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拟南芥中的交替氧化酶:对该基因家族差异表达的比较分析为非磷酸化支路的功能提供了新见解。

Alternative oxidases in Arabidopsis: a comparative analysis of differential expression in the gene family provides new insights into function of non-phosphorylating bypasses.

作者信息

Clifton Rachel, Millar A Harvey, Whelan James

机构信息

ARC Centre of Excellence in Plant Energy Biology, Molecular and Chemical Sciences Building, M310, University of Western Australia, Crawley, Australia.

出版信息

Biochim Biophys Acta. 2006 Jul;1757(7):730-41. doi: 10.1016/j.bbabio.2006.03.009. Epub 2006 May 19.

DOI:10.1016/j.bbabio.2006.03.009
PMID:16859634
Abstract

The emergence of Arabidopsis as a model plant provides an opportunity to gain insights into the role of the alternative oxidase that cannot be as readily achieved in other plant species. The analysis of extensive mRNA expression data indicates that all five Aox genes (Aox1a, 1b, 1c, 1d and 2) are expressed, but organ and developmental regulation are evident, suggesting regulatory specialisation of Aox gene members. The stress-induced nature of the alternative pathway in a variety of plants is further supported in Arabidopsis as Aox1a and Aox1d are amongst the most stress responsive genes amongst the hundreds of known genes encoding mitochondrial proteins. Analysis of genes co-expressed with Aoxs from studies of responses to various treatments altering mitochondrial functions and/or from plants with altered Aox levels reveals that: (i) this gene set encodes more functions outside the mitochondrion than functions in mitochondria, (ii) several pathways for induction exist and there is a difference in the magnitude of the induction in each pathway, (iii) the magnitude of induction may depend on the endogenous levels of Aox, and (iv) induction of Aox can be oxidative stress-dependent or -independent depending on the gene member and the tissue analysed. An overall role for Aox in re-programming cellular metabolism in response to the ever changing environment encountered by plants is proposed.

摘要

拟南芥作为模式植物的出现,为深入了解交替氧化酶的作用提供了契机,而这在其他植物物种中难以轻易实现。对大量mRNA表达数据的分析表明,所有五个Aox基因(Aox1a、1b、1c、1d和2)均有表达,但存在器官和发育调控现象,这表明Aox基因成员具有调控特异性。在拟南芥中,多种植物中交替途径的应激诱导特性得到进一步支持,因为在数百个已知的线粒体蛋白编码基因中,Aox1a和Aox1d是应激反应最强的基因之一。对与Aox共同表达的基因进行分析,这些基因来自对改变线粒体功能的各种处理的反应研究,以及来自Aox水平改变的植物,结果表明:(i)该基因集编码的线粒体以外的功能多于线粒体中的功能;(ii)存在多种诱导途径,且每条途径的诱导程度存在差异;(iii)诱导程度可能取决于Aox的内源水平;(iv)根据基因成员和所分析的组织,Aox的诱导可能依赖于氧化应激,也可能与之无关。本文提出了Aox在响应植物所面临的不断变化的环境而重新编程细胞代谢中的总体作用。

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