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衰老叶片中的叶绿素降解:草地羊茅保持绿色基因型生化损伤的鉴定

Chlorophyll breakdown in senescent leaves identification of the biochemical lesion in a stay-green genotype of Festuca pratensis Huds.

作者信息

Vicentini Fabrizio, Hörtensteiner Stefan, Schellenberg Maya, Thomas Howard, Matile Philippe

机构信息

Institut für Pflanzenbiologie, Universität Zürich, Zollikerstrasse 107, 8008 Zürich, Switzerland.

Institute of Grassland and Environmental Research, Plas Gogerddan, Aberystwyth, Dyfed, SY23 3EB, UK.

出版信息

New Phytol. 1995 Feb;129(2):247-252. doi: 10.1111/j.1469-8137.1995.tb04294.x.

Abstract

Chlorophyll breakdown in senescent leaves proceeds in essentially three steps: dephytylation by the action of chlorophyllase; conversion of chlorophyllide to phaeophorbide by Mg-dechelatase; and oxygenolytic cleavage of the chlorine-macrocycle by a newly discovered dioxygenase. The metabolic lesion responsible for high retention of chlorophyll during foliar senescence in a mutant genotype of meadow fescue (Festuca pratensis Huds.) was located in the third step of the breakdown pathway. Senescent leaves of both the normally yellowing reference genotype, c.v Rossa, and the non-yellowing mutant Bf993 were shown to be competent with regard to chlorophyllase and Mg-dechelatase. On the other hand, thylakoids isolated from senescent leaves of cv. Rossa were able to carry out oxygenolysis of phaeophorbide into a colourless fluorescent catabolite in vitro, whereas Bf993 thylakoids were deficient in this activity. It is concluded that the Sid locus, a mutant allele of which is responsible for the stay-green character, encodes or regulates the gene for, phaeophorbide a dioxygenase.

摘要

衰老叶片中的叶绿素降解主要经过三个步骤

叶绿素酶作用下的脱植基作用;镁离子螯合酶将叶绿素酸酯转化为脱镁叶绿素酸酯;一种新发现的双加氧酶对卟啉大环进行氧化裂解。在草地羊茅(Festuca pratensis Huds.)的一个突变基因型中,导致叶片衰老期间叶绿素高度保留的代谢损伤位于降解途径的第三步。正常变黄的对照基因型cv. Rossa和不变黄的突变体Bf993的衰老叶片在叶绿素酶和镁离子螯合酶方面均表现正常。另一方面,从cv. Rossa衰老叶片中分离得到的类囊体能够在体外将脱镁叶绿素酸酯氧解为无色荧光分解产物,而Bf993类囊体缺乏这种活性。得出的结论是,Sid位点(其突变等位基因导致持绿性状)编码或调控脱镁叶绿素酸a双加氧酶基因。

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