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贻贝属(双壳纲:贻贝科)性别相关线粒体DNA中一个线粒体开放阅读框的特征分析:“缺失”的ATPase 8基因的鉴定

Characterization of a mitochondrial ORF from the gender-associated mtDNAs of Mytilus spp. (Bivalvia: Mytilidae): identification of the "missing" ATPase 8 gene.

作者信息

Breton Sophie, Stewart Donald T, Hoeh Walter R

机构信息

Department of Biological Sciences, Kent State University, OH 44240 USA.

出版信息

Mar Genomics. 2010 Mar;3(1):11-8. doi: 10.1016/j.margen.2010.01.001. Epub 2010 Feb 2.

Abstract

Bivalve species are characterized by extraordinary variability in terms of mitochondrial (mt) genome size, gene arrangement and tRNA gene number. Many species are thought to lack the mitochondrial protein-coding gene atp8. Of these species, the Mytilidae appears to be the only known taxon with doubly uniparental inheritance of mtDNA that does not possess the atp8 gene. This raises the question as to whether mytilids have completely lost the ATP8 protein, whether the gene has been transferred to the nucleus or whether they possess a highly modified version of the gene/protein that has led to its lack of annotation. In the present study, we re-investigated all complete (or nearly complete) F and M mytilid mt genomes previously sequenced for the presence of conserved open reading frames (ORFs) that might code for ATP8 and/or have other functional importance in these bivalves. We also revised the annotations of all available complete mitochondrial genomes of bivalves and nematodes that are thought to lack atp8 in an attempt to detect it. Our results indicate that a novel mytilid ORF of significant length (i.e., the ORF is >85 amino acids in length), with complete start and stop codons, is a candidate for the atp8 gene: (1) it possesses a pattern of evolution expected for a protein-coding gene evolving under purifying selection (i.e., the 3rd>1st>2nd codon pattern of evolution), (2) it is actively transcribed in Mytilus species, (3) it has one predicted transmembrane helix (as do other metazoan ATP8 proteins), (4) it has conserved functional motifs and (5), comparisons of its amino acid sequence with ATP8 sequences of other molluscan or bivalve species reveal similar hydropathy profiles. Furthermore, our revised annotations also confirmed the mt presence of atp8 in almost all bivalve species and in one nematode species. Our results thus support recognizing the presence of ATPase 8 in most bivalves mt genomes (if not all) rather than the continued characterization of these genomes as lacking this gene.

摘要

双壳贝类物种的特点是线粒体(mt)基因组大小、基因排列和tRNA基因数量存在极大的变异性。许多物种被认为缺乏线粒体蛋白质编码基因atp8。在这些物种中,贻贝科似乎是唯一已知的具有线粒体DNA单亲双系遗传且不拥有atp8基因的分类群。这就引发了一个问题,即贻贝科是否完全失去了ATP8蛋白,该基因是否已转移到细胞核中,或者它们是否拥有该基因/蛋白质的高度修饰版本,导致其无法被注释。在本研究中,我们重新调查了所有先前测序的完整(或近乎完整)的贻贝科F型和M型线粒体基因组,以寻找可能编码ATP8以及在这些双壳贝类中具有其他功能重要性的保守开放阅读框(ORF)。我们还修订了所有已知的被认为缺乏atp8的双壳贝类和线虫的完整线粒体基因组注释,试图检测到该基因。我们的结果表明,一个长度可观的新型贻贝科ORF(即该ORF长度>85个氨基酸),具有完整的起始和终止密码子,是atp8基因的候选者:(1)它具有在纯化选择下进化的蛋白质编码基因所预期的进化模式(即密码子进化模式为第3位>第1位>第2位),(2)它在贻贝物种中被积极转录,(3)它有一个预测的跨膜螺旋(其他后生动物ATP8蛋白也如此),(4)它具有保守的功能基序,(5)将其氨基酸序列与其他软体动物或双壳贝类物种的ATP8序列进行比较,发现其具有相似的亲水性图谱。此外,我们修订后的注释还证实了几乎所有双壳贝类物种和一个线虫物种的线粒体中存在atp8。因此,我们的结果支持在大多数(如果不是全部)双壳贝类线粒体基因组中识别ATPase 8的存在,而不是继续将这些基因组描述为缺乏该基因。

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