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首页> 外文期刊>BMC Genomics >Identification of genes differentially expressed in a resistant reaction to Mycosphaerella pinodes in pea using microarray technology
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Identification of genes differentially expressed in a resistant reaction to Mycosphaerella pinodes in pea using microarray technology

机译:利用微阵列技术鉴定豌豆中对球菌的抗性反应中差异表达的基因

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Background Ascochyta blight, caused by Mycosphaerella pinodes is one of the most important pea pathogens. However, little is known about the genes and mechanisms of resistance acting against M. pinodes in pea. Resistance identified so far to this pathogen is incomplete, polygenic and scarce in pea, being most common in Pisum relatives. The identification of the genes underlying resistance would increase our knowledge about M. pinodes-pea interaction and would facilitate the introgression of resistance into pea varieties. In the present study differentially expressed genes in the resistant P. sativum ssp. syriacum accession P665 comparing to the susceptible pea cv. Messire after inoculation with M. pinodes have been identified using a M. truncatula microarray. Results Of the 16,470 sequences analysed, 346 were differentially regulated. Differentially regulated genes belonged to almost all functional categories and included genes involved in defense such as genes involved in cell wall reinforcement, phenylpropanoid and phytoalexins metabolism, pathogenesis- related (PR) proteins and detoxification processes. Genes associated with jasmonic acid (JA) and ethylene signal transduction pathways were induced suggesting that the response to M. pinodes in pea is regulated via JA and ET pathways. Expression levels of ten differentially regulated genes were validated in inoculated and control plants using qRT-PCR showing that the P665 accession shows constitutively an increased expression of the defense related genes as peroxidases, disease resistance response protein 39 (DRR230-b), glutathione S-transferase (GST) and 6a-hydroxymaackiain methyltransferase. Conclusions Through this study a global view of genes expressed during resistance to M. pinodes has been obtained, giving relevant information about the mechanisms and pathways conferring resistance to this important disease. In addition, the M. truncatula microarray represents an efficient tool to identify candidate genes controlling resistance to M. pinodes in pea.
机译:背景由松散球菌引起的枯草枯萎病是最重要的豌豆病原体之一。然而,关于豌豆中的抗梭状芽胞杆菌的基因和抗性机​​制知之甚少。到目前为止,对这种病原体的抗性在豌豆中是不完全的,多基因的和稀缺的,在Pisum亲戚中最常见。鉴定抗性基因的基因将增加我们对pinodes-豌豆相互作用的认识,并有助于将抗性渗入豌豆品种。在本研究中,在抗性毕赤酵母中差异表达基因。与易感豌豆简历相比,syriacum保藏号为P665。接种松散支原体后,已使用截短支原体微阵列鉴定了相公。结果在分析的16,470个序列中,有346个受调控。差异调节基因几乎属于所有功能类别,包括与防御有关的基因,例如与细胞壁增强,苯丙烷和植物抗毒素新陈代谢,致病相关(PR)蛋白和排毒过程有关的基因。诱导了与茉莉酸(JA)和乙烯信号转导途径相关的基因,表明豌豆对松果体的响应是通过JA和ET途径调控的。使用qRT-PCR在接种植物和对照植物中验证了十种差异调节基因的表达水平,表明P665入种组成性表达了防御相关基因的表达增加,如过氧化物酶,抗病反应蛋白39(DRR230-b),谷胱甘肽S-转移酶(GST)和6a-羟基毛霉菌素甲基转移酶。结论通过这项研究,已获得了对松果体抗药性表达的基因的整体看法,并提供了有关对该重要疾病产生抗性的机制和途径的相关信息。此外,截短分枝杆菌微阵列代表了一种有效的工具,可用于识别控制豌豆中对松节线虫的抗性的候选基因。

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