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首页> 外文期刊>Molecular Plant-Microbe Interactions >Whole Root Transcriptomic Analysis Suggests a Role for Auxin Pathways in Resistance to Ralstonia solanacearum in Tomato
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Whole Root Transcriptomic Analysis Suggests a Role for Auxin Pathways in Resistance to Ralstonia solanacearum in Tomato

机译:整根转录组分析表明,在番茄中对抗红木菌的抗性抗病途径的作用

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摘要

The soilborne pathogen Ralstonia solanacearum is the causal agent of bacterial wilt and causes significant crop loss in the Solanaceae family. The pathogen first infects roots, which are a critical source of resistance in tomato (Solanum lycopersicum L.). Roots of both resistant and susceptible plants are colonized by the pathogen, yet rootstocks can provide significant levels of resistance. Currently, mechanisms of this 'root-mediated resistance' remain largely unknown. To identify the molecular basis of this resistance, we analyzed the genome-wide transcriptional response of roots of resistant 'Hawaii 7996' and susceptible 'West Virginia 700' (WV) tomatoes at multiple timepoints after inoculation with R. solanacearum. We found that defense pathways in roots of the resistant Hawaii 7996 are activated earlier and more strongly than roots of susceptible WV. Further, auxin signaling and transport pathways are suppressed in roots of the resistant variety. Functional analysis of an auxin transport mutant in tomato revealed a role for auxin pathways in bacterial wilt. Together, our results suggest that roots mediate resistance to R. solanacearum through genome-wide transcriptomic changes that result in strong activation of defense genes and alteration of auxin pathways.
机译:土壤中的病原体Ralstonia solanacearum是细菌枯萎的因果因子,并导致Solanaceae家族的显着作物。该病原体首先感染根部,这是番茄(Solanum Lycopersicum L.)中抗性的临界来源。通过病原体沉积抗性和易感植物的根,但砧木可以提供显着的抗性水平。目前,这种“根系介导的抗性”的机制仍然很大程度上是未知的。为了确定这种抗性的分子基础,我们分析了在与R.Solanacearum接种后多次调速剂的抗性'夏威夷7996'(WV)西红柿根系的基因组转录响应。我们发现,抗性夏威夷7996的根中的防御途径早期被激活,比易感WV的根更强烈。此外,在耐抗体的根部中抑制了植物素信号传导和传输途径。番茄中植物素转运突变体的功能分析显示了细菌枯萎病的植物素途径的作用。我们的结果表明,通过基因组的转录组变化,根系将抗菌酸抗抗原菌羊抗性导致防御基因的强烈活化和蟾蜍途径的改变。

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