Gepstein Shimon, Sabehi Gazalah, Carp Marie-Jeanne, Hajouj Taleb, Nesher Mizied Falah Orna, Yariv Inbal, Dor Chen, Bassani Michal
Faculty of Biology, Technion, Israel Institute of Technology, Haifa 32000, Israel.
Plant J. 2003 Dec;36(5):629-42. doi: 10.1046/j.1365-313x.2003.01908.x.
Leaf senescence is a form of programmed cell death, and is believed to involve preferential expression of a specific set of "senescence-associated genes" (SAGs). To decipher the molecular mechanisms and the predicted complex network of regulatory pathways involved in the senescence program, we have carried out a large-scale gene identification study in a reference plant, Arabidopsis thaliana. Using suppression subtractive hybridization, we isolated approximately 800 cDNA clones representing SAGs expressed in senescing leaves. Differential expression was confirmed by Northern blot analysis for 130 non-redundant genes. Over 70 of the identified genes have not previously been shown to participate in the senescence process. SAG-encoded proteins are likely to participate in macromolecule degradation, detoxification of oxidative metabolites, induction of defense mechanisms, and signaling and regulatory events. Temporal expression profiles of selected genes displayed several distinct patterns, from expression at a very early stage, to the terminal phase of the senescence syndrome. Expression of some of the novel SAGs, in response to age, leaf detachment, darkness, and ethylene and cytokinin treatment was compared. The large repertoire of SAGs identified here provides global insights about regulatory, biochemical and cellular events occurring during leaf senescence.
叶片衰老属于程序性细胞死亡的一种形式,人们认为它涉及一组特定的“衰老相关基因”(SAGs)的优先表达。为了解析衰老程序中涉及的分子机制以及预测的复杂调控途径网络,我们在模式植物拟南芥中开展了一项大规模的基因鉴定研究。利用抑制性消减杂交技术,我们分离出了约800个代表在衰老叶片中表达的SAGs的cDNA克隆。通过Northern印迹分析证实了130个非冗余基因的差异表达。超过70个已鉴定的基因此前未被证明参与衰老过程。SAGs编码的蛋白质可能参与大分子降解、氧化代谢产物的解毒、防御机制的诱导以及信号传导和调控事件。所选基因的时间表达谱呈现出几种不同的模式,从非常早期的表达,到衰老综合征的末期阶段。比较了一些新的SAGs响应年龄、叶片脱离、黑暗以及乙烯和细胞分裂素处理后的表达情况。这里鉴定出的大量SAGs为叶片衰老过程中发生的调控、生化和细胞事件提供了全面的见解。