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Chlorophyll Breakdown in Senescent Arabidopsis Leaves. Characterization of Chlorophyll Catabolites and of Chlorophyll Catabolic Enzymes Involved in the Degreening Reaction1

机译:衰老拟南芥叶片中的叶绿素分解。叶绿素分解代谢物和参与度化反应的叶绿素分解代谢酶的表征1

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摘要

During senescence, chlorophyll (chl) is metabolized to colorless nonfluorescent chl catabolites (NCCs). A central reaction of the breakdown pathway is the ring cleavage of pheophorbide (pheide) a to a primary fluorescent chl catabolite. Two enzymes catalyze this reaction, pheide a oxygenase (PAO) and red chl catabolite reductase. Five NCCs and three fluorescent chl catabolites (FCCs) accumulated during dark-induced chl breakdown in Arabidopsis (Arabidopsis thaliana). Three of these NCCs and one FCC (primary fluorescent chl catabolite-1) were identical to known catabolites from canola (Brassica napus). The presence in Arabidopsis of two modified FCCs supports the hypothesis that modifications, as present in NCCs, occur at the level of FCC. Chl degradation in Arabidopsis correlated with the accumulation of FCCs and NCCs, as well as with an increase in PAO activity. This increase was due to an up-regulation of Pao gene expression. In contrast, red chl catabolite reductase is not regulated during leaf development and senescence. A pao1 knockout mutant was identified and analyzed. The mutant showed an age- and light-dependent cell death phenotype on leaves and in flowers caused by the accumulation of photoreactive pheide a. In the dark, pao1 exhibited a stay-green phenotype. The key role of PAO in chl breakdown is discussed.
机译:在衰老过程中,叶绿素(chl)代谢为无色无荧光chl分解代谢物(NCC)。分解途径的中心反应是脱镁叶绿酸(pheophorbide)(pheide)a对初级荧光chl分解代谢物的环裂解。两种酶催化该反应,一种是氧化氢酶(PAO),另一种是红色的chl分解代谢物还原酶。在拟南芥(Arabidopsis thaliana)中黑暗诱导的chl分解过程中积累了5个NCC和3个荧光chl分解代谢物(FCC)。这些NCC中的三个和一个FCC(一级荧光chl分解代谢物-1)与卡诺拉油菜(甘蓝型油菜)中已知的分解代谢物相同。拟南芥中存在两种修饰的FCC,这支持了这样一种假说,即存在于NCC中的修饰发生在FCC水平。拟南芥中的Chl降解与FCC和NCC的积累以及PAO活性的增加有关。这种增加是由于Pao基因表达的上调。相反,红色的chl分解代谢物还原酶在叶片发育和衰老过程中不受调控。一个pao1基因敲除突变体进行了鉴定和分析。该突变体在叶和花中表现出年龄和光依赖的细胞死亡表型,这是由光反应性苯丙氨酸的积累引起的。在黑暗中,pao1表现出保持绿色的表型。讨论了PAO在chl分解中的关键作用。

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