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首页> 外文期刊>Plant signaling & behavior >Identification of defense-related genes newly-associated with tomato flower abscission.
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Identification of defense-related genes newly-associated with tomato flower abscission.

机译:鉴定与番茄花脱落相关的新的防御相关基因。

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摘要

The current abscission model suggests the formation of a post-abscission trans-differentiation of a protective layer as the last step of the process. The present report expands the repertoire of genes activated in the tomato flower abscission zone (AZ), which are likely to be involved in defense responses. We identified four different defense-related genes, including: Cysteine-type endopeptidase, alpha -Dioxygenase 1 ( alpha -DOX1), HopW-1-1-Interacting protein2 (WIN2), and Stomatal-derived factor-2 (SDF2), that are newly-associated with the late stage of the abscission process. The late expression of these genes, induced at 8-14 h after flower removal when pedicel abscission was already in progress, was AZ-specific, and was inhibited by treatments that prevented pedicel abscission, including 1-methylcyclopropene pretreatment or IAA application. This information supports the activation of different defense responses and strategies at the late abscission stages, which may enable efficient protection of the exposed tissue toward different environmental stresses.
机译:当前的脱落模型表明,该过程的最后一步是形成脱落后保护层的反分化。本报告扩大了番茄花脱落区(AZ)中激活的基因的种类,这些基因可能参与防御反应。我们鉴定了四种不同的防御相关基因,包括:半胱氨酸型内肽酶,α-双加氧酶1(α-DOX1),HopW-1-1-相互作用蛋白2(WIN2)和气孔衍生因子2(SDF2) ),这与离弃过程的后期有关。这些基因的后期表达是在花梗脱落时已经进行的摘花后8-14小时诱导的,是AZ特异的,并受到阻止花梗脱落的治疗(包括1-甲基环丙烯预处理或IAA施用)的抑制。该信息支持在脱落后期的不同防御反应和策略的激活,这可以使暴露的组织针对不同的环境压力得到有效的保护。

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