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Comparative genomics yields insights into niche adaptation of plant vascular wilt pathogens

机译:比较基因组学提供了对植物维管束枯萎病原体生态位适应的见解

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摘要

The vascular wilt fungi Verticillium dahliae and V. albo-atrum infect over 200 plant species, causing billions of dollars in annual crop losses. The characteristic wilt symptoms are a result of colonization and proliferation of the pathogens in the xylem vessels, which undergo fluctuations in osmolarity. To gain insights into the mechanisms that confer the organisms' pathogenicity and enable them to proliferate in the unique ecological niche of the plant vascular system, we sequenced the genomes of V. dahliae and V. albo-atrum and compared them to each other, and to the genome of Fusarium oxysporum, another fungal wilt pathogen. Our analyses identified a set of proteins that are shared among all three wilt pathogens, and present in few other fungal species
机译:维管植物黄萎病菌和白纹病菌感染了200多种植物,每年造成数十亿美元的农作物损失。萎缩症状的特征是木质部血管中病原体的定殖和繁殖的结果,这些病原体的渗透压波动。为了深入了解赋予生物体致病性并使它们在植物血管系统独特的生态位中增殖的机制,我们对大丽花弧菌和白粉弧菌的基因组进行了测序,并将它们相互比较,枯萎病的另一种真菌枯萎病原体的基因组。我们的分析确定了所有三种枯萎病原体共有的一组蛋白质,并且存在于其他几种真菌中

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