石灰对大豆结瘤、固氮和籽粒蛋白质含量的影响

W. S. Kollie, E. Semu
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摘要

土壤酸度受铝、铁、锰含量高和阳离子交换能力(CEC)含量低的影响,植物养分如磷的有效性影响大豆共生固结菌的生长,不利于根瘤的形成和功能。为了评估石灰对土壤pH、固氮和种子蛋白质含量的影响,在坦桑尼亚莫罗戈罗Sokoine农业大学作物博物馆的一个4个重复的分块地块上采用随机完全块设计(RCBD)布局进行了试验。大豆基因型(博西尔、拉拉和尤乐大豆-1)为主区,石灰水平(1560、936和624 kg/ hm2)为副区。方差分析表明,石灰水平对土壤pH、固氮量和种子蛋白质含量有显著影响。施用1560 kg/ha石灰(pH 6.5)时,大豆各基因型间差异显著(P = 0.001),结瘤数最高(7.6),干重最高(19.26)。在不同品种中,波西尔的种子蛋白质含量固定在24.46 kgN/ha,而拉拉的种子蛋白质含量最高(10.60%)。在pH为6.5时,施用1560 kg/石灰可显著提高每公顷钾肥(kgN/ha)(35.71),籽粒蛋白质含量也有小幅提高(15.66%)。互作效应(P = 0.05)中,Laela固结瘤数最多(7.6个),固氮量最高(44.90 kgN/ha), Bossier籽粒蛋白含量最高(20.22%)。研究表明,施用CaCo3能最大程度地改善酸性土壤的理化性质,以及大豆根瘤、固氮和种子蛋白质含量等产量成分
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Effects of Liming on Nodulation, Nitrogen Fixation and Seed Protein Content in Soybean
Soil acidity is influenced by high levels of aluminium, iron, manganese and low levels of Cation Exchange Capacity (CEC), plant nutrients availability such as phosphorus, affect the growth of symbiotic-fixing bacteria in soybean which is detrimental to nodule formation and functioning. In an attempt to evaluate liming effects on soil pH, nitrogen fixation and seed protein content, an experiment was set up using a randomized complete block design (RCBD) layout in a split-plot with four replications at the Crop Museum, the Sokoine University of Agriculture in Morogoro, Tanzania. Soybean genotypes (Bossier, Laela and Uyole soya-1) were used as the main plot, while lime levels (1560, 936 and 624 kg/ha) were used as the subplot. The analysis of variance (ANOVA) showed a significant influence of lime levels on soil pH, quantities of nitrogen fixed and seed protein content. There was a significant difference (P = 0.001) observed among soybean genotypes with the application of 1560 kg/ha of lime (pH 6.5), recording the highest (7.6) nodule counts and nodule dry weight (19.26). Among the different varieties used in the study, Bossier was observed to have a fixed 24.46 kgN/ha, while Laela produced the highest (10.60%) seed protein content. Application of 1560 kg/lime observed a significant increase in kgN/ha (35.71) as well as a minimal increase (15.66%) in seed protein content at pH 6.5. Interaction effects (P = 0.05), however, observed Laela has fixed the highest nodule (7.6) counts, nitrogen fixation (44.90 kgN/ha), with Bossier recording the highest (20.22%) seed protein. The study revealed that the physiochemical properties of acid soil, as well as soybean yield components such as nodules, N2 fixation and seed protein content, can be maximally improved when limed with CaCo3
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