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Evolution of two gene families controlling the fundamental processes of eukaryotic development: MADS-box gene family and homeobox gene family.

机译:控制真核生物发育基本过程的两个基因家族的进化:MADS-box基因家族和homeobox基因家族。

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摘要

MADS-box and homeobox genes form two large gene families of transcription factors that control fundamental processes of eukaryotic development. Therefore, studies of evolution of these gene families are expected to give some insights into the evolution of morphological characters. With this in mind, the following four related studies were conducted. (1) The origin and diversification of MADS-box genes controlling flowering in plants were studied. (2) The patterns of duplication and loss of MADS-box genes in the genomes of Arabidopsis and rice were studied. (3) A simple statistical method for predicting the gene regions that are functionally differentiated between duplicate genes was developed. (4) The pattern of duplication and loss of homeobox genes in the 11 species of bilateral animals was studied. Three general conclusions learned from the above four studies are as follows. (1) The duplication events of different lineages of MADS-box genes and homeobox genes often predate the origin of their related morphological characters. (2) These gene families have experienced frequent gene duplication events and losses. (3) Both gain and loss of these genes might have been important for the evolution of morphological characters.
机译:MADS-box和homeobox基因形成两个大的转录因子基因家族,它们控制真核生物发育的基本过程。因此,这些基因家族的进化研究有望为形态特征的进化提供一些见识。考虑到这一点,进行了以下四项相关研究。 (1)研究了控制植物开花的MADS-box基因的起源和多样性。 (2)研究了拟南芥和水稻基因组中MADS-box基因的复制和丢失模式。 (3)开发了一种简单的统计方法来预测在重复基因之间功能区分开的基因区域。 (4)研究了11种双边动物体内同源异型框基因的复制和丢失模式。从以上四项研究中得出的三个一般结论如下。 (1)MADS-box基因和homeobox基因不同谱系的复制事件通常早于其相关形态特征的起源。 (2)这些基因家族经历了频繁的基因复制事件和损失。 (3)这些基因的得失可能对形态特征的演变很重要。

著录项

  • 作者

    Nam, Jongmin.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

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