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Gene Expression Analysis of Plum pox virus (Sharka) Susceptibility/Resistance in Apricot ( Prunus armeniaca L.)

机译:杏梅(Prunus armeniaca L.)对梅花痘病毒(Sharka)敏感性/抗性的基因表达分析

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摘要

RNA-Seq has proven to be a very powerful tool in the analysis of the Plum pox virus (PPV, sharka disease)/Prunus interaction. This technique is an important complementary tool to other means of studying genomics. In this work an analysis of gene expression of resistance/susceptibility to PPV in apricot is performed. RNA-Seq has been applied to analyse the gene expression changes induced by PPV infection in leaves from two full-sib apricot genotypes, “Rojo Pasión” and “Z506-7”, resistant and susceptible to PPV, respectively. Transcriptomic analyses revealed the existence of more than 2,000 genes related to the pathogen response and resistance to PPV in apricot. These results showed that the response to infection by the virus in the susceptible genotype is associated with an induction of genes involved in pathogen resistance such as the allene oxide synthase, S-adenosylmethionine synthetase 2 and the major MLP-like protein 423. Over-expression of the Dicer protein 2a may indicate the suppression of a gene silencing mechanism of the plant by PPV HCPro and P1 PPV proteins. On the other hand, there were 164 genes involved in resistance mechanisms that have been identified in apricot, 49 of which are located in the PPVres region (scaffold 1 positions from 8,050,804 to 8,244,925), which is responsible for PPV resistance in apricot. Among these genes in apricot there are several MATH domain-containing genes, although other genes inside (Pleiotropic drug resistance 9 gene) or outside (CAP, Cysteine-rich secretory proteins, Antigen 5 and Pathogenesis-related 1 protein; and LEA, Late embryogenesis abundant protein) PPVres region could also be involved in the resistance.
机译:RNA-Seq已被证明是分析李子痘病毒(PPV,sharka病)/李子相互作用的非常强大的工具。该技术是其他研究基因组学方法的重要补充工具。在这项工作中,进行了对杏中对PPV的抗性/敏感性的基因表达的分析。 RNA-Seq已被用于分析由PPV感染引起的两种全同胞杏基因型“ RojoPasión”和“ Z506-7”分别对PPV具有抗性和敏感性的基因表达变化。转录组学分析显示,存在2000多个与杏病原体反应和对PPV的抗性有关的基因。这些结果表明,在易感基因型中对病毒感染的反应与诱导与病原体抗性有关的基因有关,例如,氧化烯合成酶,S-腺苷甲硫氨酸合成酶2和主要的MLP样蛋白423。 Dicer蛋白2a的表达可能表明PPV HCPro和P1 PPV蛋白抑制了植物的基因沉默机制。另一方面,在杏中已鉴定出涉及抗药性机制的164个基因,其中49个位于PPVres区(1号支架的位置从8,050,804到8,244,925),这是杏中PPV抗性的原因。在杏子的这些基因中,有几个包含MATH结构域的基因,尽管其他基因在内部(多效药物抗药性9基因)或外部(CAP,富含半胱氨酸的分泌蛋白,抗原5和致病相关的1蛋白)以及LEA(晚期胚胎发生) PPVres区也可能参与了抗性。

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