首页> 外文学位 >Phylogenetic analysis of the AP2/ERF and KNOTTED1-like homeodomain families of transcription factors and finding of new members in Zea mais and Arabidopsis thaliana.
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Phylogenetic analysis of the AP2/ERF and KNOTTED1-like homeodomain families of transcription factors and finding of new members in Zea mais and Arabidopsis thaliana.

机译:系统发育分析的AP2 / ERF和类似KNOTTED1同源域的转录因子家族,并在玉米和拟南芥中发现新成员。

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摘要

The AP2/ERF is one of the most represented families of transcription factors in plants with 144 AP2/ERF genes predicted in the Arabidopsis thaliana genome. All members of the AP2/ERF family of plant transcription regulators contain at least one copy of a DNA-binding domain called the AP2 domain. The AP2 domain was considered plant unique. In this study, I show that homologs of the AP2 domain are present outside plants. The newly discovered non-plant proteins bearing an AP2 domain are predicted to be HNH endonucleases. I hypothesize that a horizontal transfer of an HNH-AP2 endonuclease from bacteria or viruses into plants may have led to the origin of the AP2/ERF family of transcription factors via transposition and homing processes.;Some members of the AP2/ERF family of transcription factors are involved in key developmental steps. BRANCHED SILKLESS 1 (BD1), a putative ERF transcription factor, plays a fundamental role in the maize spikelet development controlling meristem identity. I took a reverse genetic approach in order to clone new AP2/ERF factors involved in the development of the maize inflorescence architecture. I cloned four genes that are specifically expressed in ear and tassel. All of them are down-regulated in the bd1 background. The ongoing analysis of the Mu insertion mutant alleles that have been found for all the four ERF genes will help understand the role of these transcription factors.;The KNOTTED1-like homeodomain (KNOX) family of transcription regulators is the second protein family I focused my attention on. KNOXs are Three Amino acid Loop Extension (TALE) homeodomain proteins. KNOXs also carry a MEINOX domain which interacts with the TALE BEL1-like homeodomain proteins. In this study, I analyze the phylogeny of the Arabidopsis KNOX proteins and identify MNX, a new Arabidopsis KNOX which encodes a MEINOX domain and an acidic domain, but no homeodomain. As predicted, MNX selectively interacts with BELL proteins. MNX is expressed in a polar way in organ primordia. pCaMV35S:MNX Arabidopsis plants show defects in petiole elongation, leaf serration and flowering time. Taken together the data suggest that MNX-B work as a typical KNOX transcription factor with the homeodomain being redundant.
机译:AP2 / ERF是拟南芥基因组中预测具有144个AP2 / ERF基因的植物中最有代表性的转录因子家族之一。 AP2 / ERF植物转录调节因子家族的所有成员均含有至少一个拷贝的称为AP2域的DNA结合域。 AP2域被认为是植物特有的。在这项研究中,我表明AP2域的同源物存在于植物外部。预计新发现的带有AP2结构域的非植物蛋白是HNH核酸内切酶。我假设HNH-AP2核酸内切酶从细菌或病毒向植物的水平转移可能通过转座和归巢过程导致了AP2 / ERF转录因子家族的起源; AP2 / ERF转录家族的某些成员因素涉及关键的发展步骤。分支蚕丝1(BD1),一种假定的ERF转录因子,在控制分生组织同一性的玉米小穗发育中起着基本作用。为了克隆与玉米花序结构发展有关的新的AP2 / ERF因子,我采用了反向遗传方法。我克隆了四个在耳朵和流苏中特异性表达的基因。所有这些在bd1背景中均被下调。正在进行的对所有四个ERF基因的Mu插入突变体等位基因的持续分析将有助于理解这些转录因子的作用。; KNOTTED1样同源域(KNOX)转录调节因子家族是我关注的第二个蛋白质家族注意。 KNOX是三种氨基酸环延伸(TALE)同源域蛋白。 KNOX还带有一个MEINOX域,该域与TALE BEL1类同源域蛋白相互作用。在这项研究中,我分析了拟南芥KNOX蛋白的系统发育并鉴定了MNX,这是一种编码MEINOX域和酸性域但没有同源域的新型拟南芥KNOX。如预期的那样,MNX与BELL蛋白选择性地相互作用。 MNX在器官原基中以极性方式表达。 pCaMV35S:MNX拟南芥植物在叶柄伸长,叶片锯齿和开花时间方面显示出缺陷。数据合计表明,MNX-B作为典型的KNOX转录因子而同源域是多余的。

著录项

  • 作者

    Magnani, Enrico.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Biology Molecular.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:13

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