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Gene Expression Profile Changes in Cotton Root and Hypocotyl Tissues in Response to Infection with Fusarium oxysporum f. sp. vasinfectum

机译:棉花尖孢镰刀菌感染对棉花根和下胚轴组织基因表达谱的影响sp。血管感染

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Microarray analysis of large-scale temporal and tissue-specific plant gene expression changes occurring during a susceptible plant-pathogen interaction revealed different gene expression profile changes in cotton root and hypocotyl tissues. In hypocotyl tissues infected with Fusarium oxysporum f. sp. vasinfectum , increased expression of defense-related genes was observed, whereas few changes in the expression levels of defense-related genes were found in infected root tissues. In infected roots, more plant genes were repressed than were induced, especially at the earlier stages of infection. Although many known cotton defense responses were identified, including induction of pathogenesis-related genes and gossypol biosynthesis genes, potential new defense responses also were identified, such as the biosynthesis of lignans. Many of the stress-related gene responses were common to both tissues. The repression of drought-responsive proteins such as aquaporins in both roots and hypocotyls represents a previously unreported response of a host to pathogen attack that may be specific to vascular wilt diseases. Gene expression results implicated the phytohormones ethylene and auxin in the disease process. Biochemical analysis of hormone level changes supported this observation.
机译:在敏感的植物-病原体相互作用期间发生的大规模时间和组织特异性植物基因表达变化的微阵列分析揭示了棉花根和下胚轴组织中不同的基因表达谱变化。在被枯萎镰刀菌感染的下胚轴组织中。 sp。血管感染,观察到防御相关基因的表达增加,而在感染的根组织中防御相关基因的表达水平几乎没有变化。在被感染的根中,受抑制的植物基因多于被诱导的植物基因,尤其是在感染的早期。尽管已鉴定出许多已知的棉花防御反应,包括与病程相关的基因和棉酚生物合成基因的诱导,但也鉴定了潜在的新防御反应,例如木脂素的生物合成。许多与压力有关的基因反应在两个组织中都是相同的。根和下胚轴中干旱响应蛋白(例如水通道蛋白)的阻遏代表了宿主先前对病原体侵袭的未报告反应,病原体侵害可能是针对枯萎病的。基因表达结果暗示了植物激素中的乙烯和生长素在疾病过程中。激素水平变化的生化分析支持了这一观察结果。

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