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Genetic Variation Suggests Interaction between Cold Acclimation and Metabolic Regulation of Leaf Senescence

机译:遗传变异表明冷驯化与叶片衰老的代谢调控之间的相互作用

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摘要

The extent to which leaf senescence is induced by nitrogen deficiency or by sugar accumulation varies between natural accessions of Arabidopsis (Arabidopsis thaliana). Analysis of senescence in plants of the Bay-0 ? Shahdara recombinant inbred line (RIL) population revealed a large variation in developmental senescence of the whole leaf rosette, which was in agreement with the extent to which glucose (Glc) induced senescence in the different lines. To determine the regulatory basis of genetic differences in the Glc response, we investigated changes in gene expression using Complete Arabidopsis Transcriptome MicroArray (CATMA) analysis. Genes whose regulation did not depend on the genetic background, as well as genes whose regulation was specific to individual RILs, were identified. In RIL 310, a line that does not show the typical senescence response to Glc, stress response genes, especially those responding to cold stress, were induced by Glc. We therefore tested whether cold acclimation delays senescence by reducing sugar sensitivity. In cold-acclimated plants, leaf senescence was severely delayed and Glc did not induce the typical senescence response. Together, our results suggest that cold acclimation extends rosette longevity by affecting metabolic regulation of senescence, thereby allowing vernalization-dependent plants to survive the winter period. The role of functional chloroplasts and of nitrogen and phosphate availability in this regulation is discussed.
机译:氮缺乏或糖积累引起的叶片衰老程度在拟南芥(Arabidopsis thaliana)的自然种质之间有所不同。 Bay-0植物的衰老分析。 Shahdara重组近交系(RIL)群体显示出整个叶片花环的发育衰老有很大差异,这与葡萄糖(Glc)在不同系中诱导衰老的程度一致。为了确定Glc反应中遗传差异的调控基础,我们使用完全拟南芥转录组微阵列(CATMA)分析了基因表达的变化。确定了其调控不依赖于遗传背景的基因,以及其调控仅针对单个RIL的基因。在RIL 310中,没有显示出对Glc的典型衰老反应的品系,Glc诱导了胁迫反应基因,特别是那些对冷胁迫作出反应的基因。因此,我们测试了冷驯化是否通过降低糖敏感性来延迟衰老。在冷适应的植物中,叶片的衰老被严重延迟,Glc不能诱导典型的衰老反应。在一起,我们的结果表明冷驯化通过影响衰老的代谢调节来延长花环寿命,从而使依赖春化的植物能够在冬季生存。讨论了功能性叶绿体的作用以及氮和磷酸盐的有效性。

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