FORMING THE PRODUCTIVITY OF THE COMMON BEANS DEPENDING ON VARIETIES, INOCULATION, AND FERTILIZER

N. V. Tsybryk-Sivak, M. Bakhmat
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Until recently, in our conditions, due to the lack of scientific research, the technology of growing common beans under the given soil and climatic conditions, their influence on the productivity and quality indicators of bean grain, the unexplained economic and energy efficiency of the technology for growing common beans in this region is not fully studied. In this regard, increasing the grain productivity of bean varieties of domestic breeding by establishing the characteristics of growth and development and optimizing the elements of growing technology (fertilizers, inoculation) depending on varietal characteristics and weather conditions of the growing season is an urgent task. Purpose. The study aimed to determine the duration of the growing season and the yield of beans for varieties Mavka, Eureka, Lastivka, depending on the level of fertilizing and seed inoculation. Methods. In the study of common bean seeds, before sowing, they were treated with different strains of microorganisms. Depending on this, the interphase periods of plant growth and development changed somewhat. The duration of the period of sowing-full ripeness in bean plants of the Lastivka variety inoculated with different strains of Rhizobium phaseoli differed by 1–3 days on average over the study period of 2020–2022. Results. A significant influence on the growth and development of bean plants under our conditions was exerted by factors determined for the study, varietal characteristics of beans, as well as hydrothermal conditions of the growing years of research. The longest period of vegetation of bean varieties was noted in 2021, which is closest in terms of indicators to typical weather and climatic conditions and favorable for the growth and development of bean plants. Sufficient rainfall in May, June, and July (respectively 92 mm, 109,2 mm, and 85 mm) caused an extension of the flowering phase, a more intensive growth of the vegetative mass, and an increase in the height of plant growth. In the dry year of 2022 over the years of research, the vegetation of the studied varieties was the shortest and, depending on the factors put into study, was 73–81 days for the Lastivka variety, 83–95 days, and 85–96 days for the Mavka and Eureka varieties, respectively. Interphase periods in the ontogeny of bean plants lasted 4–12 days less. The studied bean varieties belong to the mid-ripening group, however, the difference in the onset of growth phases, depending on the factors studied, was up to 13 days. Variety Lastivka ripened earlier than others, and its vegetation period was 8–13 days shorter. Depending on the fertilizer and seed inoculation with Rhizobofit, the growing season of mid-ripening bean varieties was different for Lastivka, Mavka, and Eureka varieties from 79 to 102 days. Originality. When grown with the use of seed inoculation and fertilization at the rate of N60P40K20, including the vegetation of beans, it was extended by 3-5 days. When applying fertilizers at the rate of N90P60K30 and N120P80K40, the growing season was almost the same both with and without inoculation with Rhizobofit. With the application of N120P80K40 fertilizers and without seed inoculation with Rhizobofit, the growing season of bean varieties was extended by 13–15 days. The duration of individual periods of ontogenesis, as well as the growing season as a whole, was directly dependent on the hydrothermal conditions of the year, variety, and norms of mineral fertilizers. Conclusion. Our studies have shown that both varietal characteristics and mineral fertilizers and seed inoculation had a significant impact on the growth and development of mid-ripening varieties of common beans under our conditions. The increase in the rate of application of mineral fertilizers caused the lengthening of the growing season of the studied varieties to 8–13 days compared to the control, as a result of which the onset of the phenological phases was also delayed in time. With the pre-sowing treatment of seeds with Rhizobofit, the duration of vegetation and the onset of the phenophase also lengthened from 2 to 5 days compared with the variants without inoculation. Variety Lastivka ripened earlier than others by 8–10 days.","PeriodicalId":166753,"journal":{"name":"Podilian Bulletin: Agriculture, Engineering, Economics","volume":"2 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-02-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Podilian Bulletin: Agriculture, Engineering, Economics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.37406/2706-9052-2022-2-5","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Introduction. The growth and development of bean plants occur in direct proportion to environmental conditions, the main components of which are air and soil temperature, light, humidity, and mineral nutrition. The productivity of plants is determined by the presence of these factors, and the more they correspond to the biological characteristics of the crop, the more fully the potential of bean varieties is realized. Until recently, in our conditions, due to the lack of scientific research, the technology of growing common beans under the given soil and climatic conditions, their influence on the productivity and quality indicators of bean grain, the unexplained economic and energy efficiency of the technology for growing common beans in this region is not fully studied. In this regard, increasing the grain productivity of bean varieties of domestic breeding by establishing the characteristics of growth and development and optimizing the elements of growing technology (fertilizers, inoculation) depending on varietal characteristics and weather conditions of the growing season is an urgent task. Purpose. The study aimed to determine the duration of the growing season and the yield of beans for varieties Mavka, Eureka, Lastivka, depending on the level of fertilizing and seed inoculation. Methods. In the study of common bean seeds, before sowing, they were treated with different strains of microorganisms. Depending on this, the interphase periods of plant growth and development changed somewhat. The duration of the period of sowing-full ripeness in bean plants of the Lastivka variety inoculated with different strains of Rhizobium phaseoli differed by 1–3 days on average over the study period of 2020–2022. Results. A significant influence on the growth and development of bean plants under our conditions was exerted by factors determined for the study, varietal characteristics of beans, as well as hydrothermal conditions of the growing years of research. The longest period of vegetation of bean varieties was noted in 2021, which is closest in terms of indicators to typical weather and climatic conditions and favorable for the growth and development of bean plants. Sufficient rainfall in May, June, and July (respectively 92 mm, 109,2 mm, and 85 mm) caused an extension of the flowering phase, a more intensive growth of the vegetative mass, and an increase in the height of plant growth. In the dry year of 2022 over the years of research, the vegetation of the studied varieties was the shortest and, depending on the factors put into study, was 73–81 days for the Lastivka variety, 83–95 days, and 85–96 days for the Mavka and Eureka varieties, respectively. Interphase periods in the ontogeny of bean plants lasted 4–12 days less. The studied bean varieties belong to the mid-ripening group, however, the difference in the onset of growth phases, depending on the factors studied, was up to 13 days. Variety Lastivka ripened earlier than others, and its vegetation period was 8–13 days shorter. Depending on the fertilizer and seed inoculation with Rhizobofit, the growing season of mid-ripening bean varieties was different for Lastivka, Mavka, and Eureka varieties from 79 to 102 days. Originality. When grown with the use of seed inoculation and fertilization at the rate of N60P40K20, including the vegetation of beans, it was extended by 3-5 days. When applying fertilizers at the rate of N90P60K30 and N120P80K40, the growing season was almost the same both with and without inoculation with Rhizobofit. With the application of N120P80K40 fertilizers and without seed inoculation with Rhizobofit, the growing season of bean varieties was extended by 13–15 days. The duration of individual periods of ontogenesis, as well as the growing season as a whole, was directly dependent on the hydrothermal conditions of the year, variety, and norms of mineral fertilizers. Conclusion. Our studies have shown that both varietal characteristics and mineral fertilizers and seed inoculation had a significant impact on the growth and development of mid-ripening varieties of common beans under our conditions. The increase in the rate of application of mineral fertilizers caused the lengthening of the growing season of the studied varieties to 8–13 days compared to the control, as a result of which the onset of the phenological phases was also delayed in time. With the pre-sowing treatment of seeds with Rhizobofit, the duration of vegetation and the onset of the phenophase also lengthened from 2 to 5 days compared with the variants without inoculation. Variety Lastivka ripened earlier than others by 8–10 days.
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形成普通豆的生产力取决于品种,接种和肥料
介绍。豆类植物的生长发育与环境条件成正比,其主要组成部分是空气和土壤的温度、光照、湿度和矿物质营养。植物的生产力是由这些因素的存在决定的,它们越符合作物的生物学特性,豆类品种的潜力就越能充分发挥出来。直到最近,在我国条件下,由于缺乏科学研究,在给定的土壤和气候条件下种植普通豆的技术,它们对豆粒生产力和质量指标的影响,以及该地区种植普通豆技术的经济和能源效率尚未得到充分研究。因此,根据品种特点和生长季节的天气条件,确定生长发育特征,优化种植技术要素(肥料、接种),提高国内选育豆类品种的粮食生产力是当务之急。目的。该研究旨在根据施肥和种子接种水平确定Mavka、Eureka和Lastivka品种生长季节的持续时间和豆类产量。方法。在对普通豆种子的研究中,在播种前用不同的微生物菌株对其进行处理。在此基础上,植物生长发育的间期发生了一定的变化。在2020-2022年的研究期内,接种不同菌种相根瘤菌的Lastivka品种大豆植株的播熟期平均相差1 ~ 3天。结果。在我们的条件下,为研究确定的因素、豆类的品种特性以及研究生长年份的热液条件对豆类植物的生长发育产生了重大影响。2021年是豆类品种植被期最长的一年,在各项指标上最接近典型的天气气候条件,有利于豆类植物的生长发育。5月、6月和7月降雨充足(分别为92 mm、109 mm、2 mm和85 mm),使花期延长,营养物质生长更加密集,植株生长高度增加。在研究年份的2022年干旱年,研究品种的植被最短,根据研究因素的不同,拉斯蒂夫卡(Lastivka)品种的植被为73-81天,Mavka和Eureka品种的植被分别为83-95天和85-96天。豆科植物个体发育间期缩短4 ~ 12 d。所研究的豆类品种属于中成熟组,然而,根据所研究的因素,生长期开始的差异高达13天。品种成熟较早,植被期短8 ~ 13 d。中熟豆品种Lastivka、Mavka和Eureka的生长季节根据施肥和接种根瘤菌的不同而不同,分别为79 ~ 102 d。创意。以N60P40K20接种种子并施肥,包括豆类植被,延长3-5天。以N90P60K30和N120P80K40用量施肥时,接种根瘤菌和不接种根瘤菌的生长季节基本相同。施用N120P80K40肥,不接种根瘤菌,可使大豆品种生长季延长13 ~ 15 d。个体发生期的持续时间,以及整个生长季节,直接取决于当年的热液条件、矿物肥料的品种和规格。结论。我们的研究表明,在我们的条件下,品种特征、矿质肥料和种子接种对普通豆中期成熟品种的生长发育都有显著影响。随着矿物肥施用量的增加,所研究品种的生长季节较对照延长了8 ~ 13天,物候期的开始时间也有所推迟。播前接种根瘤菌后,植株的植被持续时间和物候期开始时间也比未接种的品种延长了2 ~ 5天。品种拉斯蒂夫卡比其他品种早熟8-10天。
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THE EUROPEAN WAY OF RURAL GREEN TOURISM DEVELOPMENT: EXPERIENCE FOR UKRAINE THE IMPLEMENTATION OF WORLD EXPERIENCE IN THE POLICY OF RURAL AREAS’ RESTORATION, DEVELOPMENT IN UKRAINE AND ENTERPRISES IN THE COUNTRYSIDE FORMING THE PRODUCTIVITY OF THE COMMON BEANS DEPENDING ON VARIETIES, INOCULATION, AND FERTILIZER INCREASING THE PERFORMANCE OF SOYBEAN GRAIN IN THE CONDITIONS OF PODILLIA SOYBEAN PRODUCTIVITY DEPENDING ON THE APPLICATION OF ORGANIC FERTILIZERS, SEED INOCULATION, AND PLANT GROWTH REGULATORS
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