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Transcriptome Profiling of the Phaseolus vulgaris - Colletotrichum lindemuthianum Pathosystem

机译:菜豆的转录组谱分析-炭疽病菌病理系统

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摘要

Bean (Phaseolus vulgaris) anthracnose caused by the hemi-biotrophic pathogen Colletotrichum lindemuthianum is a major factor limiting production worldwide. Although sources of resistance have been identified and characterized, the early molecular events in the host-pathogen interface have not been investigated. In the current study, we conducted a comprehensive transcriptome analysis using Illumina sequencing of two near isogenic lines (NILs) differing for the presence of the Co-1 gene on chromosome Pv01 during a time course following infection with race 73 of C. lindemuthianum. From this, we identified 3,250 significantly differentially expressed genes (DEGs) within and between the NILs over the time course of infection. During the biotrophic phase the majority of DEGs were up regulated in the susceptible NIL, whereas more DEGs were up-regulated in the resistant NIL during the necrotrophic phase. Various defense related genes, such as those encoding PR proteins, peroxidases, lipoxygenases were up regulated in the resistant NIL. Conversely, genes encoding sugar transporters were up-regulated in the susceptible NIL during the later stages of infection. Additionally, numerous transcription factors (TFs) and candidate genes within the vicinity of the Co-1 locus were differentially expressed, suggesting a global reprogramming of gene expression in and around the Co-1 locus. Through this analysis, we reduced the previous number of candidate genes reported at the Co-1 locus from eight to three. These results suggest the dynamic nature of P. vulgaris–C. lindemuthianum interaction at the transcriptomic level and reflect the role of both pathogen and effector triggered immunity on changes in plant gene expression.
机译:由半生物营养病原体Colletotrichum lindemuthianum引起的菜豆(菜豆)炭疽病是限制全球产量的主要因素。尽管已经鉴定和鉴定了抗药性来源,但尚未研究宿主-病原体界面中的早期分子事件。在当前的研究中,我们使用了两个近等基因系(NIL)的Illumina测序进行了综合的转录组分析,这两个不同等位基因系在感染C. lindemuthianum的第73个种族的一段时间内,在染色体Pv01上存在Co-1基因。由此,我们确定了随着感染时间的推移,NIL内部和之间的3,250个显着差异表达的基因(DEG)。在生物营养阶段,大部分的DEGs在敏感的NIL中被上调,而在抗营养的NIL中,更多的DEG在抗性NIL中被上调。各种与防御相关的基因,例如编码PR蛋白,过氧化物酶,脂氧合酶的基因,在抗性NIL中均被上调。相反,在感染后期,易感性NIL中编码糖转运蛋白的基因上调。此外,Co-1基因座附近的许多转录因子(TFs)和候选基因被差异表达,这表明Co-1基因座内和周围的基因表达被重新编程。通过此分析,我们将Co-1位点报告的候选基因的先前数目从8个减少到3个。这些结果表明寻常性假单胞菌C的动态性质。 lindemuthianum在转录组水平上的相互作用,反映了病原体和效应子共同触发的对植物基因表达变化的免疫作用。

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