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Genomics Spurs Rapid Advances in Our Understanding of the Biology of Vascular Wilt Pathogens in the Genus Verticillium

机译:基因组学推动了我们对黄萎病属植物枯萎病病原生物学生物学认识的快速发展

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The availability of genomic sequences of several Verticillium species triggered an explosion of genome-scale investigations of mechanisms fundamental to the Verticillium life cycle and disease process. Comparative genomics studies have revealed evolutionary mechanisms, such as hybridization and interchromosomal rearrangements, that have shaped these genomes. Functional analyses of a diverse group of genes encoding virulence factors indicate that successful host xylem colonization relies on specific Verticillium responses to various stresses, including nutrient deficiency and host defense-derived oxidative stress. Regulatory pathways that control responses to changes in nutrient availability also appear to positively control resting structure development. Conversely, resting structure development seems to be repressed by pathways, such as those involving effector secretion, which promote responses to host defenses. The genomics-enabled functional characterization of responses to the challenges presented by the xylem environment, accompanied by identification of novel virulence factors, has rapidly expanded our understanding of niche adaptation in Verticillium species.
机译:几个黄萎病菌种的基因组序列的可用性引发了对黄萎病菌生命周期和疾病过程基本机制的基因组规模研究的爆炸式增长。比较基因组学研究已经揭示了形成这些基因组的进化机制,例如杂交和染色体间重排。对多种编码毒力因子的基因进行的功能分析表明,成功的宿主木质部木质部定植取决于对各种胁迫(包括营养缺乏和宿主防御衍生的氧化胁迫)的特定黄萎病应答。控制对养分利用率变化的响应的调节途径似乎也可以积极地控制静止结构的发育。相反,静息结构的发展似乎受到诸如涉及效应子分泌的途径的抑制,这些途径会促进对宿主防御的反应。对木质部环境提出的挑战做出响应的基因组学功能表征,以及新毒力因子的鉴定,迅速扩展了我们对黄萎病菌种生态位适应性的了解。

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