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首页> 外文期刊>Journal of Plant Nutrition >ACCUMULATION OF RESERVE COMPOUNDS IN COMMON BEAN SEEDS UNDER DROUGHT STRESS
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ACCUMULATION OF RESERVE COMPOUNDS IN COMMON BEAN SEEDS UNDER DROUGHT STRESS

机译:干旱胁迫下普通豆类植物籽粒中储备化合物的积累

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摘要

To investigate the seed protein and major mineral nutrient (Fe, Zn, P, and N) contents and their accumulation procedure in the seeds of common bean (Phaseolus vulgaris L.), a biennial experiment was conducted under two contrasting moisture regimes (normal irrigation and water deficit). Seed reserves of eight genotypes (WA4502-1, WA4531-17, Akhtar, D81083, AND1007, KS21486, MCD4011, and COS16) were investigated at four stages of seed filling period (SFP). Split-plot experiments were performed as randomized complete block design with four replications. The results showed significant differences in the evaluated characteristics in both factors, the genotypes and the moisture regimes. Fe content of the seeds was affected the most by drought stress and reduced in all stages, while seed nitrogen and protein contents were affected the least under stress condition. The percentages of reductions due to water deficit were higher in stage 1 for Fe, stage 2 for Zn, and stage 4 for P and N. In the stage 3, minerals had the least changes. Nitrogen content of the seeds at mid-stages of SFP increased slightly under drought stress. Drought stress also caused 39-69% reductions in the grain yield of the genotypes. Under drought stress condition, the concentrations of Fe and N in the white bean seeds were less than that of the red and the Chitti genotypes. However, the seed P contents of the white bean seeds were higher than that of the other genotypes.
机译:为了研究普通豆(菜豆)种子中的蛋白质和主要矿质养分(铁,锌,磷和氮)含量及其积累过程,在两种不同的水分状况下(正常灌溉)进行了两年一次的实验。和缺水)。在种子灌浆期(SFP)的四个阶段研究了八种基因型(WA4502-1,WA4531-17,Akhtar,D81083,AND1007,KS21486,MCD4011和COS16)的种子储藏量。分割图实验是作为随机完整模块设计进行的,具有四个重复。结果表明,在基因型和水分状况这两个因素的评估特征上存在显着差异。干旱胁迫对种子中铁含量的影响最大,在各个阶段均降低,而胁迫条件下种子氮和蛋白质含量的影响最小。 Fe的第1阶段,Zn的第2阶段,P和N的第4阶段由于缺水而导致的减少百分比较高。在第3阶段,矿物的变化最小。在干旱胁迫下,SFP中期种子的氮含量略有增加。干旱胁迫还导致基因型的谷物产量降低39-69%。在干旱胁迫条件下,白豆种子中的Fe和N含量低于红色和Chitti基因型。然而,白豆种子的种子中P含量高于其他基因型。

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