首页> 外文期刊>BMC Genomics >Comparative transcriptomics reveals suppressed expression of genes related to auxin and the cell cycle contributes to the resistance of cucumber against Meloidogyne incognita
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Comparative transcriptomics reveals suppressed expression of genes related to auxin and the cell cycle contributes to the resistance of cucumber against Meloidogyne incognita

机译:比较转录组织揭示抑制与生长素相关的基因的表达,细胞周期有助于黄瓜对meloidogyne的抗性

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Meloidogyne incognita is a devastating nematode that causes significant losses in cucumber production worldwide. Although numerous studies have emphasized on the susceptible response of plants after nematode infection, the exact regulation mechanism of M. incognita-resistance in cucumber remains elusive. Verification of an introgression line, 'IL10-1', with M. incognita-resistance provides the opportunity to unravel the resistance mechanism of cucumber against M. incognita. In the present study, analyses of physiological responses and transcriptional events between IL10-1 (resistant line) and CC3 (susceptible line) were conducted after M. incognita infection. Physiological observations showed abnormal development of giant cells and M. incognita in IL10-1, which were the primary differences compared with CC3. Furthermore, Gene ontology (GO) analysis revealed that genes encoding cell wall proteins were up-regulated in IL10-1 and that the highly expressed lipid transfer protein gene (Csa6G410090) might be the principal regulator of this up-regulation. Simultaneously, analyses of gene expression profiles revealed more auxin-related genes were suppressed in IL10-1 than in those of CC3, which corresponded with the lower level of indole acetic acid (IAA) in the roots of IL10-1 than in those of CC3. Additionally, poor nucleus development as a clear indication of abnormal giant cells in IL10-1 was related to inhibition of the cell cycle. Of those genes related to the cell cycle, the F-box domain Skp2-like genes were down-regulated in IL10-1, whereas more of these genes were up-regulated in CC3. All of these findings indicate that suppressed expression of genes related to auxin and the cell cycle and highly expressed cell wall proteins play important roles in the abnormal development of giant cells, which hinders the development of M. incognita, thereby causing resistance to M. incognita in IL10-1. Knowledge from this research will provide a useful foundation for developing effective strategies in M. incognita-resistance breeding.
机译:Meloidogyne Incognita是一个毁灭性的线虫,导致全球黄瓜生产中的显着损失。虽然在线虫感染后植物的敏感反应强调了许多研究,但黄瓜中的M.Incognita抗性的确切调节机制仍然难以捉摸。验证Introgression系列'IL10-1',用M.隐式抵抗提供了解开黄瓜抗性机制的机会。在本研究中,在M.Incognita感染后,进行了IL10-1(抗性线)和CC3(易感线)和CC3(易感线)之间的生理反应和转录事件的分析。生理观察结果表明IL10-1中巨细胞和M.Incognita的异常发育,与CC3相比是初级差异。此外,基因本体论(GO)分析显示,在IL10-1中,编码细胞壁蛋白的基因在IL10-1中调节,并且高表达的脂质转移蛋白基因(CSA6G410090)可能是该上调的主要调节因子。同时,基因表达谱的分析显示在IL10-1中抑制了更多的毒素相关基因,而不是在IL10-1的根部中的吲哚乙酸(IAA)的较低水平比CC3中的吲哚乙酸(IAA)相对应。另外,较差的核发发育作为IL10-1中的异常巨细胞的明确指示与细胞周期的抑制有关。在与细胞周期有关的那些基因中,在IL10-1中将F型盒结构域SKP2基因下调,而在CC3中,更多这些基因是上调的。所有这些发现表明,抑制了与蟾蜍素和细胞周期相关的基因的表达和高表达的细胞壁蛋白在巨细胞的异常发育中起重要作用,其阻碍了M. Incognita的发育,从而导致对M.抗性的抗性在IL10-1。本研究的知识将为在抗隐式抗性育种中制定有效策略提供有用的基础。

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