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拟南芥突变体揭示了参与应激反应和发育的多种单线态氧信号通路。

Arabidopsis mutants reveal multiple singlet oxygen signaling pathways involved in stress response and development.

作者信息

Baruah Aiswarya, Simková Klára, Apel Klaus, Laloi Christophe

机构信息

Institute of Plant Sciences, ETH Zurich, Universitätstrasse 2, Zurich, Switzerland.

出版信息

Plant Mol Biol. 2009 Jul;70(5):547-63. doi: 10.1007/s11103-009-9491-0. Epub 2009 May 17.

Abstract

Shortly after the release of singlet oxygen ((1)O(2)) in chloroplasts drastic changes in nuclear gene expression occur in the conditional flu mutant of Arabidopsis that reveal a rapid transfer of signals from the plastid to the nucleus. Factors involved in this retrograde signaling were identified by mutagenizing a transgenic flu line expressing a (1)O(2)-responsive reporter gene. The reporter gene consisted of the luciferase open reading frame and the promoter of an AAA-ATPase gene (At3g28580) that was selectively activated by (1)O(2) but not by superoxide or hydrogen peroxide. A total of eight second-site mutants were identified that either constitutively activate the reporter gene and the endogenous AAA-ATPase irrespectively of whether (1)O(2) was generated or not (constitutive activators of AAA-ATPase, caa) or abrogated the (1)O(2)-dependent up-regulation of these genes as seen in the transgenic parental flu line (non-activators of AAA-ATPase, naa). The characterization of the mutants strongly suggests that (1)O(2)-signaling does not operate as an isolated linear pathway but rather forms an integral part of a signaling network that is modified by other signaling routes and impacts not only stress responses of plants but also their development.

摘要

在拟南芥的条件性flu突变体的叶绿体中释放单线态氧((1)O(2))后不久,核基因表达就会发生剧烈变化,这揭示了信号从质体快速传递到细胞核。通过诱变表达(1)O(2)响应报告基因的转基因flu株系,鉴定出了参与这种逆行信号传导的因子。报告基因由荧光素酶开放阅读框和一个AAA - ATP酶基因(At3g28580)的启动子组成,该启动子被(1)O(2)选择性激活,但不被超氧化物或过氧化氢激活。总共鉴定出八个第二位点突变体,它们要么组成型激活报告基因和内源性AAA - ATP酶,无论是否产生(1)O(2)(AAA - ATP酶的组成型激活剂,caa),要么消除了转基因亲本flu株系中这些基因的(1)O(2)依赖性上调(AAA - ATP酶的非激活剂,naa)。对这些突变体的表征强烈表明,(1)O(2)信号传导并非作为一个孤立的线性途径起作用,而是形成了一个信号网络的组成部分,该网络会被其他信号途径修饰,不仅影响植物的应激反应,还影响其发育。

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