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首页> 外文期刊>Plant Cell Reports >Identification, characterization, and expression analysis of cowpea (Vigna unguiculata [L.] Walp.) miRNAs in response to cowpea severe mosaic virus (CPSMV) challenge
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Identification, characterization, and expression analysis of cowpea (Vigna unguiculata [L.] Walp.) miRNAs in response to cowpea severe mosaic virus (CPSMV) challenge

机译:豇豆的鉴定,表征和表达分析(Vigna Unguiculata [L.] Walp。)MiRNA响应豇豆严重马赛克病毒(CPSMV)挑战

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Key message Cowpea miRNAs and Argonaute genes showed differential expression patterns in response to CPSMV challenge Several biotic stresses affect cowpea production and yield. CPSMV stands out for causing severe negative impacts on cowpea. Plants have two main induced immune systems. In the basal system (PTI, PAMP-triggered immunity), plants recognize and respond to conserved molecular patterns associated with pathogens (PAMPs). The second type (ETI, Effector-triggered immunity) is induced after plant recognition of specific factors from pathogens. RNA silencing is another important defense mechanism in plants. Our research group has been using biochemical and proteomic approaches to learn which proteins and pathways are involved and could explain why some cowpea genotypes are resistant whereas others are susceptible to CPSMV. This current study was conducted to determine the role of cowpea miRNA in the interaction between a resistant cowpea genotype (BRS-Marataoa) and CPSMV. Previously identified and deposited plant microRNA sequences were used to find out all possible microRNAs in the cowpea genome. This search detected 617 mature microRNAs, which were distributed in 89 microRNA families. Next, 4 out of these 617 miRNAs and their possible target genes that encode the proteins Kat-p80, DEAD-Box, GST, and SPB9, all involved in the defense response of cowpea to CPSMV, had their expression compared between cowpea leaves uninoculated and inoculated with CPSMV. Additionally, the differential expression of genes that encode the Argonaute (AGO) proteins 1, 2, 4, 6, and 10 is reported. In summary, the studied miRNAs and AGO 2 and AGO4 associated genes showed differential expression patterns in response to CPSMV challenge, which indicate their role in cowpea defense.
机译:关键消息豇豆MiRNA和Argonaute基因显示出鉴别表达模式,响应CPSMV挑战几种生物应激影响豇豆生产和产量。 CPSMV脱颖而出,为对豇豆产生严重的负面影响。植物有两个主要诱导的免疫系统。在基础系统(PTI,PTI,PAMP触发的免疫)中,植物识别和响应与病原体(PAMPS)相关的保守分子模式。在植物识别来自病原体的特定因子后诱导第二类(ETI,效应触发的免疫)。 RNA沉默是植物的另一个重要的防御机制。我们的研究小组一直在使用生化和蛋白质组学方法来了解涉及哪种蛋白质和途径,可以解释为什么一些豇豆基因型是抗性的,而其他豇豆基因型则易于CPSMV。进行了本前研究以确定豇豆miRNA在抗性豇豆基因型(Brs-Marataoa)和CPSMV之间的相互作用中的作用。以前鉴定和沉积的植物MicroRNA序列用于在豇豆基因组中找到所有可能的微小RNA。该搜索检测到617个成熟的MicroRNA,分布在89个MicroRNA家庭中。接下来,这617个miRNA中的4个和它们的可能靶基因,它们可以编码蛋白质KAT-P80,死箱,GST和SPB9,所有这些都参与豇豆对CPSMV的防御响应,在豇豆之间的表达未被征收和接种CPSMV。另外,报道了编码蚁长型(前)蛋白1,2,4,6和10的基因的差异表达。总之,研究的miRNA等2和以前4个相关基因显示出差异表达模式,以应对CPSMV挑战,这表明它们在豇豆防御中的作用。

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