首页> 外文期刊>Physiology and Molecular Biology of Plants >Comparative transcriptome analysis in Chinese cabbage (Brassica rapa ssp. pekinesis) for DEGs of Ogura-, Polima-CMS and their shared maintainer
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Comparative transcriptome analysis in Chinese cabbage (Brassica rapa ssp. pekinesis) for DEGs of Ogura-, Polima-CMS and their shared maintainer

机译:大白菜(Brassica Rapa SSP。Pekinesis)对比较转录组分析为Ogura,Polima-CMS和共用维护者

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摘要

Cytoplasmic male sterility (CMS) is maternally inherited trait, which hinders the ability to produce viable pollen in plants. It serves as a useful tool for hybrid seed production via exploiting heterosis in crops. The molecular mechanism of CMS and fertility restoration has been investigated in different crops. However, limited number of reports is available on comparison of Ogura- and Polima-CMS with their shared maintainer in Chinese cabbage. We performed transcript profiling of sterile Ogura CMS (Tyms), Polima CMS (22m2) and their shared maintainer line (231-330) with an aim to identify genes associated with male sterility. In this work, we identified 912, 7199 and 6381 DEGs (Differentially Expressed Genes) in 22m2 Vs Tyms, 231-330 VS 22m2 and 231-330 Vs Tyms, respectively. The GO (Gene Ontology) annotation and KEGG pathway analysis suggested that most of the DEGs were involved in pollen development, carbon metabolism, lipase activity, lipid binding, penta-tricopeptide repeat (PPR), citrate cycle and oxidative phosphorylation, which were down-regulated in both CMS lines. This result will provide an important resource for further understanding of functional pollen development, the CMS mechanism and to improve molecular breeding in Chinese cabbage.
机译:细胞质雄性不育(CMS)是母体遗传性的特质,阻碍了在植物中产生可行的花粉的能力。它是通过在作物中利用杂种优化的杂种种子生产的有用工具。在不同的作物中研究了CMS和生育恢复的分子机制。但是,有限的报告数量可在大白菜中与其共享维护者进行奥格拉和帕米马-CMS比较。我们进行了无菌ogura CMS(TYM),POPIMA CMS(22M2)及其共用维护系列(231-330)的转录物分析,目的是鉴定与雄性不育相关的基因。在这项工作中,我们鉴定了912,7199和6381次(差异表达的基因)分别以22m 2 Vs Tym,231-330 vs 22m2和231-330 Vs Tyms分别进行。 GO(基因本体论)注释和KEGG途径分析表明,大多数可参与花粉发育,碳代谢,脂肪酶活性,脂质结合,戊二肽重复(PPR),柠檬酸盐循环和氧化磷酸化,这是下降的 - 在两个CMS线上受到监管。该结果将提供一种重要的资源,以进一步了解功能花粉发育,CMS机制以及​​改善大白菜中的分子育种。

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