首页> 美国卫生研究院文献>Genetics >Molecular Analysis of the Hot Spot Region Related to Length Mutations in Wheat Chloroplast Dnas. I. Nucleotide Divergence of Genes and Intergenic Spacer Regions Located in the Hot Spot Region
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Molecular Analysis of the Hot Spot Region Related to Length Mutations in Wheat Chloroplast Dnas. I. Nucleotide Divergence of Genes and Intergenic Spacer Regions Located in the Hot Spot Region

机译:与小麦叶绿体Dnas长度突变相关的热点区域的分子分析。 I.位于热点区域的基因和基因间隔区的核苷酸差异

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摘要

The nucleotide divergence of chloroplast DNAs around the hot spot region related to length mutation in Triticum (wheat) and Aegilops was analyzed. DNA sequences (ca. 4.5 kbp) of three chloroplast genome types of wheat complex were compared with one another and with the corresponding region of other grasses. The sequences region contained rbcL and psaI, two open reading frames, and a pseudogene, rpl23' (pseudogene for ribosomal protein L23) disrupted by AT-rich intergic spacer regions. The evolution of these genes in the closely related wheat complex is characterized by nonbiased nucleotide substitutions in terms of being synonymousonsynonymous, having A-T pressure transitions over transversions, and frequent changes at the third codon position, in contrast with the gene evolution among more distant plant groups where biased nucleotide substitutions have frequently occurred. The sequences of these genes had diverged almost in proportion to taxonomic distance. The sequence of the pseudogene rpl23' changed approximately two times faster than that of the coding region. Sequence comparison between the pseudogene and its protein-coding counterpart revealed different degrees of nucleotide homology in wheat, rice and maize, suggesting that the transposition timing of the pseudogene differed and/or that different rates of gene conversion operated on the pseudogene in the cpDNA of the three plant groups in Gramineae. The intergenic spacer regions diverged approximately ten times faster than the genes. The divergence of wheat from barley, and that from rice are estimated based on the nucleotide similarity to be 1.5, 10 and 40 million years, respectively.
机译:分析了与小麦(小麦)和节肢动物的长度突变有关的热点区域周围的叶绿体DNA的核苷酸差异。比较了三种复杂小麦叶绿体基因组类型的DNA序列(约4.5kbp),并与其他草的相应区域进行了比较。序列区域包含rbcL和psaI,两个开放阅读框,和一个假基因rpl23'(核糖体蛋白L23的假基因)被富含AT的中间间隔区破坏了。这些基因在密切相关的小麦复合体中的进化以同义/非同义为特征,即无偏核苷酸取代,在转变中具有AT压力转变,并且在第三个密码子位置频繁变化,这与更远距离的基因进化相反。经常发生有偏向的核苷酸取代的植物群。这些基因的序列几乎与分类距离成正比。伪基因rpl23'的序列变化比编码区的序列快大约两倍。假基因与其蛋白质编码对应物之间的序列比较揭示了小麦,水稻和玉米中核苷酸同源性的不同程度,这表明假基因的转座时间不同和/或在cpDNA的cpDNA中对假基因的基因转化率不同。禾本科的三个植物群。基因间隔区的差异比基因快约十倍。基于核苷酸相似性,估计小麦与大麦的差异与水稻的差异分别为1.5、10和4000万年。

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