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在加利福尼亚桡足类动物 Tigriopus californicus 中 GOT1 的旁系同源物中,基因转换产生了新的基因组合。

Gene conversion yields novel gene combinations in paralogs of GOT1 in the copepod Tigriopus californicus.

机构信息

Department of Biology, University of North Carolina, Chapel Hill, NC 27599-3280, USA.

出版信息

BMC Evol Biol. 2013 Jul 12;13:148. doi: 10.1186/1471-2148-13-148.

Abstract

BACKGROUND

Gene conversion of duplicated genes can slow the divergence of paralogous copies over time but can also result in other interesting evolutionary patterns. Islands of genetic divergence that persist in the face of gene conversion can point to gene regions undergoing selection for new functions. Novel combinations of genetic variation that differ greatly from the original sequence can result from the transfer of genetic variation between paralogous genes by rare gene conversion events. Genetically divergent populations of the copepod Tigriopus californicus provide an excellent model to look at the patterns of divergence among paralogs across multiple independent evolutionary lineages.

RESULTS

In this study the evolution of a set of paralogous genes encoding putative aspartate transaminase proteins (called GOT1 here) are examined in populations of the copepod T. californicus. One pair of duplicated genes, GOT1p1 and GOT1p2, has regions of high divergence between the copies in the face of apparent on-going gene conversion. The GOT1p2 gene also has unique haplotypes in two populations that appear to have resulted from a transfer of genetic variation via inter-paralog gene conversion. A second pair of duplicated genes GOT1Sr and GOT1Sd also shows evidence of gene conversion, but this gene conversion does not appear to have maintained each as a functional copy in all populations.

CONCLUSIONS

The patterns of conservation and sequence divergence across this set of paralogous genes among populations of T. californicus suggest that some interesting evolutionary patterns are occurring at these loci. The results for the GOT1p1/GOT1p2 paralogs illustrate how gene conversion can factor in the creation of a mosaic pattern of regions of high divergence and low divergence. When coupled with rare gene conversion events of divergent regions, this pattern can result in the formation of novel proteins differing substantially from either original protein. The evolutionary patterns across these paralogs show how gene conversion can both constrain and facilitate diversification of genetic sequences.

摘要

背景

重复基因的基因转换可以随着时间的推移减缓同源基因副本的分化,但也可能导致其他有趣的进化模式。在基因转换的情况下仍然存在遗传分化的岛屿可以指向正在为新功能选择的基因区域。通过罕见的基因转换事件,同源基因之间遗传变异的转移可以导致与原始序列差异很大的新的遗传变异组合。加利福尼亚桡足类的遗传分化种群为研究多个独立进化谱系中同源基因之间的分化模式提供了极好的模型。

结果

在这项研究中,研究了加利福尼亚桡足类种群中一组编码假定天冬氨酸转氨酶蛋白的同源基因(这里称为 GOT1)的进化。一对重复基因,GOT1p1 和 GOT1p2,在两个副本之间存在高分化区域,而明显的基因转换仍在继续。GOT1p2 基因在两个种群中也有独特的单倍型,这些单倍型似乎是通过同源基因间的基因转换转移遗传变异而产生的。第二对重复基因 GOT1Sr 和 GOT1Sd 也显示出基因转换的证据,但这种基因转换似乎并没有在所有种群中都将每个基因保持为功能副本。

结论

这些加利福尼亚桡足类种群中一组同源基因的保守性和序列分化模式表明,这些基因座正在发生一些有趣的进化模式。GOT1p1/GOT1p2 同源基因的结果说明了基因转换如何在形成高分化和低分化区域的镶嵌模式中起作用。当与分化区域的罕见基因转换事件结合时,这种模式会导致形成与原始蛋白质有很大不同的新型蛋白质。这些同源基因的进化模式表明,基因转换既可以限制又可以促进遗传序列的多样化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d73/3728101/bd3b9ab0b71b/1471-2148-13-148-1.jpg

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