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寄生蜂丽蝇蛹集金小蜂的昆虫化学感受超家族。

The insect chemoreceptor superfamily of the parasitoid jewel wasp Nasonia vitripennis.

机构信息

Department of Entomology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Insect Mol Biol. 2010 Feb;19 Suppl 1:121-36. doi: 10.1111/j.1365-2583.2009.00979.x.


DOI:10.1111/j.1365-2583.2009.00979.x
PMID:20167023
Abstract

Chemoreception is important for locating food, mates and other resources in many insects, including the parasitoid jewel wasp Nasonia vitripennis. In the insect chemoreceptor superfamily, Nasonia has 58 gustatory receptor (Gr) genes, of which 11 are pseudogenes, leaving 47 apparently intact proteins encoded. No carbon dioxide receptors, two candidate sugar receptors, a DmGr43a orthologue, and several additional Gr lineages were identified, including significant gene subfamily expansions related to the 10 Grs found in the honey bee Apis mellifera. Nasonia has a total of 301 odorant receptor (Or) genes, of which 76 are pseudogenes, leaving 225 apparently intact Ors. Phylogenetic comparison with the 174 honey bee Ors reveals differential gene subfamily expansion in each hymenopteran lineage, along with a few losses from each species. The only simple orthologous relationship is the expected single DmOr83b orthologue. The large number of Nasonia Ors is the result of several major subfamily expansions, including one of 55 genes. Nasonia does not have the elaborate social chemical communication of honey bees, nor the diversity of floral odours honey bees detect, however, Nasonia wasps might need to detect a diversity of odours to find potential mates and hosts or avoid harmful substances in its environment.

摘要

化感作用对于许多昆虫(包括寄生性宝石蜂 Nasonia vitripennis)寻找食物、配偶和其他资源非常重要。在昆虫化感受体超家族中,Nasonia 有 58 个味觉受体 (Gr) 基因,其中 11 个是假基因,留下 47 个明显完整的蛋白质编码。没有二氧化碳受体,两个候选糖受体,一个 DmGr43a 同源物,以及几个额外的 Gr 谱系,包括与在蜜蜂 Apis mellifera 中发现的 10 个 Grs 相关的重要基因亚家族扩张。Nasonia 共有 301 个气味受体 (Or) 基因,其中 76 个是假基因,留下 225 个明显完整的 Ors。与 174 个蜜蜂 Ors 的系统发育比较显示,每个膜翅目谱系都有不同的基因亚家族扩张,同时每个物种都有一些基因丢失。唯一简单的直系同源物是预期的单个 DmOr83b 同源物。Nasonia 大量的 Ors 是由于几个主要的亚家族扩张造成的,其中包括一个由 55 个基因组成的亚家族。Nasonia 没有蜜蜂那样复杂的社会化学通讯,也没有蜜蜂能探测到的各种花香,但 Nasonia 黄蜂可能需要探测多种气味来寻找潜在的配偶和宿主,或者避免其环境中的有害物质。

相似文献

[1]
The insect chemoreceptor superfamily of the parasitoid jewel wasp Nasonia vitripennis.

Insect Mol Biol. 2010-2

[2]
Two novel proteins expressed by the venom glands of Apis mellifera and Nasonia vitripennis share an ancient C1q-like domain.

Insect Mol Biol. 2010-2

[3]
Organization, evolution and transcriptional profile of hexamerin genes of the parasitic wasp Nasonia vitripennis (Hymenoptera: Pteromalidae).

Insect Mol Biol. 2010-2

[4]
The cys-loop ligand-gated ion channel gene superfamily of the parasitoid wasp, Nasonia vitripennis.

Heredity (Edinb). 2010-1-20

[5]
The chemoreceptor superfamily in the honey bee, Apis mellifera: expansion of the odorant, but not gustatory, receptor family.

Genome Res. 2006-11

[6]
The Gr family of candidate gustatory and olfactory receptors in the yellow-fever mosquito Aedes aegypti.

Chem Senses. 2008-1

[7]
The Fruitless gene in Nasonia displays complex sex-specific splicing and contains new zinc finger domains.

Mol Biol Evol. 2009-7

[8]
Function and evolution of a gene family encoding odorant binding-like proteins in a social insect, the honey bee (Apis mellifera).

Genome Res. 2006-11

[9]
The distribution of microsatellites in the Nasonia parasitoid wasp genome.

Insect Mol Biol. 2010-2

[10]
Comparative analysis of nuclear tRNA genes of Nasonia vitripennis and other arthropods, and relationships to codon usage bias.

Insect Mol Biol. 2010-2

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Sci Data. 2025-7-1

[2]
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Proc Biol Sci. 2024-9

[3]
Antennal transcriptome analysis of Psyttalia incisi (silvestri) (Hymenoptera: Braconidae): identification and tissue expression profiling of candidate odorant-binding protein genes.

Mol Biol Rep. 2024-2-23

[4]
Identification of candidate genes associated with host-seeking behavior in the parasitoid wasp Diachasmimorpha longicaudata.

BMC Genomics. 2024-2-6

[5]
Evolution of five environmentally responsive gene families in a pine-feeding sawfly, (Hymenoptera: Diprionidae).

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[6]
Genome assembly of the ectoparasitoid wasp Theocolax elegans.

Sci Data. 2023-3-22

[7]
Identification and Comparative Expression Profiles of Candidate Olfactory Receptors in the Transcriptomes of the Important Egg Parasitoid Wasp Ashmead (Hymenoptera: Eupelmidae).

Plants (Basel). 2023-2-17

[8]
Genome Assembly and Comparative Analysis of the Egg Parasitoid Wasp Shed Light on the Composition and Evolution of Olfactory Receptors and Venoms.

Insects. 2023-1-31

[9]
Transcriptome Analysis and Identification of Chemosensory Genes in (Hymenoptera: Eulophidae).

Insects. 2022-11-29

[10]
Sex pheromone communication in an insect parasitoid, Uchida.

Proc Natl Acad Sci U S A. 2022-12-6

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