Evidence that Natural Selection is the Primary Cause of the Guanine-cytosine Content Variation in Ri

来源 :Journal of Integrative Plant Biology | 被引量 : 0次 | 上传用户:skyskysky094411
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Cereal genes are classified into two distinct classes according to the guanine-cytosine(GC)content at the third codonsites(GC_3).Natural selection and mutation bias have been proposed to affect the GC content.However,there has beencontroversy about the cause of GC variation.Here,we characterized the GC content of 1092 paralogs and other single-copygenes in the duplicated chromosomal regions of the rice genome(ssp.indica)and classified the paralogs into GC_3-richand GC_3-poor groups.By referring to out-group sequences from Arabidopsis and maize,we confirmed that the averagesynonymous substitution rate of the GC_3-rich genes is significantly lower than that of the GC_3-poor genes.Furthermore,we explored the other possible factors corresponding to the GC variation including the length of coding sequences,thenumber of exons in each gene,the number of genes in each family,the location of genes on chromosomes and the proteinfunctions.Consequently,we propose that natural selection rather than mutation bias was the primary cause of the GCvariation. Cereal genes are classified into two distinct classes according to the guanine-cytosine (GC) content at the third codonsites (GC_3). Natural selection and mutation bias have been to affect the GC content. However, there has been controversy about the cause of GC variation.Here, we characterized the GC content of 1092 paralogs and other single-copygenes in the duplicated chromosomal regions of the rice genome (ssp. indica) and classified the paralogs into GC_3-richand GC_3-poor groups.By referring to out-group sequences from Arabidopsis and maize, we confirmed that the averagesynonymous substitution rate of the GC_3-rich genes is significantly lower than that of the GC_3-poor genes. Morerther, we explored the other possible factors corresponding to the GC variation including the length of coding sequences , then number of exons in each gene, the number of genes in each family, the location of genes on chromosomes and the protein activities. Conclusion, we propose that natural selection rather than than mutation bias was the primary cause of the GCvariation.
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