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Structural features of the aleurone layer of the seed coat associated with imbibition injury in soybean

机译:大豆种皮中糊粉层的结构特征与吸水伤害的关系

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摘要

Soybean (Glycine max) seeds are prone to imbibition injury caused by a rapid uptake of water. Genetic variation in imbibition injury tolerance is well documented, but the underlying mechanisms remain unclear. The aim of this study was to clarify the role of the aleurone layer of seed coat in the tolerance and its structural differences between tolerant and susceptible cultivars. Imbibition injury tolerance was closely related to the water absorption rate of seeds, which was regulated by the aleurone layer of the seed coat. Cryo-scanning electron microscopy analysis revealed that water absorbed in seed coats entered the seed preferentially through the aleurone layer of the top area above the raphe. In susceptible cultivars, the cell walls of the aleurone layer facing the cotyledon in this area were thin and the surface showed shallow depression-like structures, a distinct structure different from those of the tolerant cultivars, which had aleurone cells with thick outer cell walls and smooth and stripe-like deposits. The differences in the structural features of the cell walls and surfaces of aleurone cells in the top area of the seed may be responsible for the difference in the extent of imbibition injury between susceptible and tolerant cultivars.
机译:大豆(Glycine max)种子容易因快速吸收水分而发生吸水伤害。吸收损伤耐受性的遗传变异已有充分文献记载,但其潜在机制仍不清楚。本研究的目的是阐明种皮糊粉层在耐性和易感品种之间的耐性及其结构差异。种子的吸水率与种子的吸水率密切相关,种子的吸水率受种皮的糊粉层调节。低温扫描电子显微镜分析表明,种皮中吸收的水分优先通过缝隙上方顶部的糊粉层进入种子。在易感品种中,该区域中面向子叶的糊粉层细胞壁较薄,表面呈浅凹陷状结构,其结构与耐性品种不同,后者的糊粉细胞具有较厚的外部细胞壁,光滑的条纹状沉积物。种子顶部区域中糊粉细胞的细胞壁和表面结构特征的差异可能是易感和耐性品种之间吸水伤害程度差异的原因。

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