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首页> 外文期刊>ACS Omega >Soybean Mutants Lacking Abundant Seed Storage Proteins Are Impaired in Mobilization of Storage Reserves and Germination
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Soybean Mutants Lacking Abundant Seed Storage Proteins Are Impaired in Mobilization of Storage Reserves and Germination

机译:缺乏丰富的种子储量蛋白的大豆突变体损害储量储量和萌发

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摘要

Spontaneous and radiation-induced mutants of soybean, despite loss of abundant seed proteins, have been reported to grow and reproduce normally without any apparent physiological abnormalities. Here, we report the development and characterization of a soybean line (BSH-2) that lacks several abundant seed storage proteins. One-dimensional and high-resolution two-dimensional gel electrophoresis revealed the absence of the α′ and α subunits of β-conglycinin and G1, G2, G4, and G5 glycinin in the newly developed mutant line (BSH-2). Like our earlier developed soybean mutant line (BSH-3), the seeds of BSH-2 also accumulated high levels of free amino acids as compared with wild-type DN47 seeds. An examination of the germination rates revealed that both BSH-2 and BSH-3 had significantly lower germination rates compared with the parent line DN47. Two-dimensional gel electrophoresis analysis demonstrated that these mutants had slower rates of mobilization of seed storage proteins. The delayed mobilization of storage proteins in BSH-2 and BSH-3 seeds was also correlated with a delayed induction of proteolytic activity in the mutants when compared to DN47. Similarly, qRT-PCR analysis revealed distinct expression pattern of genes involved in proteolytic pathway in the mutants when compared to DN47. Transmission electron microscopy observation of soybean seeds at two germination stages revealed striking differences in the breakdown of protein storage vacuoles and lipid bodies in the mutants. Our study demonstrates that BSH-2 and BSH-3 are compromised in mobilization of storage reserves and the absence of abundant storage proteins may affect the seed germination efficiency and post-germinative seedling establishment.
机译:据报道,大豆的自发性和辐射诱导的大豆突变体,据报道,通常没有任何明显的生理异常,通常会生长和繁殖。在这里,我们报告了缺乏几种丰富的种子储存蛋白的大豆线(BSH-2)的开发和表征。一维和高分辨率的二维凝胶电泳显示出在新开发的突变线(BSH-2)中β-甘氨酸蛋白和G1,G2,G4和G5甘油蛋白的α'和α亚基的不存在。与我们之前的大豆突变线(BSH-3)一样,与野生型DN47种子相比,BSH-2的种子也积累了高水平的游离氨基酸。对发芽率的检查表明,与母线DN47相比,BSH-2和BSH-3的发芽率显着降低。二维凝胶电泳分析表明,这些突变体具有较慢的种子储存蛋白的动员率。与DN47相比,BSH-2和BSH-3种子中的储存蛋白在BSH-2和BSH-3种子中的延迟动员也与突变体中的蛋白水解活性的延迟诱导相关。类似地,QRT-PCR分析显示与DN47相比突变体中蛋白水解途径中参与的不同基因的表达模式。两种萌发阶段的透射电子显微镜观察大豆种子揭示蛋白质储质液体和突变体中脂质体崩溃的显着差异。我们的研究表明,BSH-2和BSH-3在动员储备中受到损害,并且没有丰富的储存蛋白质可能会影响种子萌发效率和发芽后幼苗建立。

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