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Constructing the metabolic and regulatory pathways in germinating rice seeds through proteomic approach.

机译:通过蛋白质组学方法构建发芽水稻种子的代谢和调控途径。

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Construction of metabolic and regulatory pathways from proteomic data can contextualize the large-scale data within the overall physiological scheme of an organism. It is an efficient way to predict metabolic phenotype or regulatory style. We did protein profiling in the germinating rice seeds through 1-DE via LC MS/MS proteomic shotgun strategy. In total, 673 proteins were identified, and could be sorted into 14 functional groups. The largest group was metabolism related. The metabolic proteins were integrated into different metabolic pathways to show the style of reserves mobilization and precursor preparation during the germination. Analysis of the regulatory proteins indicated that regulation of redox homeostasis and gene expression also play important roles for the rice seed germination. Although transcription is unnecessary for the germination, it could ensure the rapidity and uniformity of germination. On the contrary, translation with the stored mRNA is required for the germination. This study will help us to further understand the metabolic style, regulation of redox homeostasis, and gene expression during rice seed germination.
机译:从蛋白质组学数据构建代谢和调节途径可以将生物整体生理方案中的大规模数据纳入背景。这是预测代谢表型或调节方式的有效方法。通过LC MS / MS蛋白质组shot弹枪策略,我们通过1-DE对发芽的水稻种子进行了蛋白质谱分析。总共鉴定出673种蛋白质,可分为14个功能组。最大的一组与代谢有关。代谢蛋白被整合到不同的代谢途径中,以显示发芽过程中储备动员和前体准备的方式。对调节蛋白的分析表明,氧化还原稳态和基因表达的调节也对水稻种子发芽起重要作用。尽管对于发芽来说转录是不必要的,但是它可以确保发芽的速度和均匀性。相反,发芽需要用存储的mRNA进行翻译。这项研究将帮助我们进一步了解水稻种子萌发过程中的代谢方式,氧化还原稳态的调节以及基因表达。

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