieva,A.G.(2010)。预测达吉斯坦共和国人口恶性肿瘤发病率的生态和地理原则。马哈奇卡拉。格拉佐夫斯卡娅,M.A.(2007)。自然景观和技术景观的地球化学。(景观地球化学过程)。莫斯科人体暴露评估。(2000)。环境健康?criteria。日内瓦世界卫生组织/化学品安全方案。Jarup,L.(2003)。重金属污染的危险12月英国。《医学公报》,68(1),167-182。doi:10.1093/bmb/ldg032。Kiku,P.F.(2010)。环境因素对生态依赖性疾病分布影响的社会卫生分析。SB RAMS公告,30(1),31-56。Ljung,K.,Selinus,O.,Otabbong,E.(2006)。北欧小城乌普萨拉儿童城市环境土壤中的金属。《整体环境科学》,366(2-3),749。Patz,J.A.(1996)。健康适应气候变化:需要有远见的综合办法。In:适应气候变化:国际视角。Smith,J.(编辑),美国纽约,施普林格出版社。Pope,C.A.3rd,Ezzati,M.,Dockery,D.W.(2009)。美国的细颗粒空气污染和预期寿命。《新英格兰医学杂志》,360376-86。Pruss-Ustun,A.,Corvalan,C.(2006)。通过健康的环境预防疾病。用于估计疾病的环境负担。瑞士日内瓦:世界卫生组织(世界卫生组织)出版社。Reena Singh,Neetu Gautam,Anurag Mishra(2011)。重金属与生命系统:印度药理学杂志综述,43(3),246–253。doi:10.4103-0253-7613.81505。Savolainen,H.(1996)。镍毒性的生化和临床方面。Rev Environ Health,1167-73。Semenova,Z.A(2010)。医学地理学——人、自然和社会的科学。社会经济地理学理论:现状与发展前景。Rostov na Donu(俄语)。Shyjan,D.V.(2011)。Kryvbas人口中生态依赖性疾病发病率的公共地理研究。顿涅茨克社会教育学院公报:地理系列,7,132-135(乌克兰语)。Shmatkov,G.G.,Oksamytnyi,A.F.,Nikolaeva,I.N.(2009)。确保技术密集地区安全生活的环境问题(以第聂伯罗彼得罗夫斯克地区为例)。生态与自然管理,12,42-47(乌克兰语)。Sonko,S.P.,Shiyan,D.V.(2015)。基于空间扩散模型的克里夫巴斯老工业区人口发病率研究。《社会经济地理学杂志:区域间科学论文集》,18(1),63–70(乌克兰语)。Sonko,S.P.,Suhanova,I.P.,Golubkina,O.M.(2012)。生态决定的人口发病率水平,作为环境状况的生物指标。继续Reg.Sc.Conf。
{"title":"Effect of heavy metals soil contamination on the oncological diseases rate","authors":"I. Suhanova, S. Sonko, O. Vasylenko, O. Nikitina, A. Balabak, M. Shchetyna, I. Hurskyi, N. Shevchenko, L. Soroka, N. Nechyporenko","doi":"10.15421/2020_249","DOIUrl":"https://doi.org/10.15421/2020_249","url":null,"abstract":"We studied the interrelation between the population health and content of heavy metals in the soils of urban ecosystems. We researched the situation in the city of Uman, Cherkasy region (Ukraine), and determined the links between the ecological quality of the urban environment and the occurrence of ecologically dependent diseases (oncopathology) in the old industrial region (Kryvyi Rih iron-ore basin). We found that the indicators did not exceed the MPC using spectral analysis of the gross content of Cu and Zn, in Uman soils. Spectral analysis of the content of mobile forms of heavy metals in the city soils was performed since mobile forms of heavy metals can be assimilated by plants and subsequently enter the human body and the abiotic component of the ecosystem of extraordinary danger to living organisms. We registered that Ni and Pb content significantly exceeded the MPC, especially in the city areas with heavy traffic. Correlation analysis showed a correlation of low and medium level (r = 0.40–0.52) between the content of mobile forms of heavy metals and the rate of oncological diseases. The correlation for Pb and Ni, the content of which significantly exceeded the MPC, was 0.40 and 0.49, respectively. Thus, we concluded that heavy metals could be a dangerous factor in the territory of Uman. \u0000 \u0000Keywords: heavy metals; gross content; content of movable connections; urban ecosystem; ecologically specified diseases; oncopathology \u0000 \u0000References \u0000 \u0000Alekseenko, V.A., Suvorinov, A.V., Vlasova, E.V. (2011). Metals in the environment: assessment of ecological and geochemical changes. Logos, Moscow (in Russian). \u0000 \u0000Alloway, B. J. (2013). Sources of heavy metals and metalloids in soils. Heavy metals in soils (Dordrecht: Springer Netherlands), 11–50. \u0000 \u0000Djuvelikjan, H.A., Zheglov, D.I., Gorbunova, N.S. (2009). Soil contamination with heavy metals. Methods of control and regulation of contaminated soils. Voronezh. \u0000 \u0000Fan, Zhang, Xuedong, Yan, Chen, Zeng (2012). Influence of traffic activity on heavy metal concentrations of roadside farmland soil in mountainous areas. Int J Environ Res Public Health, 9(5), 1715–1731. doi: 10.3390/ijerph9051715. \u0000 \u0000Gasangadjieva, A.G. (2010). Ecological and geographical principles of predicting the incidence of malignant neoplasms in the population of the Republic of Dagestan. Mahachkala. \u0000 \u0000Glazovskaja, M.A. (2007). Geochemistry of natural and technogenic landscapes. (Landscape-geochemical processes). Moscow. \u0000 \u0000Human Exposure Assessment. (2000). Environmental Health ?riteria. Geneva. WHO/IPCS. \u0000 \u0000Jarup, L. (2003). Hazards of heavy metal contamination December British. Medical Bulletin, 68(1), 167-182. doi: 10.1093/bmb/ldg032. \u0000 \u0000Kiku, P. F. (2010). Socio-hygienic analysis of the impact of environmental factors on distribution of ecology-dependent diseases. Bulletin SB RAMS, 30(1), 31–56. \u0000 \u0000Ljung, K., Selinus, O., Otabbong, E. (2006). Metals in soils of children's urban environments in the small northern European city ","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"1-5"},"PeriodicalIF":0.0,"publicationDate":"2020-11-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"42971197","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
The purpose of this research is to identify the heat waves of the South Sea of Iran and compare the conditions in the present and future. To reach this goal, the average daily temperature of 35 years has been used. Also, in order to predict future heat waves, the maximum temperature data of four models of the CMIP5 model series, according to the RCP 8.5 scenario, has been used for the period 2040-2074. In order to reverse the output of the climatic models, artificial neural networks were used to identify the thermal waves, and the Fumiaki index was used to determine the thermal waves. Using the programming in MATLAB software, the days when their temperature exceeded 2 standard deviations as a thermal wave were identified. The results of the research show that the short-term heat waves are more likely to occur. Heat waves in the base period have a significant but poorly developed trend, so that the frequency has increased in recent years. In the period from 2040 to 2074, the frequency of thermal waves has a significant decreasing trend, but usually with low coefficients. However, for some stations from 2040 to 2074, the frequency of predicted heat waves increased. Keywords: Climate change; Heat waves; RCP 8.5; Climate models; CMIP5 References Cox, P. M., Huntingford, C., & Williamson, M. S. 2018. Emergent constraint on equilibrium climate sensitivity from global temperature variability. Nature, 553(7688), 319-322. Lhotka, O., Kyselý, J., & Farda, A. 2018. Climate change scenarios of heat waves in Central Europe and their uncertainties. Theoretical and applied climatology, 131(3-4), 1043-1054. Gao, M., Yang, J., Wang, B., Zhou, S., Gong, D., & Kim, S. J. 2018. How are heat waves over Yangtze River valley associated with atmospheric quasi-biweekly oscillation. Climate Dynamics, 51(11-12), 4421-4437. Zhao, L., Oppenheimer, M., Zhu, Q., Baldwin, J. W., Ebi, K. L., Bou-Zeid, E., ... & Liu, X. 2018. Interactions between urban heat islands and heat waves. Environmental research letters, 13(3), 034003. Coquet, S., Labadie, M., Vivier-Darrigol, M., Liege, M., & Vandentorren, S. 2018. Early heat wave and heat stroke during distance running, April 2017, France. Revue d'Epidemiologie et de Sante Publique, 66, S341. Varghese, B. M., Barnett, A. G., Hansen, A. L., Bi, P., Nairn, J., Rowett, S., ... & Pisaniello, D. L. 2019. Characterising the impact of heatwaves on work-related injuries and illnesses in three Australian cities using a standard heatwave definition-Excess Heat Factor (EHF). Journal of exposure science & environmental epidemiology, 29(6), 821-830. Sherbakov, T., Malig, B., Guirguis, K., Gershunov, A., & Basu, R. 2018. Ambient temperature and added heat wave effects on hospitalizations in California from 1999 to 2009. Environmental research, 160, 83-90. Moriarty, P. and Honnery, D., 2015. Future cities in a warming world. Futures, 66(1), 45-53. Takada, M., Sotokawa, H., Ishimaru, Y., Imai, T., Ohira, M., Arai, H.
本研究的目的是识别伊朗南海的热浪,并比较当前和未来的情况。为了实现这一目标,我们采用了35年的平均日温度。此外,为了预测未来的热浪,根据RCP 8.5情景,CMIP5模型系列的四个模型的最高温度数据已用于2040-2074年期间。为了反演气候模型的输出,使用人工神经网络来识别热浪,并使用Fumiaki指数来确定热浪。使用MATLAB软件中的编程,识别出它们的温度超过2个标准偏差的天数作为热浪。研究结果表明,短期热浪更有可能发生。基期的热浪有明显但发展缓慢的趋势,因此近年来频率有所增加。在2040年至2074年期间,热浪的频率有显著的下降趋势,但通常系数较低。然而,对于2040年至2074年的一些观测站,预测的热浪频率有所增加。关键词:气候变化;热浪;RCP 8.5;气候模型;CMIP5参考Cox,P.M.,Huntingford,C.和Williamson,M.S.2018。全球温度变化对平衡气候敏感性的紧急约束。《自然》,553(7688),319-322。Lhotka,O.、Kyselý,J.和Farda,A.2018。中欧热浪的气候变化情景及其不确定性。理论与应用气候学,131(3-4),1043-1054。高,M.,杨,J.,王,B.,周,S.,龚,D.,金,S.J.2018。长江流域上空的热浪是如何和大气准双周振荡联系在一起的。气候动力学,51(11-12),4421-4437。赵,L.,奥本海默,M.,朱,Q.,鲍德温,J.W.,Ebi,K.L.,Bou-Zeid,E.,…&刘,X.2018。城市热岛和热浪之间的相互作用。环境研究信函,13(3),034003。Coquet,S.、Labadie,M.、Vivier Darrigol,M.、Liege,M.和Vandentorren,S.,2018。2017年4月,法国,长跑期间的早期热浪和中暑。《流行病与公共卫生评论》,66,S341。Varghese,B.M.,Barnett,A.G.,Hansen,A.L.,Bi,P.,Nairn,J.,Rowett,S.,…&Pisaniello,D.L.2019。使用标准热浪定义过热系数(EHF)描述澳大利亚三个城市的热浪对工伤和疾病的影响。暴露科学与环境流行病学杂志,29(6),821-830。Sherbakov,T.、Malig,B.、Guirguis,K.、Gershunov,A.和Basu,R.2018。1999年至2009年,加利福尼亚州的环境温度和额外的热浪对住院人数的影响。环境研究,16083-90。Moriarty,P.和Honnery,D.,2015。全球变暖中的未来城市。期货,66(1),45-53。Takada,M.,Sotokawa,H.,Ishimaru,Y.,Imai,T.,Ohira,M.,Arai,H.,…&Matsuo,Y.2017。美国专利号9664452。华盛顿特区:美国专利商标局。Raghavendra,A.,Dai,A.、Milrad,S.M.和Cloutier Bisbee,S.R.2019。佛罗里达州的热浪和极端降水:未来气候预测。气候动力学,52(1-2),495-508。Geirinhas,J.L.,Trigo,R.M.,Libonati,R.,Castro,L.C.,Sousa,P.M.,Coelho,C.A.,…&Monica de Avelar,F.M.2019。描述了2010年里约热内卢热浪期间的大气条件,其特征是死亡率过高。《整体环境科学》,650796-808。Imada,Y.、Shiogama,H.、Takahashi,C.、Watanabe,M.、Mori,M.、Kamae,Y.和Maeda,S.2018。气候变化增加了2016年亚洲出现极端高温的可能性。美国气象学会公报,99(1),S97-S101。
{"title":"Effect of climate change on heat waves in the South Sea of Iran","authors":"J. Safieh, D. Rebwar, J. Forough","doi":"10.15421/2020_211","DOIUrl":"https://doi.org/10.15421/2020_211","url":null,"abstract":"The purpose of this research is to identify the heat waves of the South Sea of Iran and compare the conditions in the present and future. To reach this goal, the average daily temperature of 35 years has been used. Also, in order to predict future heat waves, the maximum temperature data of four models of the CMIP5 model series, according to the RCP 8.5 scenario, has been used for the period 2040-2074. In order to reverse the output of the climatic models, artificial neural networks were used to identify the thermal waves, and the Fumiaki index was used to determine the thermal waves. Using the programming in MATLAB software, the days when their temperature exceeded 2 standard deviations as a thermal wave were identified. The results of the research show that the short-term heat waves are more likely to occur. Heat waves in the base period have a significant but poorly developed trend, so that the frequency has increased in recent years. In the period from 2040 to 2074, the frequency of thermal waves has a significant decreasing trend, but usually with low coefficients. However, for some stations from 2040 to 2074, the frequency of predicted heat waves increased. \u0000 \u0000Keywords: Climate change; Heat waves; RCP 8.5; Climate models; CMIP5 \u0000 \u0000 \u0000References \u0000 \u0000Cox, P. M., Huntingford, C., & Williamson, M. S. 2018. Emergent constraint on equilibrium climate sensitivity from global temperature variability. Nature, 553(7688), 319-322. \u0000 \u0000Lhotka, O., Kyselý, J., & Farda, A. 2018. Climate change scenarios of heat waves in Central Europe and their uncertainties. Theoretical and applied climatology, 131(3-4), 1043-1054. \u0000 \u0000Gao, M., Yang, J., Wang, B., Zhou, S., Gong, D., & Kim, S. J. 2018. How are heat waves over Yangtze River valley associated with atmospheric quasi-biweekly oscillation. Climate Dynamics, 51(11-12), 4421-4437. \u0000 \u0000Zhao, L., Oppenheimer, M., Zhu, Q., Baldwin, J. W., Ebi, K. L., Bou-Zeid, E., ... & Liu, X. 2018. Interactions between urban heat islands and heat waves. Environmental research letters, 13(3), 034003. \u0000 \u0000Coquet, S., Labadie, M., Vivier-Darrigol, M., Liege, M., & Vandentorren, S. 2018. Early heat wave and heat stroke during distance running, April 2017, France. Revue d'Epidemiologie et de Sante Publique, 66, S341. \u0000 \u0000Varghese, B. M., Barnett, A. G., Hansen, A. L., Bi, P., Nairn, J., Rowett, S., ... & Pisaniello, D. L. 2019. Characterising the impact of heatwaves on work-related injuries and illnesses in three Australian cities using a standard heatwave definition-Excess Heat Factor (EHF). Journal of exposure science & environmental epidemiology, 29(6), 821-830. \u0000 \u0000Sherbakov, T., Malig, B., Guirguis, K., Gershunov, A., & Basu, R. 2018. Ambient temperature and added heat wave effects on hospitalizations in California from 1999 to 2009. Environmental research, 160, 83-90. \u0000 \u0000Moriarty, P. and Honnery, D., 2015. Future cities in a warming world. Futures, 66(1), 45-53. \u0000 \u0000Takada, M., Sotokawa, H., Ishimaru, Y., Imai, T., Ohira, M., Arai, H.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"87-93"},"PeriodicalIF":0.0,"publicationDate":"2020-10-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"49397746","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
{"title":"Impact of various milking equipment on incidence of mastitis in dairy herd","authors":"A. Palii, Y. Kovalchuk, Y. A. Boyko","doi":"10.15421/2020_224","DOIUrl":"https://doi.org/10.15421/2020_224","url":null,"abstract":"Kharkiv Petro Vasylenko National Technical University of Agriculture, 44 Alchevskih St., Kharkiv, 61002, Ukraine. Uman National University of Horticulture, 1 Instytutska St., Uman, Cherkasy region, 20305, Ukraine. Pavlo Tychyna Uman State Pedagogical University, 2 Sadova St., Uman, Cherkasy region, 20300, Ukraine. *Corresponding author E-mail: paliy.andriy@ukr.net Received: 10.09.2020. Accepted 17.10.2020","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"160-165"},"PeriodicalIF":0.0,"publicationDate":"2020-10-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"48377989","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
The influence of different levels of arginine and lysine in compound feeds of replacement chickens on their growth, development and metabolism was studied. The effective ratio of arginine to lysine in the diets of replacement chickens was experimentally established, which, depending on the rearing period, was: 1.0:1 for 1-3 weeks, 1.1:1 for 4-8 weeks, 1.2:1 for 16 weeks and 1.2:1 for 17-18 weeks. It was found that the change in the ratio of arginine and lysine in poultry diets has a much higher degree of influence on their productivity, digestibility of feed nutrients, assimilation and efficiency of amino acids than changes in the levels of these amino acids. It was found that the ratio of arginine and lysine in the last period of rearing chickens (16-18 weeks) to a lesser extent affects the productivity of replacement young (R=0.59) compared to the first (R=0.96) and second periods of rearing (R=0.65). The growth of replacement young during all periods of the experiment and the nature of the effect of changes in levels and ratios of these amino acids in feed depending on age and productivity, described by a mathematical model with nonlinear characteristics (polynomial trend line), which has a higher value of approximation (R) linear dependence. The use of modern modeling methods and the proposed regression equations allow to predict the content of amino acids in feed for replacement young poultry in accordance with the program of their cultivation and amino acid composition of feed.
{"title":"Metabolism in replacement chickens at different ratios of arginine and lysine","authors":"I. Ibatullin, M. Kryvenok, I. Ilchuk","doi":"10.15421/2020_217","DOIUrl":"https://doi.org/10.15421/2020_217","url":null,"abstract":"The influence of different levels of arginine and lysine in compound feeds of replacement chickens on their growth, development and metabolism was studied. The effective ratio of arginine to lysine in the diets of replacement chickens was experimentally established, which, depending on the rearing period, was: 1.0:1 for 1-3 weeks, 1.1:1 for 4-8 weeks, 1.2:1 for 16 weeks and 1.2:1 for 17-18 weeks. It was found that the change in the ratio of arginine and lysine in poultry diets has a much higher degree of influence on their productivity, digestibility of feed nutrients, assimilation and efficiency of amino acids than changes in the levels of these amino acids. It was found that the ratio of arginine and lysine in the last period of rearing chickens (16-18 weeks) to a lesser extent affects the productivity of replacement young (R=0.59) compared to the first (R=0.96) and second periods of rearing (R=0.65). The growth of replacement young during all periods of the experiment and the nature of the effect of changes in levels and ratios of these amino acids in feed depending on age and productivity, described by a mathematical model with nonlinear characteristics (polynomial trend line), which has a higher value of approximation (R) linear dependence. The use of modern modeling methods and the proposed regression equations allow to predict the content of amino acids in feed for replacement young poultry in accordance with the program of their cultivation and amino acid composition of feed.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"10 1","pages":"127-132"},"PeriodicalIF":0.0,"publicationDate":"2020-10-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"43268160","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
Changes in the secretory activity of mammary gland during the involution period are designed to create conditions for inexhaustible use of the mammary gland, ensure the normal course of structural and functional regression for the development for the next lactation. For animals in which the interlactation period lasted less than 45 days, the absorption of non-esterified fatty acids in the last week of the involution period was 2.8 times higher than in animals in which the interlactation period lasted at least 55 days, 1.48 times higher than the absorption of acetic acid, 1.24 times higher than βoxybutyric acid, 1.28 times higher than glucose, 2.82 times the total amount of phospholipids and triacylglycerols. For acetic acid, β-oxybutyric acid and glucose, not only higher absorption rates were observed, but also a tendency to increase the absorption level in the last weeks of lactation in animals with an interlactation period of less than 45 days, indicating metabolic changes in mammary gland tissue during the involution period. The duration of the dry period affects the secretory activity of breast tissue during lactation and the quality of milk produced during this period, which is expressed by lower fat content in the product while reducing the duration of the dry period to less than 45 days and reducing milk fat by 10.42% during the next calving. At the same time, the body weight of newborn calves in animals, whose interlactation period was less than 45 days by 19.3%, was lower than the animals of the control group, i.e. those who were in the interlactation period for at least 55 days, which indicates the negative impact of reducing the duration of the dry period on the body of animals.
{"title":"Secretory activity of cattle mammary gland tissues during lactation and duration of the interlactation period","authors":"M. Kambur, A. Y. Lermontov","doi":"10.15421/2020_244","DOIUrl":"https://doi.org/10.15421/2020_244","url":null,"abstract":"Changes in the secretory activity of mammary gland during the involution period are designed to create conditions for inexhaustible use of the mammary gland, ensure the normal course of structural and functional regression for the development for the next lactation. For animals in which the interlactation period lasted less than 45 days, the absorption of non-esterified fatty acids in the last week of the involution period was 2.8 times higher than in animals in which the interlactation period lasted at least 55 days, 1.48 times higher than the absorption of acetic acid, 1.24 times higher than βoxybutyric acid, 1.28 times higher than glucose, 2.82 times the total amount of phospholipids and triacylglycerols. For acetic acid, β-oxybutyric acid and glucose, not only higher absorption rates were observed, but also a tendency to increase the absorption level in the last weeks of lactation in animals with an interlactation period of less than 45 days, indicating metabolic changes in mammary gland tissue during the involution period. The duration of the dry period affects the secretory activity of breast tissue during lactation and the quality of milk produced during this period, which is expressed by lower fat content in the product while reducing the duration of the dry period to less than 45 days and reducing milk fat by 10.42% during the next calving. At the same time, the body weight of newborn calves in animals, whose interlactation period was less than 45 days by 19.3%, was lower than the animals of the control group, i.e. those who were in the interlactation period for at least 55 days, which indicates the negative impact of reducing the duration of the dry period on the body of animals.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":" 659","pages":"278-286"},"PeriodicalIF":0.0,"publicationDate":"2020-10-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"41251878","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
The present work is devoted to the analysis of problems in development of international scientific and technical cooperation between the Shanghai Cooperation Organization member-states. Among the main factors that determine the development of scientific and technological sphere, the most important are legal factors, the detailed analysis of which is presented for each member state of Shanghai Cooperation Organization. The study of legal factors hindering the development of scientific and technological cooperation is based on the peculiarities of national legal regulation of scientific and innovation activity and the shortcomings of international agreements within the SCO. The authors identify both internal and external legal factors that influence the development of international scientific and technological collaboration. The authors consider the state of legal regulation of national science and technology policy and the legal status of organizations involved in the development of science as internal legal factors. External legal factors include the existence of bilateral treaties between the countries of the Shanghai Cooperation Organization regulating scientific and technological cooperation, as well as the content of multilateral treaties on scientific and technological cooperation between all member states of the Shanghai Cooperation Organization. Based on the results of the study, the authors conclude that it is necessary to harmonize the national legislation of the Shanghai Cooperation Organization countries on the issues of legal regulation of scientific and technological cooperation, as well as to consolidate at the international level the legal mechanisms for implementation of certain aspects of cooperation in the scientific and technological fields.
{"title":"Legal and environmental factors hindering the development of scientific and technical cooperation in SCO countries","authors":"A. Kramarenko, Zh.V. Ignatenko, O. Yulevich","doi":"10.15421/2020_216","DOIUrl":"https://doi.org/10.15421/2020_216","url":null,"abstract":"The present work is devoted to the analysis of problems in development of international scientific and technical cooperation between the Shanghai Cooperation Organization member-states. Among the main factors that determine the development of scientific and technological sphere, the most important are legal factors, the detailed analysis of which is presented for each member state of Shanghai Cooperation Organization. The study of legal factors hindering the development of scientific and technological cooperation is based on the peculiarities of national legal regulation of scientific and innovation activity and the shortcomings of international agreements within the SCO. The authors identify both internal and external legal factors that influence the development of international scientific and technological collaboration. The authors consider the state of legal regulation of national science and technology policy and the legal status of organizations involved in the development of science as internal legal factors. External legal factors include the existence of bilateral treaties between the countries of the Shanghai Cooperation Organization regulating scientific and technological cooperation, as well as the content of multilateral treaties on scientific and technological cooperation between all member states of the Shanghai Cooperation Organization. Based on the results of the study, the authors conclude that it is necessary to harmonize the national legislation of the Shanghai Cooperation Organization countries on the issues of legal regulation of scientific and technological cooperation, as well as to consolidate at the international level the legal mechanisms for implementation of certain aspects of cooperation in the scientific and technological fields.","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":" ","pages":"122-126"},"PeriodicalIF":0.0,"publicationDate":"2020-10-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"42993518","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}