Suppr超能文献

裂体生殖涡虫(Dugesia,扁形动物门)具有兼性性别,其个体内遗传多样性突出。

Outstanding intraindividual genetic diversity in fissiparous planarians (Dugesia, Platyhelminthes) with facultative sex.

机构信息

Department de Genètica, Microbiologia i Estadística, Facultat de Biologia, Universitat de Barcelona, and Institut de Recerca de la Biodiversitat (IRBio), Barcelona, Catalonia, Spain.

Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.

出版信息

BMC Evol Biol. 2019 Jun 20;19(1):130. doi: 10.1186/s12862-019-1440-1.

Abstract

BACKGROUND

Predicted genetic consequences of asexuality include high intraindividual genetic diversity (i.e., the Meselson effect) and accumulation of deleterious mutations (i.e., Muller's Ratchet), among others. These consequences have been largely studied in parthenogenetic organisms, but studies on fissiparous species are scarce. Differing from parthenogens, fissiparous organisms inherit part of the soma of the progenitor, including somatic mutations. Thus, in the long term, fissiparous reproduction may also result in genetic mosaicism, besides the presence of the Meselson effect and Muller's Ratchet. Dugesiidae planarians show outstanding regeneration capabilities, allowing them to naturally reproduce by fission, either strictly or combined with sex (facultative). Therefore, they are an ideal model to analyze the genetic footprint of fissiparous reproduction, both when it is alternated with sex and when it is the only mode of reproduction.

RESULTS

In the present study, we generate and analyze intraindividual cloned data of a nuclear and a mitochondrial gene of sexual, fissiparous and facultative wild populations of the species Dugesia subtentaculata. We find that most individuals, independently of their reproductive strategy, are mosaics. However, the intraindividual haplotype and nucleotide diversity of fissiparous and facultative individuals is significantly higher than in sexual individuals, with no signs of Muller's Ratchet. Finally, we also find that this high intraindividual genetic diversity of fissiparous and facultative individuals is composed by different combinations of ancestral and derived haplotypes of the species.

CONCLUSIONS

The intraindividual analyses of genetic diversity point out that fissiparous reproduction leaves a very special genetic footprint in individuals, characterized by mosaicism combined with the Meselson effect (named in the present study as the mosaic Meselson effect). Interestingly, the different intraindividual combinations of ancestral and derivate genetic diversity indicate that haplotypes generated during periods of fissiparous reproduction can be also transmitted to the progeny through sexual events, resulting in offspring showing a wide range of genetic diversity and putatively allowing purifying selection to act at both intraindividual and individual level. Further investigations, using Dugesia planarians as model organisms, would be of great value to delve into this new model of genetic evolution by the combination of fission and sex.

摘要

背景

无性生殖的预测遗传后果包括个体内遗传多样性高(即梅塞尔效应)和有害突变积累(即穆勒棘轮)等。这些后果在孤雌生殖生物中得到了广泛研究,但裂殖物种的研究很少。与孤雌生殖生物不同,裂殖生物遗传了一部分亲代的体细胞,包括体细胞突变。因此,从长远来看,裂殖生殖除了存在梅塞尔效应和穆勒棘轮外,还可能导致遗传镶嵌现象。Dugesiidae 涡虫表现出出色的再生能力,允许它们通过分裂自然繁殖,要么严格分裂,要么与性(兼性)结合分裂。因此,它们是分析裂殖生殖遗传痕迹的理想模型,无论是与性交替发生,还是作为唯一的繁殖方式。

结果

在本研究中,我们生成并分析了性生殖、裂殖生殖和兼性野生种群的一种核基因和一种线粒体基因的个体内克隆数据。我们发现,大多数个体,无论其繁殖策略如何,都是嵌合体。然而,裂殖生殖和兼性个体的个体内单倍型和核苷酸多样性显著高于有性个体,没有穆勒棘轮的迹象。最后,我们还发现,裂殖生殖和兼性个体的这种高个体内遗传多样性是由该物种的祖先和衍生单倍型的不同组合构成的。

结论

遗传多样性的个体内分析指出,裂殖生殖在个体中留下了非常特殊的遗传痕迹,其特征是镶嵌现象与梅塞尔效应相结合(在本研究中称为镶嵌梅塞尔效应)。有趣的是,祖先和衍生遗传多样性的不同个体内组合表明,裂殖生殖期间产生的单倍型也可以通过有性事件传递给后代,导致后代表现出广泛的遗传多样性,并推测允许纯化选择在个体和个体水平上发挥作用。进一步的研究,使用 Dugesia 涡虫作为模型生物,将有助于深入研究这种通过裂殖和性相结合的新遗传进化模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4568/6587288/637564b7e157/12862_2019_1440_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验