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首页> 外文期刊>Plant Physiology and Biochemistry >Ethylene biosynthesis controlled by NON-RIPENING: A regulatory conflict between wounding and ripening
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Ethylene biosynthesis controlled by NON-RIPENING: A regulatory conflict between wounding and ripening

机译:通过非成熟控制的乙烯生物合成:伤口与成熟之间的监管冲突

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摘要

The phytohormone ethylene is involved in multiple aspects of morphological and physiological processes in plants. Tomato rapidly and transiently increases ethylene production during fruit ripening and in plant defense responses. The transcription factor non-ripening (NOR) has significant effects on fruit ripening via regulation of ethylene biosynthesis-related genes. The nor loss-of-function allele produces a basal level of ethylene during ripening, in contrast to the induced ethylene evolution observed upon Agrobacterium tumefaciens infection. The use of ACC deaminase represses ethylene production and significantly improves the efficiency of Agrobacterium-mediated T-DNA transfer in nor plants. Analyses of the transcription levels of the ethylene biosynthesis genes ACC synthase (ACS) and ACC oxidase (ACO) in nor plants revealed that the induced ethylene production was largely due to transcriptional accumulation of ACS2 and ACO1. Accumulation of ACS2 and ACO1 mRNA opposes NOR-mediated regulation in tomato fruit during ripening, and the feedback regulation of NOR is rendered in-effective by defense responses, thereby precluding the control of its own expression. The ethylene synthesis mechanisms respond properly to NOR-mediated transcriptional regulation that is differed through the wound-induced and ripening-induced signaling pathway.
机译:植物激素乙烯参与植物中形态学和生理过程的多个方面。在果实成熟和植物防御反应中,番茄迅速和瞬时提高乙烯生产。转录因子非成熟(也不)对通过调节乙烯生物合成相关基因的果实成熟具有显着影响。与致原过程中,函数损失的等位基因也会产生基础水平的乙烯,相反,与在土壤杆菌感染后观察到的诱导的乙烯演化相反。 Acc Deaminase的使用抑制乙烯生产并显着提高了农杆菌介导的T-DNA转移的效率,NOR植物。乙烯生物合成基因ACC合酶(ACS)和ACC氧化酶(ACO)的转录水平的分析表明,诱导的乙烯产量主要是由于ACS2和ACO1的转录积累。 ACS2和ACO1 mRNA的积累反对成熟过程中番茄果实中的NOR介导的调节,并通过防御反应产生的反馈调节,从而妨碍控制自己的表达。乙烯合成机制适当地响应于未介导的转录调节,其通过伤口诱导和熟化的信号通路不同。

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