首页> 美国卫生研究院文献>International Journal of Molecular Sciences >iTRAQ-Based Proteomics Analyses of Sterile/Fertile Anthers from a Thermo-Sensitive Cytoplasmic Male-Sterile Wheat with Aegilops kotschyi Cytoplasm
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iTRAQ-Based Proteomics Analyses of Sterile/Fertile Anthers from a Thermo-Sensitive Cytoplasmic Male-Sterile Wheat with Aegilops kotschyi Cytoplasm

机译:基于iTRAQ的热敏细胞质雄性不育小麦与埃及锦葵细胞质不育/可育花药的蛋白质组学分析

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摘要

A “two-line hybrid system” was developed, previously based on thermo-sensitive cytoplasmic male sterility in Aegilops kotschyi (K-TCMS), which can be used in wheat breeding. The K-TCMS line exhibits complete male sterility and it can be used to produce hybrid wheat seeds during the normal wheat-growing season; it propagates via self-pollination at high temperatures. Isobaric tags for relative and absolute quantification-based quantitative proteome and bioinformatics analyses of the TCMS line KTM3315A were conducted under different fertility conditions to understand the mechanisms of fertility conversion in the pollen development stages. In total, 4639 proteins were identified, the differentially abundant proteins that increased/decreased in plants with differences in fertility were mainly involved with energy metabolism, starch and sucrose metabolism, phenylpropanoid biosynthesis, protein synthesis, translation, folding, and degradation. Compared with the sterile condition, many of the proteins that related to energy and phenylpropanoid metabolism increased during the anther development stage. Thus, we suggest that energy and phenylpropanoid metabolism pathways are important for fertility conversion in K-TCMS wheat. These findings provide valuable insights into the proteins involved with anther and pollen development, thereby, helping to further understand the mechanism of TCMS in wheat.
机译:开发了一种“两系杂交系统”,该系统以前是基于可对Aegilops kotschyi(K-TCMS)进行热敏性细胞质雄性不育的,可用于小麦育种。 K-TCMS品系表现出完全的雄性不育性,可在正常的小麦生长季节用于生产杂种小麦种子。它在高温下通过自花传粉传播。在不同的育性条件下,对TCMS系KTM3315A进行了基于相对和绝对定量的定量蛋白质组学和生物信息学分析的等压标签,以了解花粉发育阶段的育性转化机制。总共鉴定出4639种蛋白质,在具有不同育性的植物中增加/减少的差异丰富的蛋白质主要涉及能量代谢,淀粉和蔗糖代谢,苯丙烷类生物合成,蛋白质合成,翻译,折叠和降解。与无菌条件相比,与能量和苯丙烷代谢有关的许多蛋白质在花药发育阶段均增加。因此,我们认为能量和苯丙烷代谢途径对于K-TCMS小麦的育性转化很重要。这些发现为了解与花药和花粉发育有关的蛋白质提供了宝贵的见识,从而有助于进一步了解小麦中TCMS的机制。

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