首页> 外文学位 >Map based cloning of a gene in Arabidopsis encoding novel membrane-associated metalloprotease that is required for ethylene-dependent hypocotyl gravitropism and chloroplast development.
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Map based cloning of a gene in Arabidopsis encoding novel membrane-associated metalloprotease that is required for ethylene-dependent hypocotyl gravitropism and chloroplast development.

机译:基于图的克隆拟南芥中一个编码新型膜相关金属蛋白酶的基因的克隆,这是乙烯依赖性下胚轴重力和叶绿体发育所必需的。

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摘要

Plants use ethylene gas as a signal to regulate myriad developmental processes and stress responses. Based on the stimulation effect of ethylene on hypocotyl gravitropism of light-grown seedlings, a screening method was established to screen mutants in Arabidopsis. A mutant, edgy1-1 (e&barbelow;thylene-d&barbelow;ependent shoot g&barbelow;ravitropism deficiency and y&barbelow;ellow-green) was identified and characterized to have pleiotropic phenotype including defective ethylene stimulated hypocotyl gravitropism in light-grown seedlings and yellow-green aerial tissues. EDGY1 gene was isolated by map based cloning to encode a novel metalloprotease that belongs to M50 family and it contains a 10-bp deletion in edgy1-1 . Successful complementation with wild type EDGY1 gene and identification of two new alleles containing T-DNA insertion in EDGY1 gene confirm that the mutation in EDGY1 is responsible for the observed phenotypes. Close homologs of EDGY1 are found in Arabidopsis, rice and cyanobacteria. Microscope examination with EDGY1-GFP fusion protein and the immunoblot with EDGY1 antibodies indicate the chloroplast localization of EDGY1 protein. The chloroplast ultrastructure is defective in edgy1 to contain poorly developed thylakoid membrane, and the accumulation of LHC (l&barbelow;ight h&barbelow;arvesting c&barbelow;omplex) protein is significantly reduced. GUS reporter-aided promoter analysis indicated EDGY1 gene is transcribed ubiquitously in various organs. Immunoblot analysis revealed EDGY1 protein is associated with membrane fraction and its protein accumulation varies from organ to organ, being most prominent in leaf and stem and is regulated by light and increased in response to ethylene. Recombinant EDGY1 protein carries proteolytic activity against beta-casein in an ATP-independent but metal dependent manner. The possible target substrates of EDGY1 and its action mode are discussed in detail to explore the possible function of EDGY1 in vivo. All the data together support an important role of EDGY1, as a membrane associated metalloprotease of plastid in ethylene stimulated gravitropism and chloroplast development.
机译:植物利用乙烯气体作为调节多种发育过程和应激反应的信号。基于乙烯对光生幼苗下胚轴引力的刺激作用,建立了筛选拟南芥突变体的筛选方法。突变体edgy1-1(e&barbelow;乙烯-d&barbelow;嫩芽g&barbetropial缺乏和y&barlowlow-green)被鉴定并表征为具有多效表型,包括在光生的幼苗中有缺陷的乙烯刺激的下胚轴重力性和黄绿色空中组织。 EDGY1基因是通过基于图的克隆分离的,编码一种属于M50家族的新型金属蛋白酶,它在edgy1-1中含有10 bp的缺失。与野生型EDGY1基因的成功互补以及在EDGY1基因中包含两个T-DNA插入的新等位基因的鉴定证实了EDGY1中的突变是所观察到的表型的原因。在拟南芥,水稻和蓝细菌中发现了EDGY1的紧密同源物。用EDGY1-GFP融合蛋白进行显微镜检查,用EDGY1抗体进行免疫印迹,表明EDGY1蛋白的叶绿体定位。叶绿体的超微结构在​​edgy1中是缺陷的,不能包含类囊体膜发育不良,并且LHC(I型和八型)蛋白的积累显着减少。 GUS记者辅助的启动子分析表明,EDGY1基因在各种器官中普遍转录。免疫印迹分析表明,EDGY1蛋白与膜部分有关,其蛋白积累随器官而异,在叶和茎中最显着,并受光调节并随乙烯反应而增加。重组EDGY1蛋白以不依赖于ATP但依赖于金属的方式具有针对β-酪蛋白的蛋白水解活性。详细讨论了EDGY1的可能靶标底物及其作用方式,以探索EDGY1在体内的可能功能。所有数据共同支持EDGY1的重要作用,因为质膜的膜相关金属蛋白酶在乙烯刺激的重力作用和叶绿体发育中是重要的。

著录项

  • 作者

    Chen, Gu.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Biology Botany.; Biology Molecular.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;分子遗传学;植物学;
  • 关键词

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