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舌蝇 Glossina morsitans morsitans 的气味和味觉受体。

Odorant and gustatory receptors in the tsetse fly Glossina morsitans morsitans.

机构信息

Molecular Biology and Bioinformatics Unit, International Center of Insect Physiology and Ecology (icipe), Nairobi, Kenya; South African Bioinformatics Institute (SANBI), South African MRC Bioinformatics Unit, University of the Western Cape, Bellville, South Africa.

Department of Biochemistry and Molecular Biology, Egerton University, Njoro, Kenya.

出版信息

PLoS Negl Trop Dis. 2014 Apr 24;8(4):e2663. doi: 10.1371/journal.pntd.0002663. eCollection 2014 Apr.

Abstract

Tsetse flies use olfactory and gustatory responses, through odorant and gustatory receptors (ORs and GRs), to interact with their environment. Glossina morsitans morsitans genome ORs and GRs were annotated using homologs of these genes in Drosophila melanogaster and an ab initio approach based on OR and GR specific motifs in G. m. morsitans gene models coupled to gene ontology (GO). Phylogenetic relationships among the ORs or GRs and the homologs were determined using Maximum Likelihood estimates. Relative expression levels among the G. m. morsitans ORs or GRs were established using RNA-seq data derived from adult female fly. Overall, 46 and 14 putative G. m. morsitans ORs and GRs respectively were recovered. These were reduced by 12 and 59 ORs and GRs respectively compared to D. melanogaster. Six of the ORs were homologous to a single D. melanogaster OR (DmOr67d) associated with mating deterrence in females. Sweet taste GRs, present in all the other Diptera, were not recovered in G. m. morsitans. The GRs associated with detection of CO2 were conserved in G. m. morsitans relative to D. melanogaster. RNA-sequence data analysis revealed expression of GmmOR15 locus represented over 90% of expression profiles for the ORs. The G. m. morsitans ORs or GRs were phylogenetically closer to those in D. melanogaster than to other insects assessed. We found the chemoreceptor repertoire in G. m. morsitans smaller than other Diptera, and we postulate that this may be related to the restricted diet of blood-meal for both sexes of tsetse flies. However, the clade of some specific receptors has been expanded, indicative of their potential importance in chemoreception in the tsetse.

摘要

采采蝇利用嗅觉和味觉反应,通过气味和味觉受体(OR 和 GR)与环境相互作用。使用黑腹果蝇中的这些基因的同源物以及基于 OR 和 GR 在 G. m. morsitans 基因模型中的特定基序的从头方法注释了 Glossina morsitans morsitans 基因组 OR 和 GR。使用最大似然估计确定了 OR 或 GR 与同源物之间的系统发育关系。使用源自成年雌性苍蝇的 RNA-seq 数据确定了 G. m. morsitans OR 或 GR 之间的相对表达水平。总共回收了 46 个和 14 个假定的 G. m. morsitans OR 和 GR。与黑腹果蝇相比,分别减少了 12 个和 59 个 OR 和 GR。6 个 OR 与一个与雌性交配威慑相关的单个黑腹果蝇 OR(DmOr67d)同源。在所有其他双翅目昆虫中都存在的甜味 GR 在 G. m. morsitans 中未被回收。与 CO2 检测相关的 GR 在 G. m. morsitans 中相对于黑腹果蝇是保守的。RNA 序列数据分析显示,GmmOR15 基因座的表达代表了 OR 表达谱的 90%以上。G. m. morsitans 的 OR 或 GR 与黑腹果蝇的亲缘关系比其他评估的昆虫更近。我们发现 G. m. morsitans 的化学感受器库比其他双翅目昆虫小,我们推测这可能与采采蝇雌雄两性的限制性饮食有关。然而,一些特定受体的进化枝已经扩展,表明它们在采采蝇的化学感受中可能具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20b7/3998910/6b218dd8cae2/pntd.0002663.g001.jpg

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