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首页> 外文期刊>Journal of Experimental Botany >Selection for low or high primary dormancy in Lolium rigidum Gaud seeds results in constitutive differences in stress protein expression and peroxidase activity
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Selection for low or high primary dormancy in Lolium rigidum Gaud seeds results in constitutive differences in stress protein expression and peroxidase activity

机译:选择硬质黑麦草高低种子的初级或休眠低种会导致胁迫蛋白表达和过氧化物酶活性的组成性差异

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摘要

Seed dormancy in wild Lolium rigidum Gaud (annual ryegrass) populations is highly variable and not well characterized at the biochemical level. To identify some of the determinants of dormancy level in these seeds, the proteomes of subpopulations selected for low and high levels of primary dormancy were compared by two-dimensional polyacrylamide gel electrophoresis of extracts from mature, dry seeds. High-dormancy seeds showed higher expression of small heat shock proteins, enolase, and glyoxalase I than the low-dormancy seeds. The functional relevance of these differences in protein expression was confirmed by the fact that high-dormancy seeds were more tolerant to high temperatures imposed at imbibition and had consistently higher glyoxalase I activity over 0–42 d dark stratification. Higher expression of a putative glutathione peroxidase in low-dormancy seeds was not accompanied by higher activity, but these seeds had a slightly more oxidized glutathione pool and higher total peroxidase activity. Overall, these biochemical and physiological differences suggest that L. rigidum seeds selected for low dormancy are more prepared for rapid germination via peroxidase-mediated cell wall weakening, whilst seeds selected for high dormancy are constitutively prepared to survive environmental stresses, even in the absence of stress during seed development.
机译:野生硬质黑麦草(一年生黑麦草)种群的种子休眠变化很大,在生化水平上没有很好的特征。为了确定这些种子中休眠水平的某些决定因素,通过二维,成熟的干燥种子提取物的聚丙烯酰胺凝胶电泳,比较了选择用于低水平和高水平初级休眠的亚群的蛋白质组。高休眠种子比低休眠种子表现出更高的小热激蛋白,烯醇酶和乙二醛酶I的表达。这些事实在蛋白质表达上的差异与功能有关,这是因为高休眠种子对吸收过程中施加的高温具有更高的耐受性,并且在0-42 d黑暗分层中始终具有较高的乙二醛酶I活性。在低休眠种子中较高的推定谷胱甘肽过氧化物酶表达并没有更高的活性,但是这些种子的谷胱甘肽过氧化程度稍高,总过氧化物酶活性更高。总体而言,这些生化和生理学差异表明,为低休眠选择的僵硬种子更适合通过过氧化物酶介导的细胞壁弱化而快速发芽,而为高休眠选择的种子经过结构化准备,即使在没有环境胁迫的条件下也能生存。种子发育过程中的压力。

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