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19种鳅科鱼类(硬骨鱼纲,鲤形目)的核型分化:与核糖体DNA和异染色质分布相关的广泛变异性及其系统发育和生态学解释

Karyotype differentiation in 19 species of river loach fishes (Nemacheilidae, Teleostei): extensive variability associated with rDNA and heterochromatin distribution and its phylogenetic and ecological interpretation.

作者信息

Sember Alexandr, Bohlen Jörg, Šlechtová Vendula, Altmanová Marie, Symonová Radka, Ráb Petr

机构信息

Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Rumburská 89, Liběchov, 277 21, Czech Republic.

Department of Genetics and Microbiology, Faculty of Science, Charles University in Prague, Viničná 5, 128 44, Prague 2, Czech Republic.

出版信息

BMC Evol Biol. 2015 Nov 14;15:251. doi: 10.1186/s12862-015-0532-9.

Abstract

BACKGROUND

Loaches of the family Nemacheilidae are one of the most speciose elements of Palearctic freshwater ichthyofauna and have undergone rapid ecological adaptations and colonizations. Their cytotaxonomy is largely unexplored; with the impact of cytogenetical changes on this evolutionary diversification still unknown. An extensive cytogenetical survey was performed in 19 nemacheilid species using both conventional (Giemsa staining, C- banding, Ag- and Chromomycin A3/DAPI stainings) and molecular (fluorescence in situ hybridization with 5S rDNA, 45S rDNA, and telomeric (TTAGGG)n probes) methods. A phylogenetic tree of the analysed specimens was constructed based on one mitochondrial (cytochrome b) and two nuclear (RAG1, IRBP) genes.

RESULTS

Seventeen species showed karyotypes composed of 2n = 50 chromosomes but differentiated by fundamental chromosome number (NF = 68-90). Nemachilichthys ruppelli (2n = 38) and Schistura notostigma (2n = 44-48) displayed reduced 2n with an elevated number of large metacentric chromosomes. Only Schistura fasciolata showed morphologically differentiated sex chromosomes with a multiple system of the XY1Y2 type. Chromomycin A3 (CMA3)- fluorescence revealed interspecific heterogeneity in the distribution of GC-rich heterochromatin including its otherwise very rare association with 5S rDNA sites. The 45S rDNA sites were mostly located on a single chromosome pair contrasting markedly with a pattern of two (Barbatula barbatula, Nemacheilus binotatus, N. ruppelli) to 20 sites (Physoschistura sp.) of 5S rDNA. The cytogenetic changes did not follow the phylogenetic relationships between the samples. A high number of 5S rDNA sites was present in species with small effective population sizes.

CONCLUSION

Despite a prevailing conservatism of 2n, Nemacheilidae exhibited a remarkable cytogenetic variability on microstructural level. We suggest an important role for pericentric inversions, tandem and centric fusions in nemacheilid karyotype differentiation. Short repetitive sequences, genetic drift, founder effect, as well as the involvement of transposable elements in the dispersion of ribosomal DNA sites, might also have played a role in evolutionary processes such as reproductive isolation. These remarkable dynamics of their genomes qualify river loaches as a model for the study of the cytogenetic background of major evolutionary processes such as radiation, endemism and colonization of a wide range of habitats.

摘要

背景

鳅科鱼类是古北界淡水鱼类区系中物种最为丰富的类群之一,经历了快速的生态适应和扩散过程。它们的细胞分类学在很大程度上尚未得到充分研究;细胞遗传学变化对这种进化多样化的影响仍然未知。我们使用传统方法(吉姆萨染色、C带染色、银染和放线菌素A3/4',6-二脒基-2-苯基吲哚染色)和分子方法(用5S rDNA、45S rDNA和端粒(TTAGGG)n探针进行荧光原位杂交),对19种鳅科鱼类进行了广泛的细胞遗传学调查。基于一个线粒体基因(细胞色素b)和两个核基因(RAG1、IRBP)构建了分析样本的系统发育树。

结果

17个物种的核型由2n = 50条染色体组成,但基本染色体数不同(NF = 68 - 90)。鲁氏条鳅(2n = 共38条)和无斑原爬鳅(2n = 44 - 48条)的2n数目减少,大型中着丝粒染色体数目增加。只有斑纹原爬鳅显示出形态上有差异的性染色体,属于XY1Y2型多重系统。放线菌素A3(CMA3)荧光显示富含GC的异染色质分布存在种间异质性,包括其与5S rDNA位点非常罕见的关联。45S rDNA位点大多位于一对染色体上,这与5S rDNA的两个位点(巴氏薄鳅、双斑条鳅、鲁氏条鳅)到20个位点(Physoschistura属物种)的模式形成明显对比。细胞遗传学变化并不遵循样本之间的系统发育关系。有效种群规模较小的物种中存在大量5S rDNA位点。

结论

尽管2n数目普遍保守,但鳅科鱼类在微观结构水平上表现出显著的细胞遗传学变异性。我们认为着丝粒周围倒位、串联融合和着丝粒融合在鳅科鱼类核型分化中起重要作用。短重复序列、遗传漂变、奠基者效应以及转座元件在核糖体DNA位点分散中的参与,可能也在诸如生殖隔离等进化过程中发挥了作用。它们基因组的这些显著动态变化使河鳅成为研究辐射、特有性和广泛栖息地定殖等主要进化过程的细胞遗传学背景的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/760c/4647339/cde6f7512d62/12862_2015_532_Fig1_HTML.jpg

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