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Pod Mildew on Soybeans Can Mitigate the Damage to the Seed Arising from Field Mold at Harvest Time

机译:大豆荚霉可以减轻收获时田间霉菌对种子的伤害

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Seedpods are the outermost barrier of legume plants encountered by pests and pathogens, but research on this tissue, especially regarding their chemical constituents, is limited. In the present study, a mildew-index-model-based cluster analysis was used to evaluate and identify groups of soybean genotypes with different organ-specific resistance against field mold. The constituents of soybean pods, including proteins, carbohydrates, fatty acids, and isoflavones, were analyzed. Linear regression and correlation analyses were also conducted between these main pod constituents and the organ-specific mildew indexes of seed (MIS) and pod (MIP). With increases in the contents of infection constituents, such as proteins, carbohydrates, and fatty acids, the MIP increased and the MIS decreased. The MIS decreased with increases in the contents of glycitein (GLE)-type isoflavonoids, which act as antibiotic constituents. Although the infection constituents in the soybean pods caused pod mildew, they also helped mitigate the corresponding seed mildew to a certain extent.
机译:种子荚是害虫和病原体遇到的豆类植物的最外层屏障,但是对该组织的研究,尤其是有关其化学成分的研究有限。在本研究中,基于霉变指数模型的聚类分析用于评估和鉴定具有不同器官特异性抗田间霉菌抗性的大豆基因型组。分析了大豆荚的成分,包括蛋白质,碳水化合物,脂肪酸和异黄酮。还对这些主要豆荚成分与种子(MIS)和豆荚(MIP)的器官特定霉变指数之间进行了线性回归和相关分析。随着感染成分(例如蛋白质,碳水化合物和脂肪酸)含量的增加,MIP升高,MIS降低。 MIS随着作为抗生素成分的糖精(GLE)型异黄酮含量的增加而降低。尽管大豆豆荚中的感染成分引起了豆荚霉变,但它们也有助于在一定程度上减轻相应的种子霉变。

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