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首页> 外文期刊>Journal of Plant Physiology >Mg-dechelation of chlorophyll a by Stay-Green activates chlorophyll b degradation through expressing Non-Yellow Coloring 1 in Arabidopsis thaliana
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Mg-dechelation of chlorophyll a by Stay-Green activates chlorophyll b degradation through expressing Non-Yellow Coloring 1 in Arabidopsis thaliana

机译:通过在Arabidopsis拟南芥中表达非黄色1,叶绿素A通过叶绿素A的叶绿素A脱色激活叶绿素B降解

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The first step in chlorophyll a degradation is the extraction of the central Mg. This reaction is catalyzed by Mg-dechelatase encoded by Stay-Green (SGR) in land plants. SGR extracts Mg from chlorophyll a but not from chlorophyll b, and chlorophyll b must be converted to chlorophyll a before degradation. The first reaction of the chlorophyll b to chlorophyll a conversion is catalyzed by chlorophyll b reductase. Non-Yellow Coloring 1 (NYC1) and NYC1 like (NOL) are isozymes of chlorophyll b reductase. When SGR was transiently overexpressed in Arabidopsis, both chlorophyll a and b were degraded, suggesting that the chlorophyll b to chlorophyll a conversion is activated by SGR overexpression. To examine the involvement of chlorophyll b reductases in SGR-induced chlorophyll b degradation, SGR was transiently overexpressed in nyc1, nol, and nyc1 nol double mutants by dexamethasone treatment. It was found that in the wild type and nol mutant, chlorophyll a and b were degraded and all the chlorophyll-binding proteins decreased. Meanwhile, in nyc1 and nyc1 nol mutants, chlorophyll b degradation was suppressed and the light-harvesting complex of photosystem II remained. The mRNA and protein levels of NYC1 increased after SGR overexpression in wild type plants. These results suggest that Mg-dechelation of chlorophyll a by SGR activates chlorophyll b degradation by inducing the expression of NYC1. This is an effective regulation of a metabolic pathway.
机译:叶绿素的第一步是降解的是中央mg的提取。该反应被通过陆地植物中的磨牙(SGR)编码的Mg-DecHelatase催化。 SGR从叶绿素A中提取Mg,但不是来自叶绿素B,并且叶绿素B必须在降解之前转化为叶绿素A.将叶绿素B至叶绿素的第一反应通过叶绿素B还原酶催化。非黄色着色1(NYC1)和NYC1(NOL)是叶绿素B还原酶的同工酶。当SGR在拟南芥中瞬时过表达时,叶绿素A和B都会降解,表明叶绿素B至叶绿素的转化率通过SGR过表达激活。为了检查叶绿素B还原酶在SGR诱导的叶绿素B降解中,SGR在NYC1,NOL和NYC1 NOL双突变体中瞬时过表达,通过地塞米松治疗。发现,在野生型和NOL突变体中,叶绿素A和B降解,所有叶绿素结合蛋白都降低。同时,在NYC1和NYC1 NOL突变体中,抑制了叶绿素B降解,并且剩余的光系统II的光收获络合物。野生型植物中SGR过表达后NYC1的mRNA和蛋白质水平增加。这些结果表明,通过SGR诱导NYC1的表达,SGR通过SGR激活叶绿素A的Mg-Dechelation激活叶绿素B降解。这是对代谢途径的有效调节。

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