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无性繁殖显然不会提高染色体进化速率:二倍体和三倍体克隆杂交鱼(鲤形目鲤科鮈属硬骨鱼)的核型稳定性

Asexual Reproduction Does Not Apparently Increase the Rate of Chromosomal Evolution: Karyotype Stability in Diploid and Triploid Clonal Hybrid Fish (Cobitis, Cypriniformes, Teleostei).

作者信息

Majtánová Zuzana, Choleva Lukáš, Symonová Radka, Ráb Petr, Kotusz Jan, Pekárik Ladislav, Janko Karel

机构信息

Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, CAS, v.v.i, Liběchov, Czech Republic.

Department of Zoology, Faculty of Science, Charles University in Prague, Prague, Czech Republic.

出版信息

PLoS One. 2016 Jan 25;11(1):e0146872. doi: 10.1371/journal.pone.0146872. eCollection 2016.

Abstract

Interspecific hybridization, polyploidization and transitions from sexuality to asexuality considerably affect organismal genomes. Especially the last mentioned process has been assumed to play a significant role in the initiation of chromosomal rearrangements, causing increased rates of karyotype evolution. We used cytogenetic analysis and molecular dating of cladogenetic events to compare the rate of changes of chromosome morphology and karyotype in asexually and sexually reproducing counterparts in European spined loach fish (Cobitis). We studied metaphases of three sexually reproducing species and their diploid and polyploid hybrid clones of different age of origin. The material includes artificial F1 hybrid strains, representatives of lineage originated in Holocene epoch, and also individuals of an oldest known age to date (roughly 0.37 MYA). Thereafter we applied GISH technique as a marker to differentiate parental chromosomal sets in hybrids. Although the sexual species accumulated remarkable chromosomal rearrangements after their speciation, we observed no differences in chromosome numbers and/or morphology among karyotypes of asexual hybrids. These hybrids possess chromosome sets originating from respective parental species with no cytogenetically detectable recombinations, suggesting their integrity even in a long term. The switch to asexual reproduction thus did not provoke any significant acceleration of the rate of chromosomal evolution in Cobitis. Asexual animals described in other case studies reproduce ameiotically, while Cobitis hybrids described here produce eggs likely through modified meiosis. Therefore, our findings indicate that the effect of asexuality on the rate of chromosomal change may be context-dependent rather than universal and related to particular type of asexual reproduction.

摘要

种间杂交、多倍体化以及从有性生殖到无性生殖的转变会极大地影响生物体的基因组。尤其是最后提到的这个过程,被认为在染色体重排的起始过程中发挥了重要作用,导致核型进化速率增加。我们运用细胞遗传学分析以及分支发生事件的分子定年来比较欧洲棘鳅(Cobitis)有性生殖和无性生殖对应物种的染色体形态和核型变化速率。我们研究了三个有性生殖物种的中期染色体以及它们不同起源年龄的二倍体和多倍体杂交克隆。材料包括人工F1杂交品系、全新世起源谱系的代表,以及迄今已知最古老年龄(约0.37百万年前)的个体。之后我们应用基因组原位杂交(GISH)技术作为标记来区分杂交种中的亲本染色体组。尽管有性生殖物种在物种形成后积累了显著的染色体重排,但我们在无性杂交种的核型中未观察到染色体数目和/或形态的差异。这些杂交种拥有源自各自亲本物种的染色体组,没有细胞遗传学可检测到的重组,这表明它们即使在长期内也保持完整性。因此,向无性生殖的转变并未引发棘鳅染色体进化速率的任何显著加速。其他案例研究中描述的无性动物进行无减数分裂生殖,而这里描述的棘鳅杂交种可能通过改良的减数分裂产生卵子。所以,我们的研究结果表明,无性生殖对染色体变化速率的影响可能取决于具体情况,而非普遍适用,且与特定类型的无性生殖有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0766/4726494/4cdf86a1c6d8/pone.0146872.g001.jpg

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