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首页> 外文期刊>Journal of proteomics >Comparative proteomic analysis reveals differentially expressed proteins correlated with fuzz fiber initiation in diploid cotton (Gossypium arboreum L.)
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Comparative proteomic analysis reveals differentially expressed proteins correlated with fuzz fiber initiation in diploid cotton (Gossypium arboreum L.)

机译:比较蛋白质组学分析显示与二倍体棉(棉)中的绒毛纤维起始相关的差异表达蛋白质。

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In this study, a comparative proteomic analysis was employed to identify fuzz fiber initiation-related proteins in wild-type diploid cotton (Gossypium arboreum L.) and its fuzzless mutant. Temporal changes in global proteomes were examined using 2-DE at five developmental time points for fuzz fiber initiation, and 71 differentially expressed protein species were identified by MS, 45 of which were preferentially accumulated in the wild-type. These proteins were assigned to several functional categories, mainly in cell response/signal transduction, redox homeostasis, protein metabolism and energy/carbohydrate metabolism. It was remarkable that more than ten key proteins with high-abundance were involved in gibberellic acid (GA) signaling and ROS scavenging, and increasing concentrations of active GAs and H2O2 were also detected approximately 5dpa in wild type ovules. Furthermore, in vivo GA and H2O2 treatments of ovules inside young bolls showed that these compounds can synergistically promote fuzz fiber initiation. Our findings not only described a dynamic protein network supporting fuzz initiation in diploid cotton fiber ovules, but also deepened our understanding of the molecular basis of cotton fiber initiation. Biological significance: Our study reported the identification of differentially expressed proteins in wild-type diploid cotton (G. arboreum L.) and its fuzzless mutant by comparative proteomic approach. In total, 71 protein species related to fuzz initiation were identified by MS. These proteins were assigned to several functional categories, mainly in energy/carbohydrate metabolism, protein metabolism, signal transduction, redox homeostasis etc. Importantly, a number of key proteins were found to be associated with GA signaling and ROS scavenging. In consistence with these findings, we detected the increase of GAs and H2O2 concentrations during fiber initiation, and our in vivo ovule experiments with GA and H2O2 injection and following microscopy observation of fuzz fiber initiation supported promoting effects of GA and H2O2 on cotton fiber initiation. These findings depicted a dynamic protein network supporting cotton fiber initiation in diploid cotton ovules. Our study is of major significance for understanding the molecular mechanisms controlling fuzz initiation and also provides a solid basis for further functional research of single nodes of this network in relation to cotton fiber initiation.
机译:在这项研究中,采用了比较蛋白质组学分析方法来鉴定野生型二倍体棉(棉属棉)及其无绒毛突变体中与绒毛纤维起始相关的蛋白质。在五个发育时间点使用2-DE检测了全球蛋白质组的时间变化,以进行绒毛纤维引发,并通过质谱鉴定了71种差异表达的蛋白质,其中45种优先积聚在野生型中。这些蛋白质被分为几个功能类别,主要在细胞反应/信号转导,氧化还原稳态,蛋白质代谢和能量/碳水化合物代谢中。值得注意的是,十多种高丰度关键蛋白参与了赤霉素(GA)信号传导和ROS清除,并且在野生型胚珠中还检测到约5dpa的活性GAs和H2O2浓度增加。此外,对幼虫内部胚珠的体内GA和H2O2处理表明,这些化合物可以协同促进绒毛纤维的萌生。我们的发现不仅描述了支持二倍体棉纤维胚珠起毛的动态蛋白质网络,而且加深了我们对棉纤维萌发分子基础的理解。生物学意义:我们的研究报道了通过比较蛋白质组学方法鉴定野生型二倍体棉(G. arboreum L.)及其无绒毛突变体中差异表达的蛋白质。 MS总共鉴定出71种与起毛有关的蛋白质。这些蛋白质被分为几个功能类别,主要在能量/碳水化合物代谢,蛋白质代谢,信号转导,氧化还原稳态等方面。重要的是,发现许多关键蛋白质与GA信号传导和ROS清除有关。根据这些发现,我们检测到纤维启动过程中GAs和H2O2浓度的增加,我们在体内进行GA和H2O2注射的胚珠实验以及在显微镜下观察的绒毛纤维启动支持了GA和H2O2对棉纤维启动的促进作用。这些发现描述了支持二倍体棉胚珠中棉纤维起始的动态蛋白质网络。我们的研究对于理解控制起毛的分子机制具有重要意义,也为进一步研究该网络中与棉纤维起毛有关的单个节点的功能奠定了坚实的基础。

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