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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Isolation and Characterization of Arabidopsis Mutants Defective in the Induction of Ethylene Biosynthesis by Cytokinin
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Isolation and Characterization of Arabidopsis Mutants Defective in the Induction of Ethylene Biosynthesis by Cytokinin

机译:细胞分裂素诱导乙烯生物合成缺陷的拟南芥突变体的分离与鉴定

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摘要

Cytokinins elevate ethylene biosynthesis in etiolated Arabidopsis seedlings via a post-transcriptional modification of one isoform of the key biosynthetic enzyme ACC synthase. In order to begin to dissect the signaling events leading from cytokinin perception to this modification, we have isolated a series of mutants that lack the ethylene-mediated triple response in the presence of cytokinin due to their failure to increase ethylene biosynthesis. Analysis of genetic complementation and mapping revealed that these Cin mutants (cytokinin-insensitive) represent four distinct complementation groups, one of which, cin4 , is allelic to the constitutive photomorphogenic mutant fus9 / cop10. The Cin mutants have subtle effects on the morphology of adult plants. We further characterized the Cin mutants by analyzing ethylene biosynthesis in response to various other inducers and in adult tissues, as well as by assaying additional cytokinin responses. The cin3 mutant did not disrupt ethylene biosynthesis under any other conditions, nor did it disrupt any other cytokinin responses. Only cin2 disrupted ethylene biosynthesis in multiple circumstances. cin1 and cin2 made less anthocyanin in response to cytokinin. cin1 also displayed reduced shoot initiation in tissue culture in response to cytokinin, suggesting that it affects a cytokinin signaling element.
机译:细胞分裂素通过转录后修饰关键生物合成酶ACC合酶的一种同工型来提高黄化拟南芥幼苗中的乙烯生物合成。为了开始剖析从细胞分裂素感知到这种修饰导致的信号传导事件,我们分离了一系列突变体,这些突变体由于细胞分裂素未能增加乙烯的生物合成而在细胞分裂素的存在下缺乏乙烯介导的三重反应。遗传互补和作图的分析表明,这些Cin突变体(对细胞分裂素不敏感)代表四个不同的互补组,其中一个cin4与组成型光形态发生突变体fus9 / cop10等位基因。 Cin突变体对成年植物的形态具有微妙的影响。我们通过分析对各种其他诱导物和成年组织中的乙烯生物合成,以及通过分析其他细胞分裂素应答,进一步表征了Cin突变体。 cin3突变体在任何其他条件下都不会破坏乙烯的生物合成,也不会破坏任何其他细胞分裂素反应。在多种情况下,只有cin2会破坏乙烯的生物合成。 cin1和cin2对细胞分裂素的反应使花青素减少。 cin1还显示出响应细胞分裂素的组织培养芽萌生减少,表明它影响细胞分裂素信号传导元件。

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