首页> 外文期刊>BMC Evolutionary Biology >Duplication, concerted evolution and purifying selection drive the evolution of mosquito vitellogenin genes
【24h】

Duplication, concerted evolution and purifying selection drive the evolution of mosquito vitellogenin genes

机译:复制,协同的演化和净化选择驱动蚊子患者基因的演变

获取原文
获取外文期刊封面目录资料

摘要

Background Mosquito vitellogenin (Vtg) genes belong to a small multiple gene family that encodes the major yolk protein precursors required for egg production. Multiple Vtg genes have been cloned and characterized from several mosquito species, but their origin and molecular evolution are poorly understood. Results Here we used in silico and molecular cloning techniques to identify and characterize the evolution of the Vtg gene family from the genera Culex, Aedes/Ochlerotatus, and Anopheles. We identified the probable ancestral Vtg gene among different mosquito species by its conserved association with a novel gene approximately one kilobase upstream of the start codon. Phylogenetic analysis indicated that the Vtg gene family arose by duplication events, but that the pattern of duplication was different in each mosquito genera. Signatures of purifying selection were detected in Culex, Aedes and Anopheles. Gene conversion is a major driver of concerted evolution in Culex, while unequal crossover is likely the major driver of concerted evolution in Anopheles. In Aedes, smaller fragments have undergone gene conversion events. Conclusions The study shows concerted evolution and purifying selection shaped the evolution of mosquito Vtg genes following gene duplication. Additionally, similar evolutionary patterns were observed in the Vtg genes from other invertebrate and vertebrate organisms, suggesting that duplication, concerted evolution and purifying selection may be the major evolutionary forces driving Vtg gene evolution across highly divergent taxa.
机译:背景技术蚊虫植物(VTG)基因属于一个小型多基因系列,用于编码鸡蛋生产所需的主要蛋黄蛋白前体。已经克隆了多个VTG基因,并用几种蚊子物种表征,但它们的起源和分子演变被众所周知。在这里,我们用于硅和分子克隆技术,以识别和表征Vtg基因家族的vtg基因家族的演变,从属Culex,AEDES / Ochlerotatus和anopheles。我们通过其保守的结合与起始密码子上游大约一千碱基的新基因进行了不同的蚊子物种中鉴定了不同蚊子种类的可能的祖先VTG基因。系统发育分析表明,VTG基因家族因重复事件而产生,但每个蚊子属的复制模式不同。在Culex,AEDES和Anopheles中检测到纯化选择的签名。基因转换是CULEX中协调演进的主要驱动因素,而不平等的交叉可能是人类中协同演变的主要驱动因素。在AEDES中,较小的片段具有基因转换事件。结论该研究显示了基因重复后蚊变VTG基因的演变的协调演化和净化选择。此外,在来自其他无脊椎动物和脊椎动物生物的VTG基因中观察到类似的进化模式,表明复制,协调演化和净化选择可以是驱动高度分列的VTG基因进化的主要进化力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号