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首页> 外文期刊>Journal of Plant Physiology >Correlation of leaf senescence and gene expression/activities of chlorophyll degradation enzymes in harvested Chinese flowering cabbage (Brassica rapa var. parachinensis).
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Correlation of leaf senescence and gene expression/activities of chlorophyll degradation enzymes in harvested Chinese flowering cabbage (Brassica rapa var. parachinensis).

机译:收获的大白菜叶片衰老与叶绿素降解酶基因表达/活性的相关性。

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摘要

Chinese flowering cabbage is one of the main leafy vegetables produced in China. They have a rapid leaf yellowing due to chlorophyll degradation after harvest that limits their marketing. In the present study, leaf senescence of the cabbages was manipulated by ethylene and 6-benzyl aminopurine (6-BA) treatment to investigate the correlation of leaf senescence and chlorophyll degradation related to gene expression/activities in the darkness. The patterns of several senescence associated markers, including a typical marker, the expression of senescence-associated gene SAG12, demonstrated that ethylene accelerated leaf senescence of the cabbages, while 6-BA retarded this progress. Similar to the trends of BrSAG12 gene expression, strong activation in the expression of three chlorophyll degradation related genes, pheophytinase (BrPPH), pheophorbide a oxygenase (BrPAO) and red chlorophyll catabolite reductase (BrRCCR), was detected in ethylene treated and control leaves during the incubation, while no evident increase was recorded in 6-BA treated leaves. The overall dynamics of Mg-dechelatase activities in all treatments displayed increasing trends during the senescence process, and a delayed increase in the activities was observed for 6-BA treated leaves. However, chlorophyllase activity as well as the expression of BrChlase1 and BrChlase2 decreased with the incubation in all treatments. Taken together, the expression of BrPPH, BrPAO and BrRCCR, and the activity of Mg-dechelatase was closely associated with the chlorophyll degradation during the leaf senescence process in harvested Chinese flowering cabbages under dark conditions
机译:大白菜是中国生产的主要多叶蔬菜之一。由于收获后叶绿素的降解,它们的叶片快速变黄,这限制了它们的销售。在本研究中,通过乙烯和6-苄基氨基嘌呤(6-BA)处理来控制白菜的叶片衰老,以研究叶片衰老和叶绿素降解与黑暗中基因表达/活性相关的相关性。几种衰老相关标志物的模式,包括一个典型的标志物,即衰老相关基因SAG12的表达,表明乙烯加速了白菜的叶片衰老,而6-BA阻碍了该进程。与 BrSAG12 基因表达趋势相似,三个叶绿素降解相关基因,脱镁叶绿素酶( BrPPH ),脱镁叶绿酸加氧酶( BrPAO )和红色叶绿素分解代谢物还原酶( BrRCCR ),而在6-BA处理的叶片中未发现明显的增加。在所有处理中,Mg-脱螯合酶活性的整体动力学在衰老过程中显示出增加的趋势,并且对于6-BA处理的叶子观察到活性的延迟增加。然而,在所有处理中,随着培养的进行,叶绿素酶活性以及 BrChlase1 和 BrChlase2 的表达均降低。总之,叶片中 BrPPH , BrPAO 和 BrRCCR 的表达以及Mg-脱螯合酶的活性与叶绿素降解密切相关。黑暗条件下收获的大白菜的衰老过程

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