Barry C S, Blume B, Bouzayen M, Cooper W, Hamilton A J, Grierson D
Department of Physiology and Environmental Science, University of Nottingham, Loughborough, UK.
Plant J. 1996 Apr;9(4):525-35. doi: 10.1046/j.1365-313x.1996.09040525.x.
The tomato ACC oxidase gene family is comprised of three members designated AC01, AC02 and AC03. These are highly homologous throughout the protein coding regions but do show a degree of sequence divergence within the 3' untranslated regions. These regions have been cloned and used as gene-specific probes to analyse the differential expression of the tomato ACC oxidase gene family in various tissues at different stages of development. Results indicate that all three genes are transcriptionally active and display a high degree of inducibility in a number of organs at various stages of the life cycle. Both AC01 and Ac03 transcripts accumulate during the senescence of leaves, fruit and flowers. In addition, it appears that AC01 is wound-inducible in leaves. All three ACC oxidase genes are expressed during flower development, with each showing a temporally distinct pattern of accumulation. In addition, the ACC oxidase transcripts are also spatially regulated throughout flower development; AC01 is predominantly expressed in the petals and the stigma and style, AC02 expression is mainly restricted to tissues associated with the anther cone whereas AC03 transcripts accumulate in all of the floral organs examined apart from the sepals. ACC oxidase enzyme assays and Western blot analysis indicate that both enzyme activity and ACC oxidase protein increase with transcript abundance in several tissues. The physiological role of the differential expression of the ACC oxidase gene family, in relation to the regulation of ethylene synthesis, during these various developmental processes is discussed.
番茄ACC氧化酶基因家族由三个成员组成,分别命名为AC01、AC02和AC03。这些成员在蛋白质编码区域高度同源,但在3'非翻译区域确实存在一定程度的序列差异。这些区域已被克隆,并用作基因特异性探针,以分析番茄ACC氧化酶基因家族在不同发育阶段的各种组织中的差异表达。结果表明,所有三个基因都具有转录活性,并且在生命周期的各个阶段在许多器官中表现出高度的诱导性。AC01和Ac03转录本在叶片、果实和花朵衰老过程中积累。此外,AC01似乎在叶片中可被创伤诱导。所有三个ACC氧化酶基因在花发育过程中都有表达,每个基因都呈现出时间上不同的积累模式。此外,ACC氧化酶转录本在整个花发育过程中也受到空间调控;AC01主要在花瓣、柱头和花柱中表达,AC02的表达主要局限于与花药圆锥体相关的组织,而AC03转录本在除萼片外的所有检测花器官中积累。ACC氧化酶活性测定和蛋白质免疫印迹分析表明,在几个组织中,酶活性和ACC氧化酶蛋白都随转录本丰度的增加而增加。本文讨论了ACC氧化酶基因家族差异表达在这些不同发育过程中与乙烯合成调控相关的生理作用。