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从水稻亚种籼稻和粳稻基因组中鉴定出的假定R2R3-MYB基因中DNA结合域的进化动力学。

Evolutionary dynamics of the DNA-binding domains in putative R2R3-MYB genes identified from rice subspecies indica and japonica genomes.

作者信息

Jia Li, Clegg Michael T, Jiang Tao

机构信息

Department of Biological Sciences, Wichita State University, Wichita, Kansas 67260, USA.

出版信息

Plant Physiol. 2004 Feb;134(2):575-85. doi: 10.1104/pp.103.027201.

DOI:10.1104/pp.103.027201
PMID:14966247
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC344534/
Abstract

The molecular evolution of the R2R3-MYB gene family is of great interest because it is one of the most important transcription factor gene families in the plant kingdom. Comparative analyses of a gene family may reveal important adaptive changes at the protein level and thereby provide insights that relate structure to function. We have performed a range of comparative and bioinformatics analyses on R2R3-MYB genes identified from the rice (Oryza sativa subsp. japonica and indica) and Arabidopsis genome sequences. The study provides an initial framework to investigate how different evolutionary lineages in a gene family evolve new functions. Our results reveal a remarkable excess of non-synonymous substitutions, an indication of adaptive selection on protein structure that occurred during the evolution of both helix1 and helix2 of rice R2R3-MYB DNA-binding domains. These flexible alpha-helix regions associated with high frequencies of excess non-synonymous substitutions may play critical roles in the characteristic packing of R2R3-MYB DNA-binding domains and thereby modify the protein-DNA interaction process resulting in the recognition of novel DNA-binding sites. Furthermore, a co-evolutionary pattern is found between the second alpha-helix of the R2 domain and the second alpha-helix of the R3 domain by examining all the possible alpha-helix pairings in both the R2 and R3 domains. This points to the functional importance of pairing interactions between related secondary structures.

摘要

R2R3-MYB基因家族的分子进化备受关注,因为它是植物界最重要的转录因子基因家族之一。对一个基因家族进行比较分析,可能会揭示蛋白质水平上重要的适应性变化,从而提供将结构与功能联系起来的见解。我们对从水稻(粳稻和籼稻亚种)和拟南芥基因组序列中鉴定出的R2R3-MYB基因进行了一系列比较和生物信息学分析。这项研究提供了一个初步框架,以研究基因家族中不同的进化谱系如何演化出新功能。我们的结果显示非同义替换显著过量,这表明在水稻R2R3-MYB DNA结合结构域的螺旋1和螺旋2进化过程中发生了对蛋白质结构的适应性选择。这些与高频率的过量非同义替换相关的灵活α螺旋区域,可能在R2R3-MYB DNA结合结构域的特征性堆积中起关键作用,从而改变蛋白质与DNA的相互作用过程,导致识别新的DNA结合位点。此外,通过检查R2和R3结构域中所有可能的α螺旋配对,发现R2结构域的第二个α螺旋与R3结构域的第二个α螺旋之间存在共进化模式。这表明相关二级结构之间配对相互作用具有功能重要性。

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本文引用的文献

1
Excess non-synonymous substitutions suggest that positive selection episodes occurred during the evolution of DNA-binding domains in the Arabidopsis R2R3-MYB gene family.过量的非同义替换表明,在拟南芥R2R3-MYB基因家族中,DNA结合结构域的进化过程中发生了正向选择事件。
Plant Mol Biol. 2003 Jun;52(3):627-42. doi: 10.1023/a:1024875232511.
2
Collection, mapping, and annotation of over 28,000 cDNA clones from japonica rice.来自粳稻的28000多个cDNA克隆的收集、定位和注释。
Science. 2003 Jul 18;301(5631):376-9. doi: 10.1126/science.1081288.
3
The TIGR rice genome annotation resource: annotating the rice genome and creating resources for plant biologists.TIGR水稻基因组注释资源:注释水稻基因组并为植物生物学家创建资源。
Nucleic Acids Res. 2003 Jan 1;31(1):229-33. doi: 10.1093/nar/gkg059.
4
Sequence and analysis of rice chromosome 4.水稻4号染色体的测序与分析
Nature. 2002 Nov 21;420(6913):316-20. doi: 10.1038/nature01183.
5
The genome sequence and structure of rice chromosome 1.水稻第1号染色体的基因组序列与结构
Nature. 2002 Nov 21;420(6913):312-6. doi: 10.1038/nature01184.
6
Splitting pairs: the diverging fates of duplicated genes.基因对的分化:重复基因的不同命运
Nat Rev Genet. 2002 Nov;3(11):827-37. doi: 10.1038/nrg928.
7
A draft sequence of the rice genome (Oryza sativa L. ssp. japonica).水稻基因组(粳稻亚种)的草图序列。
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8
A draft sequence of the rice genome (Oryza sativa L. ssp. indica).水稻基因组(籼稻亚种)的草图序列。
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10
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