{"title":"Interactive effects of poultry litter compost and chemical fertilizers on macronutrients, oil and protein content in sunflower (Helianthus annuus L.)","authors":"Md. Alauddin, Mk Rahman, Ahmz Ali","doi":"10.3329/dujbs.v30i3.59029","DOIUrl":null,"url":null,"abstract":"A field experiment was carried out at the research farm of Charfasson Govt. College, Bhola, during rabi season in 2016-2017 to evaluate the effect of poultry litter compost and NPK fertilizers on concentration, uptake, oil and protein content of sunflower cv. BARI-2 (Keroni-2). The experiment was laid out in a completely randomized block design (CRBD) having sixteen treatments with three replications. The unit plot size was 3 m x 2 m. Treatments were T1: Control (- PL and -NPK), T2:1.5 t PL ha-1, T3:3 t PL ha-1, T4: 4.5 t PL ha-1, T5:N40P30K50 kg ha-1, T6:N80P60K100 kg ha-1, T7:N120P90K150 kg ha-1, T8: 1.5 t PL ha-1+N40P30K50 kg ha-1, T9:1.5 t PL ha-1+ N80P60K100 kg ha- 1, T10:1.5 t PL ha-1+ N120P90K150 kg ha-1, T11: 3 t PL ha-1+N40P30K50 kg ha-1, T12: 3 ton PL ha-1+ N80P60K100 kg ha-1, T13:3 t PL ha-1+ N120P90K150 kg ha-1, T14: 4.5 t PL ha-1+N40P30K50 kg ha-1, T15:4.5 t PL ha-1+ N80P60K100 kg ha-1 and T16:4.5 t PL ha-1+ N120P90K150 kg ha-1. Sixty plants were grown in each plot for 90 days. Maximum values of NPKS concentration (%) in different organs of sunflower were 0.65, 0.42, 1.80, 0.17 for stem; 1.02, 0.54, 1.54, 0.18 for root; 4.47, 0.57, 3.14, 0.20 for leaf; 2.60, 0.64, 3.20, 0.32 for petiole and 5.18, 0.86, 1.02, 0.31 for seed due to application of poultry litter and NPK fertilizers. The highest concentrations of NPKS of different organs of sunflower at maturity, were found significantly (P<0.05) higher in combined treatments 5 t PL ha-1 + N120P90K150kg ha-1 and 7.5 t PL ha-1 + N120P90K150kg ha-1, respectively, in most of the cases. However, their uptake pattern also followed the same trend as in concentration and those were found in same treatments in most of the cases. The lowest concentration and uptake were measured almost in control treatment (-PL and -NPK). Content of oil and protein increased variably due to variation in treatments. The highest content of oil in seed (47.7%) was extracted from the treatment 5 t PL ha-1 + N80P60K100kg ha-1 and the lowest value (37.7%) was recorded in the highest dose of NPK fertilizers and poultry litter which was lower than control treatment. Protein content also followed the same pattern as in oil. The highest content of protein (31.8%) was recorded from the treatment 5 t PL ha-1 + N120P90K150kg ha-1 and the lowest values (18.8%) was observed in control treatment. The overall findings of this study indicated that poultry litter compost in combination with chemical fertilizers can be applied to achieve better concentration, uptake of NPKS in different organs and oil and protein content in seeds of sunflower under field conditions at coastal zone.\nDhaka Univ. J. Biol. Sci. 30(3 CSI): 359-369, 2022 (June)","PeriodicalId":11095,"journal":{"name":"Dhaka University Journal of Biological Sciences","volume":"62 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-06-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Dhaka University Journal of Biological Sciences","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3329/dujbs.v30i3.59029","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
A field experiment was carried out at the research farm of Charfasson Govt. College, Bhola, during rabi season in 2016-2017 to evaluate the effect of poultry litter compost and NPK fertilizers on concentration, uptake, oil and protein content of sunflower cv. BARI-2 (Keroni-2). The experiment was laid out in a completely randomized block design (CRBD) having sixteen treatments with three replications. The unit plot size was 3 m x 2 m. Treatments were T1: Control (- PL and -NPK), T2:1.5 t PL ha-1, T3:3 t PL ha-1, T4: 4.5 t PL ha-1, T5:N40P30K50 kg ha-1, T6:N80P60K100 kg ha-1, T7:N120P90K150 kg ha-1, T8: 1.5 t PL ha-1+N40P30K50 kg ha-1, T9:1.5 t PL ha-1+ N80P60K100 kg ha- 1, T10:1.5 t PL ha-1+ N120P90K150 kg ha-1, T11: 3 t PL ha-1+N40P30K50 kg ha-1, T12: 3 ton PL ha-1+ N80P60K100 kg ha-1, T13:3 t PL ha-1+ N120P90K150 kg ha-1, T14: 4.5 t PL ha-1+N40P30K50 kg ha-1, T15:4.5 t PL ha-1+ N80P60K100 kg ha-1 and T16:4.5 t PL ha-1+ N120P90K150 kg ha-1. Sixty plants were grown in each plot for 90 days. Maximum values of NPKS concentration (%) in different organs of sunflower were 0.65, 0.42, 1.80, 0.17 for stem; 1.02, 0.54, 1.54, 0.18 for root; 4.47, 0.57, 3.14, 0.20 for leaf; 2.60, 0.64, 3.20, 0.32 for petiole and 5.18, 0.86, 1.02, 0.31 for seed due to application of poultry litter and NPK fertilizers. The highest concentrations of NPKS of different organs of sunflower at maturity, were found significantly (P<0.05) higher in combined treatments 5 t PL ha-1 + N120P90K150kg ha-1 and 7.5 t PL ha-1 + N120P90K150kg ha-1, respectively, in most of the cases. However, their uptake pattern also followed the same trend as in concentration and those were found in same treatments in most of the cases. The lowest concentration and uptake were measured almost in control treatment (-PL and -NPK). Content of oil and protein increased variably due to variation in treatments. The highest content of oil in seed (47.7%) was extracted from the treatment 5 t PL ha-1 + N80P60K100kg ha-1 and the lowest value (37.7%) was recorded in the highest dose of NPK fertilizers and poultry litter which was lower than control treatment. Protein content also followed the same pattern as in oil. The highest content of protein (31.8%) was recorded from the treatment 5 t PL ha-1 + N120P90K150kg ha-1 and the lowest values (18.8%) was observed in control treatment. The overall findings of this study indicated that poultry litter compost in combination with chemical fertilizers can be applied to achieve better concentration, uptake of NPKS in different organs and oil and protein content in seeds of sunflower under field conditions at coastal zone.
Dhaka Univ. J. Biol. Sci. 30(3 CSI): 359-369, 2022 (June)
2016-2017年rabi季,在印度博拉省Charfasson政府学院研究农场进行了田间试验,评估了禽畜粪便堆肥和氮磷钾肥料对向日葵cv浓度、吸收、油和蛋白质含量的影响。BARI-2 (Keroni-2)。实验采用完全随机区组设计(CRBD),有16个处理,3个重复。单位地块面积为3米× 2米。处理分别为T1:对照(- PL和- npk), T2:1.5 t PL ha-1, T3:3 t PL ha-1, T4: 4.5 t PL ha-1, T5:N40P30K50 kg ha-1, T6:N80P60K100 kg ha-1, T7:N120P90K150 kg ha-1, T8: 1.5 t PL ha-1+N40P30K50 kg ha-1, T10:1.5 t PL ha-1+ n80p90k150 kg ha-1, T11: 3 t PL ha-1+ n80p60k50 kg ha-1, T12: 3吨PL ha-1+ N80P60K100 kg ha-1, T13:3 t PL ha-1+ N120P90K150 kg ha-1, T14:4.5吨PL ha-1+N40P30K50 kg ha-1, 15:4.5吨PL ha-1+ N80P60K100 kg ha-1和16:4.5吨PL ha-1+ N120P90K150 kg ha-1。每个地块种植60株,种植90天。NPKS在向日葵各器官中的浓度(%)最大值分别为0.65、0.42、1.80、0.17;根为1.02,0.54,1.54,0.18;叶片4.47、0.57、3.14、0.20;禽畜凋落物和氮磷钾对叶柄的影响分别为2.60、0.64、3.20、0.32,对种子的影响分别为5.18、0.86、1.02、0.31。在大多数情况下,5 t PL ha-1 + N120P90K150kg ha-1和7.5 t PL ha-1 + N120P90K150kg ha-1组合处理的向日葵成熟期各器官NPKS含量最高(P<0.05)。然而,它们的摄取模式也遵循与浓度相同的趋势,并且在大多数情况下,在相同的处理中发现了这些。对照处理(-PL和-NPK)的浓度和吸收量几乎最低。油脂和蛋白质含量随处理的不同而不同程度地增加。5 t PL ha-1 + N80P60K100kg ha-1处理的籽油含量最高(47.7%),最高剂量氮磷钾肥料和家禽凋落物处理的籽油含量最低(37.7%),低于对照处理。蛋白质含量也遵循与油相同的模式。5 t PL ha-1 + N120P90K150kg ha-1处理的蛋白质含量最高(31.8%),对照处理最低(18.8%)。综上所述,在海岸带的田间条件下,禽畜凋落物堆肥配施化肥可以获得更好的NPKS浓度、不同器官的吸收以及向日葵种子中油脂和蛋白质的含量。达卡大学。科学30(3 CSI): 359-369, 2022(6月)