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Inventory of the cichlid olfactory receptor gene repertoires: identification of olfactory genes with more than one coding exon

机译:丽鱼科鱼嗅觉受体基因库的清单:鉴定具有多个编码外显子的嗅觉基因

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Background To help understand the molecular mechanisms underlying the remarkable phenotypic diversity displayed by cichlids, the genome sequences of O. niloticus, P. nyererei, H. burtoni, N. brichardi and M. zebra were recently determined. Here, we present the contents of the olfactory receptor (OR) repertoires in the genomes of these five fishes. Results We performed an exhaustive TBLASTN search of the five cichlid genomes to identify their OR repertoires as completely as possible. We used as bait a set of ORs described in the literature. The cichlid repertoires thereby extracted contained large numbers of complete genes (O. niloticus 158; H. burtoni 90; M. zebra 102; N. brichardi 69; P. nyererei 88), a small numbers of pseudogenes and many “edge genes” corresponding to incomplete genes located at the ends of contigs. A phylogenetic tree was constructed and showed these repertoires include a large number of families and subfamilies. It also allowed the identification of a large number of OR analogues between cichlids with very high amino-acid identity (≥99%). Nearly 9% of the full-length cichlid OR genes are composed of several coding exons. This is very unusual for vertebrate OR genes. Nevertheless, the evidence is strong, and includes the donor and acceptor splice junction sequences; also, the positions of these genes in the phylogenetic tree indicate that they constitute subfamilies well apart from non-OR G protein-coupled receptor families. Conclusions Cichlid OR repertoires are made up of a larger number of genes and fewer pseudogenes than those in other teleosts except zebrafish. These ORs share all identified properties common to all fish ORs; however, the large number of families and subfamilies, each containing few ORs implies that they have evolved more rapidly. This high level of OR diversity is consistent with the substantial phenotypic diversity that characterizes cichlids.
机译:背景技术为了帮助理解丽鱼科鱼表现出杰出的表型多样性的分子机制,最近确定了尼罗罗非鱼,尼日尔体育,布顿尼,布氏猪笼草和斑马线虫的基因组序列。在这里,我们介绍了这五条鱼的基因组中的嗅觉受体(OR)库的内容。结果我们对五个丽鱼科鱼的基因组进行了详尽的TBLASTN搜索,以尽可能完整地鉴定其OR库。我们用文献中描述的一组OR作为诱饵。由此提取的丽鱼科动物库包含大量完整基因(尼罗罗非鱼158;伯顿尼氏菌90;斑马霉102;尼布里亚迪尼氏菌;尼耶尔体育88),少量假基因和许多对应的“边缘基因”位于重叠群末端的不完整基因。构建了系统发育树,并显示了这些库包含大量的家庭和亚科。它还可以鉴定出具有很高氨基酸同一性(≥99%)的丽鱼科鱼之间的大量OR类似物。全长丽鱼科鱼OR基因的近9%由几个编码外显子组成。这对于脊椎动物OR基因而言非常不寻常。然而,证据确凿,并且包括供体和受体的剪接连接序列。同样,这些基因在系统树中的位置表明它们构成了与非OR G蛋白偶联受体家族相距甚远的亚科。结论与除斑马鱼以外的其他硬骨鱼相比,丽鱼科鱼OR组成谱由更多的基因和更少的假基因组成。这些OR具有所有鱼类OR共有的所有已识别特性;但是,大量的家庭和子家庭,每个家庭都包含几个OR,这意味着它们的发展更加迅速。这种高水平的OR多样性与表征丽鱼科鱼的大量表型多样性是一致的。

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