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首页> 外文期刊>Journal of Plant Growth Regulation >Exogenous Jasmonic Acid and Cytokinin Antagonistically Regulate Rice Flag Leaf Senescence by Mediating Chlorophyll Degradation, Membrane Deterioration, and Senescence-Associated Genes Expression
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Exogenous Jasmonic Acid and Cytokinin Antagonistically Regulate Rice Flag Leaf Senescence by Mediating Chlorophyll Degradation, Membrane Deterioration, and Senescence-Associated Genes Expression

机译:外源茉莉酸和细胞分裂素通过介导叶绿素降解,膜退化和衰老相关基因表达来拮抗水稻旗叶的衰老。

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摘要

Although it is well known that jasmonic acid (JA) and cytokinin (CK) are involved in regulating leaf senescence, the antagonistic mechanisms of JA and CK on leaf senescence are still unknown. To explore the antagonistic effects of JA and CK on leaf senescence, we treated detached rice flag leaves with JA and CK under dark conditions, and evaluated their chlorophyll contents, membrane deterioration, and expression levels of chlorophyll-degradation-related genes (CDRGs) and senescence-associated genes (SAGs). Our results demonstrated that exogenous application of JA promoted chlorophyll degradation by enhancing the expression levels of CDRGs, promoted membrane deterioration by accelerating the increases in lipid peroxidation and membrane permeability, enhanced the expression levels of SAGs, and consequently accelerated rice flag leaf senescence. On the other hand, exogenous application of CK retarded chlorophyll degradation by down-regulating the expression levels of CDRGs, retarded membrane deterioration by retarding the increases in lipid peroxidation and membrane permeability, down-regulated the expression levels of SAGs, and consequently delayed rice flag leaf senescence. Furthermore, the senescence-accelerating effect of a certain concentration of JA was nullified by the senescence-retarding effect of a certain concentration of CK. These results suggested that exogenous applications of JA and CK were able to antagonistically regulate flag leaf senescence by mediating chlorophyll degradation, membrane deterioration, and SAGs expression. In addition, our results suggested that the progression of flag leaf senescence might not only depend on the level of JA or CK but also depend on the balance between JA and CK.
机译:尽管众所周知茉莉酸(JA)和细胞分裂素(CK)参与调节叶片衰老,但是JA和CK对叶片衰老的拮抗机制仍然未知。为了研究JA和CK对叶片衰老的拮抗作用,我们在黑暗条件下用JA和CK处理离体的水稻剑叶,并评估其叶绿素含量,膜变质以及叶绿素降解相关基因(CDRGs)和衰老相关基因(SAG)。我们的结果表明,JA的外源施用可通过提高CDRGs的表达水平来促进叶绿素降解,通过加速脂质过氧化作用和膜通透性的增加来促进膜变质,增强SAGs的表达水平,从而加速水稻剑叶的衰老。另一方面,CK的外源施用通过下调CDRGs的表达水平来延迟叶绿素的降解,通过阻止脂质过氧化作用和膜通透性的增加来延迟膜的降解,下调SAGs的表达水平,从而延迟水稻标记叶片衰老。此外,一定浓度的JA的衰老促进作用被一定浓度的CK的延缓衰老作用抵消。这些结果表明,JA和CK的外源应用能够通过介导叶绿素降解,膜变质和SAGs表达来拮抗调节旗叶衰老。此外,我们的研究结果表明,剑叶衰老的进程可能不仅取决于JA或CK的水平,还取决于JA和CK之间的平衡。

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