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Expression of 35S::Pto Globally Activates Defense-Related Genes in Tomato Plants

机译:35S :: Pto的表达全球激活番茄植物中与防御相关的基因。

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摘要

The tomato (Lycopersicon esculentum) resistance gene Pto confers resistance to the bacterial pathogen Pseudomonas syringae pv tomato carrying the avirulent gene avrPto. Overexpressing Pto under the control of the cauliflower mosaic virus 35S promoter constitutively activates defense responses in the absence of pathogen infection and nonspecifically enhances disease resistance. To elucidate the mechanisms underlying this resistance, we isolated cDNAs corresponding to transcripts that accumulated in 35S::Pto plants. By using suppression subtractive hybridization, we isolated 82 unique cDNA clones, most of which corresponded to differentially expressed transcripts. Most of the genes examined were also induced by pathogen inoculation. Sequence analysis showed that a large number of genes encode defense-related proteins, and most had not been previously isolated from tomato. The isolated cDNAs also include those with a putative role in the oxidative burst, proteolysis, the hypersensitive response, signal transduction, and a number of genes with unknown functions. The isolation of these cDNAs of diverse functions will assist in the characterization of defense pathways activated during disease resistance.
机译:番茄(Lycopersicon esculentum)抗性基因Pto赋予对携带无毒基因avrPto的细菌病原体丁香假单胞菌PV番茄的抗性。花椰菜花叶病毒35S启动子控制下的过表达Pto可以在没有病原体感染的情况下组成性激活防御反应,并且非特异性地增强了抗病性。为了阐明这种抗性的潜在机制,我们分离了对应于35S :: Pto植物中积累的转录本的cDNA。通过使用抑制消减杂交,我们分离出82个独特的cDNA克隆,其中大多数对应于差异表达的转录本。所检查的大多数基因也是由病原体接种诱导的。序列分析表明,许多基因编码防御相关蛋白,并且大多数以前从未从番茄中分离出来。分离的cDNA还包括在氧化爆发,蛋白水解,过敏反应,信号转导和许多功能未知的基因中具有假定作用的cDNA。这些功能多样的cDNA的分离将有助于表征抗病性过程中激活的防御途径。

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