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Overexpression of the CBF2 transcriptional activator in Arabidopsis delays leaf senescence and extends plant longevity

机译:CBF2转录激活因子在拟南芥中的过表达延迟了叶片的衰老并延长了植物的寿命

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摘要

Leaf senescence is a programmed developmental process governed by various endogenous and exogenous factors, such as the plant developmental stage, leaf age, phytohormone levels, darkness, and exposure to stresses. It was found that, in addition to its well-documented role in the enhancement of plant frost tolerance, overexpression of the C-repeat/dehydration responsive element binding factor 2 (CBF2) gene in Arabidopsis delayed the onset of leaf senescence and extended the life span of the plants by approximately 2 weeks. This phenomenon was exhibited both during developmental leaf senescence and during senescence of detached leaves artificially induced by either darkness or phytohormones. Transcriptome analysis using the Affymetrix ATH1 genome array revealed that overexpression of CBF2 significantly influenced the expression of 286 genes in mature leaf tissue. In addition to 30 stress-related genes, overexpression of CBF2 also affected the expression of 24 transcription factor (TF) genes, and 20 genes involved in protein metabolism, degradation, and post-translational modification. These results indicate that overexpression of CBF2 not only increases frost tolerance, but also affects other developmental processes, most likely through interactions with additional TFs and protein modification genes. The present findings shed new light on the crucial relationship between plant stress tolerance and longevity, as reported for other eukaryotic organisms.
机译:叶片衰老是受各种内源性和外源性因素控制的程序性发育过程,例如植物发育阶段,叶龄,植物激素水平,黑暗和暴露于胁迫下。研究发现,除了其在提高植物抗霜冻能力方面的充分文献记载的作用外,拟南芥中C-重复/脱水反应元件结合因子2(CBF2)基因的过表达还延迟了叶片衰老的发生并延长了其寿命。大约2周的时间跨度。在发育叶片衰老过程中以及由黑暗或植物激素人工诱导的离体叶片衰老过程中均表现出这种现象。使用Affymetrix ATH1基因组阵列进行的转录组分析显示,CBF2的过表达显着影响成熟叶片组织中286个基因的表达。除了30个与压力相关的基因外,CBF2的过表达还影响24个转录因子(TF)基因的表达,以及20个涉及蛋白质代谢,降解和翻译后修饰的基因。这些结果表明,CBF2的过表达不仅增加了抗霜冻性,而且还影响了其他发育过程,最有可能通过与其他TF和蛋白质修饰基因的相互作用来实现。如其他真核生物报道的那样,目前的发现为植物耐逆性和寿命之间的关键关系提供了新的认识。

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