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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Proteomic profiling of foxtail millet hybrid Zhangzagu10 and its parent lines using iTRAQ-based technique
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Proteomic profiling of foxtail millet hybrid Zhangzagu10 and its parent lines using iTRAQ-based technique

机译:基于ITRAQ技术的Foxtail Millet Hybridgu10及其母线蛋白质组学分析

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摘要

Heterosis had been increasingly applied in crop production for nearly a century, but the molecular basis of it was poorly understood especially in foxtail millet (Setaria italica). Zhangzagu10 which derived from two-line hybrid breeding system has the characters of ultra-high yield, good stability and extensive disease and lodging resistance. To gain a better understanding of the molecular basis of S.italica heterosis, the isobaric tags for relative and absolute quantification based quantitative proteomic analyses was performed between S.italica hybrid Zhangzagu10 and it parents (male parent Zhangzagu10fu and female parent A2). A total of 4015 proteins were detected, among which 610/276 differentially expressed proteins (DEPs) between Zhangzagu10 and the female/male parent, respectively. The cluster analysis showed that the DEPs expression profiles of Zhangzagu10 were closer to those of the male parent. GO functional classification divided the DEPs into three functional categories (Cellular component, Biological process and Molecular function) and 26 subfamilies, among which three subfamilies had 100% difference between Zhangzagu10 and its parents. KEGG metabolic pathway exhibited significant enrichment of DEPs in Metabolic pathways, Carbon fixation in photosynthetic organisms and Photosynthesis. qRT-PCR verification confirmed the differential expression data and revealed that the expression level of 3 selected genes (such as peroxidase 5-like,G-type lectin S-receptor-like serine/threonine-protein kinase SD2-5,two-on-two hemoglobin-3, etc.) was higher in Zhangzagu10 than that in its male parent. The expression level of 7 selected genes (such as peroxidase 64-like, cysteine-rich receptor-like protein kinase 45, indole-3-acetaldehyde oxidase, etc.) was higher in Zhangzagu10 than that in its male parent, but significantly lower than that in A2. Thus, A2 can potentially optimise the agricultural qualities of Zhangzagu10. Taken together, we hope that this study provides valuable information for the further utilisation and study on the molecular mechanisms of heterosis in hybrid millet.
机译:杂种体越来越多地应用于近一个世纪的作物产量,但其中的分子基础尤其在福克斯特小米(濑盲虫italica)中尤其清晰。 Zhangzagu10来自双线杂种繁殖系统的特征具有超高产量,稳定性良好,疾病广泛的抗性和抗性。为了更好地了解S.Italica杂种优势的分子基础,在S.Italica Hybrid Zhangzagu10和IT父母之间进行了基于相对定量的定量蛋白质组学分析的同感标签(男性父母Zhangzagu10Fu和女性父母A2)。分别检测了4015个蛋白质,其中分别在其中分别在Zhangzagu10和雌性/雄性父母之间进行610/276差异表达的蛋白质(deps)。聚类分析表明,张朱朱10的DEPS表达轮廓更接近男性父母的表达谱。 Go功能分类将DEP分为三种功能类别(细胞成分,生物过程和分子功能)和26个亚属,其中三个亚属植物在Zhangzagu10及其父母之间有100%差异。 Kegg代谢途径在代谢途径中表现出显着的富集,光合生物和光合作用中的碳固定。 QRT-PCR验证证实了差异表达数据,并揭示了3种所选基因的表达水平(例如过氧化物酶5样,G型凝集素S-受体样丝氨酸/苏氨酸 - 蛋白激酶SD2-5,两对多 - 在张朱朱10中的两个血红蛋白-3等于其雄性父母的血红蛋白-3等。 7所选基因的表达水平(例如过氧化物酶64样,富含半胱氨酸的受体样蛋白激酶45,Zhangzagu10的吲哚-3-乙醛氧化酶等)比其雄性父母在较大的父母中较高,但显着低于在A2中。因此,A2可能潜在地优化张朱语的农业品质。我们希望这项研究能够为杂交米勒中的杂种优势的分子机制提供有价值的信息。

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