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首页> 外文期刊>Frontiers in Plant Science >Proteomic analysis reveals differential accumulation of small heat shock proteins and late embryogenesis abundant proteins between ABA-deficient mutant vp5 seeds and wild-type Vp5 seeds in maize
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Proteomic analysis reveals differential accumulation of small heat shock proteins and late embryogenesis abundant proteins between ABA-deficient mutant vp5 seeds and wild-type Vp5 seeds in maize

机译:蛋白质组学分析显示玉米中ABA缺失突变体 vp5 种子与野生型 Vp5 种子之间小的热激蛋白和晚期胚发生丰富蛋白的差异积累。

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ABA is a major plant hormone that plays important roles during many phases of plant life cycle, including seed development, maturity and dormancy, and especially the acquisition of desiccation tolerance. Understanding of the molecular basis of ABA-mediated plant response to stress is of interest not only in basic research on plant adaptation but also in applied research on plant productivity. Maize mutant viviparous -5 ( vp5 ), deficient in ABA biosynthesis in seeds, is a useful material for studying ABA-mediated response in maize. Due to carotenoid deficiency, vp5 endosperm is white, compared to yellow Vp5 endosperm. However, the background difference at proteome level between vp5 and Vp5 seeds is unclear. This study aimed to characterize proteome alterations of maize vp5 seeds and to identify ABA-dependent proteins during seed maturation. We compared the embryo and endosperm proteomes of vp5 and Vp5 seeds by gel-based proteomics. Up to 46 protein spots, most in embryos, were found to be differentially accumulated between vp5 and Vp5 . The identified proteins included small heat shock proteins (sHSPs), late embryogenesis abundant (LEA) proteins, stress proteins, storage proteins and enzymes among others. However, EMB564, the most abundant LEA protein in maize embryo, accumulated in comparable levels between vp5 and Vp5 embryos, which contrasted to previously characterized, greatly lowered expression of emb564 mRNA in vp5 embryos. Moreover, LEA proteins and sHSPs displayed differential accumulations in vp5 embryos: six out of eight identified LEA proteins decreased while nine sHSPs increased in abundance. Finally, we discussed the possible causes of global proteome alterations, especially the observed differential accumulation of identified LEA proteins and sHSPs in vp5 embryos. The data derived from this study provides new insight into ABA-dependent proteins and ABA-mediated response during maize seed maturation.
机译:ABA是一种主要的植物激素,在植物生命周期的许多阶段都发挥着重要作用,包括种子发育,成熟和休眠,尤其是获得耐干燥性。不仅在植物适应性基础研究中,而且在植物生产力的应用研究中,都对了解ABA介导的植物对逆境反应的分子基础感兴趣。缺乏种子中ABA生物合成的玉米突变体胎生-5(vp5)是研究ABA介导的玉米反应的有用材料。由于类胡萝卜素缺乏,vp5胚乳与黄色Vp5胚乳相比是白色的。但是,vp5和Vp5种子在蛋白质组水平上的背景差异尚不清楚。这项研究旨在表征玉米vp5种子的蛋白质组变化,并鉴定种子成熟过程中ABA依赖性蛋白。我们通过基于凝胶的蛋白质组学比较了vp5和Vp5种子的胚和胚乳蛋白质组。发现最多有46个蛋白质斑点(大多数出现在胚胎中)在vp5和Vp5之间差异积累。鉴定出的蛋白质包括小的热激蛋白质(sHSP),晚期胚胎发生丰富(LEA)蛋白质,应激蛋白质,贮藏蛋白质和酶等。然而,EMB564是玉米胚中最丰富的LEA蛋白,在vp5和Vp5胚之间的积累水平相当,这与以前表征的相反,vp5胚中emb564 mRNA的表达大大降低。此外,LEA蛋白和sHSPs在vp5胚胎中显示出不同的积累:八种已鉴定的LEA蛋白中有六种减少,而九种sHSPs大量增加。最后,我们讨论了全局蛋白质组改变的可能原因,尤其是在vp5胚胎中观察到的已识别LEA蛋白和sHSPs的差异积累。这项研究提供的数据为玉米种子成熟期间ABA依赖性蛋白和ABA介导的反应提供了新的见解。

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