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首页> 外文期刊>Rice Science >Sugar Starvation Enhances Leaf Senescence and Genes Involved in Sugar Signaling Pathways Regulate Early Leaf Senescence in Mutant Rice
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Sugar Starvation Enhances Leaf Senescence and Genes Involved in Sugar Signaling Pathways Regulate Early Leaf Senescence in Mutant Rice

机译:糖饥饿增强叶片衰老和参与糖信号通路的基因调节突变米的早期叶片衰老

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To clarify the complex regulatory relationship between changes in sugar content and leaf senescence during the grain-filling stage of rice, genotype-dependent differences in sugar content and the temporal transcriptional patterns of genes involved in sugar signaling pathways were determined in mutant rice exhibiting early leaf senescence and its wild type Zhefu 142. The effects of exogenous glucose or sucrose on the senescence of detached leaves under dark conditions were also investigated. Chlorophyll, soluble sugar, sucrose and fructose contents decreased, whereas electrolytic leakage and malondialdehyde levels increased in mutant leaves at the grain-filling stage. These results suggested that sugar starvation is positively correlated with the early leaf senescence of mutant plants. Detached leaf segments incubated in exogenous sugar solutions under dark conditions exhibited delayed senescence. The high expression of Hxk1 in leaves of mutant plants at the initial grain-filling stage suggested that Hxk1 is involved in the hexose-sensing process at the early stage of leaf senescence. The low expression levels of Hxk2 and Frk1 in the senescing leaves of mutant rice during the grain-filling stage are indicative of weakened hexose phosphorylation. In addition, the high expression levels of SuSy1, SuSy2 and SuSy4 in leaves of mutant plants at the initial grain-filling stage are accompanied by the high transcript levels of SUT1, which favor sucrose translocation and remobilization from the early senescing leaves of mutant rice. The relatively reduced transcript levels of chFBP, cyFBP, SPS1, SPS2 and SPS6 indicated that during the grain-filling stage, sucrose biosynthesis is weakened in the senescing leaves of mutant rice.
机译:为了阐明在水稻填充阶段的糖含量和叶片衰老之间的复杂调节关系,在表现出早期叶片的突变场水稻中确定糖含量​​的基因型依赖性差异和糖信号通路中所涉及的时间的时间转录模式还研究了衰老及其野生型。还研究了外源性葡萄糖或蔗糖对暗条件下脱离叶片衰老的影响。叶绿素,可溶性糖,蔗糖和果糖含量下降,而电解泄漏和丙醛水平在颗粒灌装阶段的突变叶中增加。这些结果表明,糖饥饿与突变植物的早期叶片呈正相关。在黑暗条件下在外源糖溶液中孵育的分离的叶片表现出延迟衰老。初始晶粒灌装阶段突变植物叶片HXK1的高表达表明HXK1参与叶片衰老早期的己糖感测过程。在籽粒填充阶段在突变稻中突变叶中叶片叶片的低表达水平和FRK1表示厌氧磷酸化弱化。此外,初始晶粒填充阶段突变植物叶片中Susy1,Susy2和Susy4的高表达水平伴随着Sut1的高转录物水平,其中有利于蔗糖易位和从突变米的早期叶片中重新化。 CHFBP,CYFBP,SPS1,SPS2和SPS6的相对减少的转录水平表明,在晶粒填充阶段,蔗糖生物合成在突变稻的叶片中削弱。

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