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WHO: A novel Wuschel-like homeodomain transcription factor in Arabidopsis.

机译:世卫组织:拟南芥中一种新颖的类似Wuschel的同源域转录因子。

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摘要

We have isolated a novel homeodomain transcription factor gene in Arabidopsis. It shares a high degree of identity with WUSCHEL (WUS), a transcription factor involved in specifying stem cell fate in shoot and floral meristems among several plant species. This novel homeobox gene, designated as W&barbelow;USCHEL-LIKE H&barbelow;OMEOPROTEIN O&barbelow;VEREXPRESSION (WHO), encodes a new WUS-like homeodomain protein of 182 amino acids. There are four single nucleotide polymorphisms found in the Lansberg erecta versus ecotype Columbia, with no amino acid changes. The WHO protein, WUS, PRESSED FLOWER (PRS), and several other Arabidopsis putative proteins define a new class of WUS-like homeodomain proteins based on phylogenetic analysis. RNA in situ hybridization showed that the WHO gene is expressed in mature guard cells, stipules and cells surrounding the root vasculature. The overexpression mutant who, identified by transposon gene trap screening, exhibited a severely stunted phenotype. Pleiotropic defects were observable in the shoot meristem, the floral meristem and the root meristems. The who mutant exhibited over-sprouting shoots, malformed finger-like leaves, strongly stunted roots, delayed bolting and flowering, as well as aberrant floral organs. Moreover, callus and somatic embryos formed regularly from the mutant petioles and hypocotyls on normal MS medium without any external phytohormone treatment. Morphological studies showed that mutant roots had a radial organization defect, producing 7 cortical and 7 endodermal cells in the primary root instead of the normal 8-cell profile of wild type. Mutant lateral roots were arrested and nodule-shaped. Global oligonucleotide array analysis and RT-PCR data indicated ∼280 genes were upregulated in the overexpression mutant who, including pivotal developmental genes such as HISTONE H1, CUP-SHAPED COTYLEDON1 (CUC1), CLAVATA3 (CLV3 ) and SHOOTMERISTEMLESS (STM). Taken together, these findings indicate that the misexpression of WHO caused by promoter element disruption affect fundamental developmental programs in Arabidopsis, and suggest that the homeobox gene WHO plays an important role in regulating meristematic cell differentiation and organ formation.
机译:我们在拟南芥中分离了一个新的同源域转录因子基因。它与WUSCHEL(WUS)具有高度同一性,WUSCHEL(WUS)是一种转录因子,可用于确定几种植物物种的枝条和花分生组织中的干细胞命运。这个新的同源盒基因被命名为WOME,编码一个新的WUS样的182个氨基酸的同源域蛋白。 Lansberg erecta与生态型Columbia相比有四种单核苷酸多态性,没有氨基酸变化。根据系统发育分析,WHO蛋白,WUS,压花(PRS)和其他几种拟南芥推定蛋白定义了一类新的WUS样同源域蛋白。 RNA原位杂交表明WHO基因在成熟的保卫细胞,托叶和根脉管周围的细胞中表达。通过转座子基因陷阱筛选鉴定出的过表达突变体表现出严重发育不良的表型。在芽分生组织,花分生组织和根分生组织中可观察到多效性缺陷。谁突变体显示出过度发芽的芽,畸形的手指状叶子,强烈发育不良的根部,延迟的抽and和开花以及异常的花器官。而且,在没有任何外部植物激素处理的情况下,正常MS培养基上的突变叶柄和下胚轴定期形成愈伤组织和体细胞胚。形态学研究表明,突变根具有径向组织缺陷,在原始根中产生7个皮质和7个内胚层细胞,而不是正常的野生型8细胞谱。突变的侧根被逮捕,结节状。全球寡核苷酸阵列分析和RT-PCR数据表明,在过量表达的突变体中约有280个基因上调,其中包括关键的发育基因,如HISTONE H1,杯状COTYLEDON1(CUC1),CLAVATA3(CLV3)和SHOOTMERISTEMLESS(STM)。综上所述,这些发现表明由启动子元件破坏引起的WHO的错误表达影响拟南芥中的基本发育程序,并表明同源盒基因WHO在调节分生细胞分化和器官形成中起着重要作用。

著录项

  • 作者

    Fu, Chiushi.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Biology Molecular.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;植物学;
  • 关键词

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