首页> 美国卫生研究院文献>Plant Physiology >Differential Expression and Internal Feedback Regulation of 1-Aminocyclopropane-1-Carboxylate Synthase, 1-Aminocyclopropane-1-Carboxylate Oxidase, and Ethylene Receptor Genes in Tomato Fruit during Development and Ripening
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Differential Expression and Internal Feedback Regulation of 1-Aminocyclopropane-1-Carboxylate Synthase, 1-Aminocyclopropane-1-Carboxylate Oxidase, and Ethylene Receptor Genes in Tomato Fruit during Development and Ripening

机译:差分表达和内部反馈调节 的 1-氨基环丙烷-1-羧酸合酶, 1-氨基环丙烷-1-羧酸氧化酶和 乙烯受体 番茄果实发育成熟期的基因

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摘要

We investigated the feedback regulation of ethylene biosynthesis in tomato (Lycopersicon esculentum) fruit with respect to the transition from system 1 to system 2 ethylene production. The abundance of LE-ACS2, LE-ACS4, and NR mRNAs increased in the ripening fruit concomitant with a burst in ethylene production. These increases in mRNAs with ripening were prevented to a large extent by treatment with 1-methylcyclopropene (MCP), an ethylene action inhibitor. Transcripts for the LE-ACS6 gene, which accumulated in preclimacteric fruit but not in untreated ripening fruit, did accumulate in ripening fruit treated with MCP. Treatment of young fruit with propylene prevented the accumulation of transcripts for this gene. LE-ACS1A, LE-ACS3, and TAE1 genes were expressed constitutively in the fruit throughout development and ripening irrespective of whether the fruit was treated with MCP or propylene. The transcripts for LE-ACO1 and LE-ACO4 genes already existed in preclimacteric fruit and increased greatly when ripening commenced. These increases in LE-ACO mRNA with ripening were also prevented by treatment with MCP. The results suggest that in tomato fruit the preclimacteric system 1 ethylene is possibly mediated via constitutively expressed LE-ACS1A and LE-ACS3 and negatively feedback-regulated LE-ACS6 genes with preexisting LE-ACO1 and LE-ACO4 mRNAs. At the onset of the climacteric stage, it shifts to system 2 ethylene, with a large accumulation of LE-ACS2, LE-ACS4, LE-ACO1, and LE-ACO4 mRNAs as a result of a positive feedback regulation. This transition from system 1 to system 2 ethylene production might be related to the accumulated level of NR mRNA.
机译:我们调查了番茄(Lycopersicon esculentum)果实中乙烯生物合成的反馈调节,涉及从系统1到系统2乙烯生产的过渡。成熟果实中LE-ACS2,LE-ACS4和NR mRNA的丰度增加,同时乙烯产量猛增。通过用乙烯作用抑制剂1-甲基环丙烯(MCP)处理,可以在很大程度上防止成熟时mRNA的这些增加。 LE-ACS6基因的转录本积累在更年期前的果实中,但未积累在未经处理的成熟果实中,但确实在用MCP处理的成熟果实中积累。用丙烯处理幼果可防止该基因转录本的积累。 LE-ACS1A,LE-ACS3和TAE1基因在果实的整个发育和成熟过程中均组成性表达,而不论该果实是否用MCP或丙烯处理。的成绩单 LE-ACO1和LE-ACO4基因已经存在 在更年期前的果实中增加,成熟时开始增加。 LE-ACO mRNA随着成熟的增加也 通过MCP治疗可以预防。结果表明,在番茄中 水果更年期前系统1乙烯可能通过 组成型表达的LE-ACS1A和 LE-ACS3和负反馈调节 带有LE-ACO1的LE-ACS6基因 和LE-ACO4 mRNA。更年期开始 阶段,它转移到系统2的乙烯中, LE-ACS2 LE-ACS4 LE-ACO1 , 和 LE-ACO4 mRNA的阳性反馈 规。从系统1到系统2的乙烯过渡 生产可能与生产的累积水平有关 NR mRNA。

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