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Molecular Evolution of the Glutathione S-Transferase Family in the Bemisia tabaci Species Complex

机译:Bemisia Tabaci物种复合物中谷胱甘肽S-转移酶系列的分子演变

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The glutathione S-transferase (GST) family plays an important role in the adaptation of herbivorous insects to new host plants and other environmental constrains. The family codes for enzymes that neutralize reactive oxygen species and phytotoxins through the conjugation of reduced glutathione. Here, we studied the molecular evolution of the GST family in Bemisia tabaci, a complex of 35 sibling species, differing in their geographic and host ranges. We tested if some enzymes evolved different functionality, by comparing their sequences in six species, representing five of the six major genetic clades in the complex. Comparisons of the nonsynonymous to synonymous substitution ratios detected positive selection events in 11 codons of 5 cytosolic GSTs. Ten of them are located in the periphery of the GST dimer, suggesting a putative involvement in interactions with other proteins. Modeling the tertiary structure of orthologous enzymes, identified additional 19 mutations in 9 GSTs, likely affecting the enzymes’ functionality. Most of the mutation events were found in the environmentally responsive classes Delta and Sigma, indicating a slightly different delta/sigma tool box in each species. At a broader genomic perspective, our analyses indicated a significant expansion of the Delta GST class in B.?tabaci and a general association between the diet breadth of hemipteran species and their total number of GST genes. We raise the possibility that at least some of the identified changes improve the fitness of the B.?tabaci species carrying them, leading to their better adaptation to specific environments.
机译:谷胱甘肽S-转移酶(GST)家族在制剂对新宿主植物和其他环境约束的适应中起着重要作用。用于通过减少的谷胱甘肽缀合中和反应性氧物质和植物毒素的酶的家族代码。在这里,我们研究了Bemisia Tabaci的GST家族的分子演变,其中一个> 35种兄弟队的综合体,在地理和宿主范围内不同。通过将它们的序列与六种物种进行比较,我们通过比较复合物中的六个主要遗传肠中的五种,我们测试了一些酶,如果一些酶在六种物种中的序列中逐渐发展。非同义于同义替代比的比较检测到5个细胞溶质GST的11个密码子中的阳性选择事件。其中十个位于GST二聚体的周边,表明具有与其他蛋白质相互作用的推定参与。建模正交酶的三级结构,在9种GST中鉴定了额外的19个突变,可能影响酶的功能。大多数突变事件在环境响应的类δ和Sigma中发现,表明每个物种中的略微不同的Delta / Sigma工具箱。在更广泛的基因组视角下,我们的分析表明B.?Tabaci的Delta GST类的显着扩展,以及血针种类的饮食宽度与其总GST基因总数之间的一般关联。我们提出了至少一些所识别的变化,提高了携带它们的B.?tabaci种类的适应性,导致他们更好地适应特定环境。

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