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Cloning and Characterization of DWARF1 Gene and Study of Gibberellins Signaling in Maize.

机译:玉米DWARF1基因的克隆,鉴定及赤霉素信号转导的研究。

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摘要

Gibberellins (GA) have multiple biological functions including promoting stem elongation, seed germination and flower development. The GA deficient dwarf1 (d1) mutant in maize displays plant dwarfism and andromonoecy, i.e. forming anthers in the female flower. However, the molecular basis is not clear. Through molecular characterization of multiple d1 alleles, I prove that the d1 is caused by mutations in the GA 3-oxidase (ZmGA3ox2) that converts the inactive GA intermediates to bioactive GAs. The recombinant D1 protein catalyzes at least four reactions in vitro, converting GA20 to GA3, GA5 to GA3, GA20 to GA1 and GA 9 to GA4. Subcellular localization analysis by two independent approaches which are in vivo D1-GFP analysis and western blot analysis of organelle fractions revealed that the D1 protein is dual-localized in the nucleus and the cytosol. ZmGA20ox was also localized in both the cytosol and the nucleus by the in vivo GFP fusion analysis. Interestingly, the dual-localization of D1 and ZmGA20ox coincides with the localization of the GA receptor GID1. In early phase of maize female flower development, the D1 protein was found specifically and highly expressed in the stamen primordia within the female florets. These results indicate that bioactive GAs can be synthesized in both the cytosol and the nucleus, and that the suppression of stamen in female florets is mediated by locally synthesized GAs. This finding provides new insights to the understanding of GA biosynthesis and signal transduction in plants.;DELLA proteins are repressors of GA signal transduction. DWARF8 (D8) is a DELLA protein in maize, Mutations in the N-terminal of D8 resulted in dominant GA insensitive dwarf8 (d8) phenotype. d8 displayed similar phenotypes as the d1mutants; i.e. plant dwarfism, dark green leaves and andromonoecy, indicating that D8 is a master repressor mediating these GA functions. DELLA proteins suppressed the downstream signal transduction of GA by restricting their interacting protein functions through protein-protein interaction. Diverse GA responses require numerous DELLA interacting proteins. Based on the unique function of GA in regulating sex determination in maize, I hypothesize that D8 mediates the GA responses by interacting with yet unknown proteins in maize. Through yeast two hybrid screening of the maize ear cDNA library, I identified 14 proteins that showed genuine interaction in yeast system. Among these, a SPX domain containing protein named as ZmSPX1 was present. SPX domain containing proteins in yeast are implicated in cell cycle regulation; however, their functions in plants are unknown. GFP fusion analysis indicated that ZmSPX1 co-localizes with D8 in the nucleus and their interaction was confirmed by bimolecular fluorescence complementation (BiFC) and in vitro pull-down assay. To this point, I have identified several candidates for D8 interacting proteins and provided strong evidence that ZmSPX1 is a bona fide D8 interacting protein which set a foundation for further analysis of its function in mediating GA responses including sex determination, cell division and elongation.
机译:赤霉素(GA)具有多种生物学功能,包括促进茎伸长,种子发芽和花朵发育。玉米中的GA缺陷型dwarf1(d1)突变体表现出植物矮化和雄激素的存在,即在雌花中形成花药。但是,分子基础尚不清楚。通过多个d1等位基因的分子表征,我证明了d1是由GA 3-氧化酶(ZmGA3ox2)中的突变引起的,该突变将非活性GA中间体转化为生物活性GA。重组D1蛋白在体外至少催化四个反应,将GA20转化为GA3,GA5转化为GA3,GA20转化为GA1,GA 9转化为GA4。通过两种独立的方法进行亚细胞定位分析,即体内D1-GFP分析和细胞器部分的Western印迹分析,结果表明D1蛋白在细胞核和胞质溶胶中双重定位。通过体内GFP融合分析,ZmGA20ox也定位在细胞质和细胞核中。有趣的是,D1和ZmGA20ox的双重定位与GA受体GID1的定位一致。在玉米雌花发育的早期,发现D1蛋白在雌小花的雄蕊原基中特异性表达并高表达。这些结果表明,具有生物活性的GAs可以在细胞质和细胞核中合成,并且女性小花中雄蕊的抑制作用是由局部合成的GAs介导的。这一发现为了解植物中GA的生物合成和信号转导提供了新的见解。DELLA蛋白是GA信号转导的阻遏物。 DWARF8(D8)是玉米中的DELLA蛋白,D8 N端的突变导致显性的GA不敏感dwarf8(d8)表型。 d8表现出与d1突变体相似的表型。即植物矮化,深绿色的叶子和雄性单性,表明D8是介导这些GA功能的主要阻遏物。 DELLA蛋白通过限制蛋白之间的相互作用来抑制GA的下游信号转导。不同的GA反应需要大量的DELLA相互作用蛋白。基于GA在调节玉米性别决定中的独特功能,我推测D8通过与玉米中尚不了解的蛋白质相互作用来介导GA反应。通过酵母对玉米穗cDNA文库的两次杂交筛选,我鉴定了14种在酵母系统中显示出真正相互作用的蛋白质。在这些中,存在包含被称为ZmSPX1的蛋白质的SPX域。酵母中含有SPX结构域的蛋白质与细胞周期调控有关。但是,它们在植物中的功能尚不清楚。 GFP融合分析表明ZmSPX1与D8在核中共定位,并且通过双分子荧光互补(BiFC)和体外下拉测定法证实了它们的相互作用。至此,我已经确定了D8相互作用蛋白的几种候选物,并提供了有力的证据证明ZmSPX1是真正的D8相互作用蛋白,为进一步分析其在介导GA反应(包括性别决定,细胞分裂和延伸)中的功能奠定了基础。

著录项

  • 作者

    Chen, Yi.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Molecular biology.;Botany.;Genetics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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