...
首页> 外文期刊>Journal of Plant Physiology >Regulation of photosynthesis and transcription factor expression by leaf shading and re-illumination in Arabidopsis thaliana leaves. (Special Issue: Regulation of plant primary metabolism.)
【24h】

Regulation of photosynthesis and transcription factor expression by leaf shading and re-illumination in Arabidopsis thaliana leaves. (Special Issue: Regulation of plant primary metabolism.)

机译:遮荫和再照明对拟南芥叶片光合作用和转录因子表达的调节。 (特刊:植物初级代谢的调控。)

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Leaf senescence of annual plants is a genetically programmed developmental phase. The onset of leaf senescence is however not exclusively determined by tissue age but is modulated by various environmental factors. Shading of individual attached leaves evokes dark-induced senescence. The initiation and progression of dark-induced senescence depend on the plant and the age of the affected leaf, however. In several plant species dark-induced senescence is fully reversible upon re-illumination and the leaves can regreen, but the regreening ability depends on the duration of dark incubation. We studied the ability of Arabidopsis thaliana leaves to regreen after dark-incubation with the aim to identify transcription factors (TFs) that are involved in the regulation of early dark-induced senescence and regreening. Two days shading of individual attached leaves triggers the transition into a pre-senescence state from which the leaves can largely recover. Longer periods of darkness result in irreversible senescence. Large scale qRT-PCR analysis of 1872 TF genes revealed that 649 of them are regulated in leaves during normal development, upon shading or re-illumination. Leaf shading triggered upregulation of 150 TF genes, some of which are involved in controlling senescence. Of those, 39 TF genes were upregulated after two days in the dark and regained pre-shading expression level after two days of re-illumination. Furthermore, a larger number of 422 TF genes were down regulated upon shading. In TF gene clusters with different expression patterns certain TF families are over-represented.
机译:一年生植物的叶片衰老是基因编程的发育阶段。然而,叶片衰老的开始并不仅仅由组织年龄决定,而是由各种环境因素调节。单个附着叶片的阴影会引起黑暗诱导的衰老。但是,黑暗诱导衰老的开始和进展取决于植物和受影响叶片的年龄。在几种植物中,黑暗诱导的衰老在重新照明后是完全可逆的,叶子可以重新变绿,但是重新变绿的能力取决于黑暗孵育的持续时间。我们研究了黑暗孵化后拟南芥叶片重新变绿的能力,旨在鉴定参与调节早期黑暗诱导的衰老和重新变绿的转录因子(TF)。两天附着的叶片遮阴会触发向衰老前状态的转变,叶片可以从中恢复。较长的黑暗时间导致不可逆的衰老。对1872个TF基因的大规模qRT-PCR分析表明,在正常发育过程中,遮光或重新照明后,其中649个基因在叶片中受到调控。叶片遮荫触发了150个TF基因的上调,其中一些与控制衰老有关。其中,39个TF基因在黑暗中两天后被上调,并且在重新照明两天后恢复了遮光前的表达水平。此外,大量422个TF基因在遮光后被下调。在具有不同表达模式的TF基因簇中,某些TF家族被过度代表。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号