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木质素沉积对种皮开裂的影响

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自然条件下收获的菜豆种子经常会出现种皮开裂的现象,为了探讨菜豆种子种皮开裂的原因,改善种子的外观表现与活力,本研究以黑大黛冠、黑大盛冠为实验材料,将同品种的正常种子与种皮开裂(SC)种子进行对照,对其长、宽、厚、百粒重及物理性能进行测定,并在生化和分子水平上研究了低温对苯丙烷代谢途径的影响。结果表明:开裂种子长、宽、厚分别大于正常种子11。14%、2。79%、10。15%,百粒重显著提高16。79%,物理性能降低,苯丙烷代谢途径在转录水平上增强。推测开裂种子的子叶发育速率大于正常种子,子叶与种皮发育速率不统一可能是导致种皮开裂的原因之一;低温使得种皮内木质素含量上升,木质素沉积使得种皮物理性能降低,是导致种皮开裂的直接原因。
Effect of Lignin Deposition on Seed Coat Cracking
Seed coat cracking often occurs in bean seeds harvested under natural conditions. In order to explore the causes of seed coat cracking and improve seed appearance and vigor,we chose the Heilongjiang University'Daiguan'and the Heilongjiang University'Shengguan'as experimental materials,and compared between intact and seed coat cracking (SC) seeds of the same variety. Their length,width,thickness,100-seed weight and physical properties were measured,and the effect of Phenylpropane metabolic pathway in low temperature was studied at biochemical and molecular level. The results showed that the length,width and thickness of cracked seeds were 11.14%2.79%10.15%larger than that of intact seeds respectively,the 100-grain weight increased significantly by 16.79%,the physical properties decreased,and phenylpropane metabolic pathway was enhanced at the transcriptional level. It is speculated that the cotyledon development rate of cracked seeds is higher than that of intact seeds,and the difference of cotyledon and seed coat development rate may be one of the reasons leading to seed coat cracking;low temperature increases the content of Lignin in the seed coat,and the deposition of Lignin lowers the physical properties of the seed coat,which is the direct cause of seed coat cracking.

common beanseed coat crackinglow temperaturephenylpropane metabolic pathwayligninhundred-grain weight

李昕然、刘畅、冯国军、刘大军、安普南、杨晓旭

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黑龙江大学现代农业与生态环境学院,哈尔滨150000

菜豆 种皮开裂 低温 苯丙烷代谢途径 木质素 百粒重

2024

中国农学通报
中国农学会

中国农学通报

CSTPCD
影响因子:0.891
ISSN:1000-6850
年,卷(期):2024.40(36)