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沟纹蚶(双壳纲,帘蛤科)的完整线粒体基因组。

The complete mitochondrial genome of the grooved carpet shell, (Bivalvia, Veneridae).

作者信息

Ghiselli Fabrizio, Milani Liliana, Iannello Mariangela, Procopio Emanuele, Chang Peter L, Nuzhdin Sergey V, Passamonti Marco

机构信息

Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy, Bologna, Italy.

Department of Biological Sciences, Program in Molecular and Computational Biology, University of Southern California, Los Angeles, CA, USA.

出版信息

PeerJ. 2017 Aug 22;5:e3692. doi: 10.7717/peerj.3692. eCollection 2017.

Abstract

Despite the large number of animal complete mitochondrial genomes currently available in public databases, knowledge about mitochondrial genomics in invertebrates is uneven. This paper reports, for the first time, the complete mitochondrial genome of the grooved carpet shell, , also known as the European clam. is morphologically and ecologically similar to the Manila clam , which has been recently introduced for aquaculture in the very same habitats of , and that is replacing the native species. Currently the production of the European clam is almost insignificant, nonetheless it is considered a high value product, and therefore it is an economically important species, especially in Portugal, Spain and Italy. In this work we: (i) assembled mitochondrial genome from RNA-Seq data, and validated it by Sanger sequencing; (ii) analyzed and characterized the mitochondrial genome, comparing its features with those of other venerid bivalves; (iii) assessed mitochondrial sequence polymorphism (SP) and copy number variation (CNV) of tandem repeats across 26 samples. Despite using high-throughput approaches we did not find evidence for the presence of two sex-linked mitochondrial genomes, typical of the doubly uniparental inheritance of mitochondria, a phenomenon known in ∼100 bivalve species. According to our analyses, is more genetically similar to species of the Genus Paphia than to the congeneric , a finding that bolsters the already-proposed need of a taxonomic revision. We also found a quite low genetic variability across the examined samples, with few SPs and little variability of the sequences flanking the control region (Largest Unassigned Regions (LURs). Strikingly, although we found low nucleotide variability along the entire mitochondrial genome, we observed high levels of length polymorphism in the LUR due to CNV of tandem repeats, and even a LUR length heteroplasmy in two samples. It is not clear if the lack of genetic variability in the mitochondrial genome of is a cause or an effect of the ongoing replacement of with the invasive , and more analyses, especially on nuclear sequences, are required to assess this point.

摘要

尽管目前公共数据库中已有大量动物的完整线粒体基因组,但有关无脊椎动物线粒体基因组学的知识并不均衡。本文首次报道了细纹蚶(也称为欧洲蛤)的完整线粒体基因组。细纹蚶在形态和生态上与菲律宾蛤仔相似,菲律宾蛤仔最近已被引入到细纹蚶所在的相同栖息地进行水产养殖,并且正在取代本地物种。目前欧洲蛤的产量几乎微不足道,但它被认为是一种高价值产品,因此是一个具有重要经济意义的物种,尤其是在葡萄牙、西班牙和意大利。在这项工作中,我们:(i)从RNA测序数据中组装了细纹蚶的线粒体基因组,并通过桑格测序进行了验证;(ii)分析并表征了细纹蚶的线粒体基因组,将其特征与其他帘蛤科双壳类动物的特征进行了比较;(iii)评估了26个样本中串联重复序列的线粒体序列多态性(SP)和拷贝数变异(CNV)。尽管使用了高通量方法,但我们没有发现存在两个与性别相关的线粒体基因组的证据,这种现象在约100种双壳类物种中存在,是线粒体双亲遗传的典型特征。根据我们的分析,细纹蚶与巴非蛤属物种在遗传上比与同属的菲律宾蛤仔更相似,这一发现支持了已提出的进行分类修订的必要性。我们还发现,在所检测的样本中遗传变异性相当低,SP很少,控制区侧翼序列(最大未分配区域(LUR))的变异性也很小。令人惊讶地是,尽管我们发现整个线粒体基因组的核苷酸变异性较低,但由于串联重复序列的CNV,我们在LUR中观察到了高水平的长度多态性,甚至在两个样本中发现了LUR长度异质性。目前尚不清楚细纹蚶线粒体基因组中缺乏遗传变异性是其被入侵的菲律宾蛤仔取代这一过程的原因还是结果,需要更多分析,尤其是对核序列的分析,来评估这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6dc/5571815/c516bfd7bfcf/peerj-05-3692-g001.jpg

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