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首页> 外文期刊>Plant Biotechnology Journal >Integrated analysis of seed proteome and mRNA oxidation reveals distinct post-transcriptional features regulating dormancy in wheat (Triticum aestivum L.).
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Integrated analysis of seed proteome and mRNA oxidation reveals distinct post-transcriptional features regulating dormancy in wheat (Triticum aestivum L.).

机译:种子蛋白质组和mRNA氧化的综合分析揭示了调节小麦休眠的不同转录特征(Triticum aestivum L.)。

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摘要

Wheat seeds can be released from a dormant state by after-ripening; however, the underlying molecular mechanisms are still mostly unknown. We previously identified transcriptional programmes involved in the regulation of after-ripening-mediated seed dormancy decay in wheat (Triticum aestivum L.). Here, we show that seed dormancy maintenance and its release by dry after-ripening in wheat is associated with oxidative modification of distinct seed-stored mRNAs that mainly correspond to oxidative phosphorylation, ribosome biogenesis, nutrient reservoir and alpha -amylase inhibitor activities, suggesting the significance of post-transcriptional repression of these biological processes in regulating seed dormancy. We further show that after-ripening induced seed dormancy release in wheat is mediated by differential expression of specific proteins in both dry and hydrated states, including those involved in proteolysis, cellular signalling, translation and energy metabolism. Among the genes corresponding to these proteins, the expression of those encoding alpha -amylase/trypsin inhibitor and starch synthase appears to be regulated by mRNA oxidation. Co-expression analysis of the probesets differentially expressed and oxidized during dry after-ripening along with those corresponding to proteins differentially regulated between dormant and after-ripened seeds produced three co-expressed gene clusters containing more candidate genes potentially involved in the regulation of seed dormancy in wheat. Two of the three clusters are enriched with elements that are either abscisic acid (ABA) responsive or recognized by ABA-regulated transcription factors, indicating the association between wheat seed dormancy and ABA sensitivity.
机译:小麦种子可以通过成熟的休眠状态从休眠状态释放;然而,潜在的分子机制仍然大多是未知的。我们之前确定了在小麦(Triticum aestivum L)中熟练调节羟化介导的种子休眠衰减的转录方案。在这里,我们表明种子休眠维持及其在小麦中熟发的干燥后的脱脂与不同的种子储存MRNA的氧化改性相关,主要与氧化磷酸化,核糖体生物发生,营养储层和α-淀粉酶抑制剂活动有关,暗示了这些生物过程后转录后抑制在调节种子休眠中的意义。我们进一步表明,小麦中成熟的诱导的种子休眠释放通过干燥和水合状态中的特异性蛋白质的差异表达介导,包括参与蛋白水解,细胞信号传导,翻译和能量代谢的那些。在对应于这些蛋白质的基因中,编码α-淀粉酶/胰蛋白酶抑制剂和淀粉合酶的表达似乎通过MRNA氧化来调节。在干燥后熟透的干燥后差异表达和氧化的探针的共表达分析以及对应于休眠和成熟的种子之间的蛋白质的蛋白质产生三种共同表达基因簇,其含有更多候选基因可能涉及种子休眠调节的候选基因在小麦。三种簇中的两种富含脱离酸(ABA)的元素,响应于ABA调节的转录因子,表明小麦种子休眠和ABA敏感性之间的关联。

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