慈鲷进化辐射的遗传变异与杂交。

IF 8.7 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Annual Review of Animal Biosciences Pub Date : 2021-02-16 Epub Date: 2020-11-16 DOI:10.1146/annurev-animal-061220-023129
Hannes Svardal, Walter Salzburger, Milan Malinsky
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引用次数: 18

摘要

进化辐射是导致不同分类群生物多样性变化的主要原因。慈鲷以其惊人的进化辐射而闻名,因为它们已经反复进化成大型和表型多样化的物种阵列。慈鲷基因组携带着过去事件的特征,同时也是正在进行的进化的基础。我们调查了438个慈鲷种群(412种)的全基因组数据和现有文献,以综合有关遗传变异模式和共享的信息。慈鲷的物种内核苷酸多样性较低,92%的被调查种群的多样性低于其他脊椎动物的中位数。辐射内的差异也很低,由于不完整的谱系分类和广泛的杂交,很大比例的变异在物种之间共享。因此,群体遗传学为慈鲷辐射的进化基因组研究提供了一个合适的概念框架。我们将详细讨论杂交在塑造遗传变异模式和促进慈鲷多样化中的作用。
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Genetic Variation and Hybridization in Evolutionary Radiations of Cichlid Fishes.

Evolutionary radiations are responsible for much of the variation in biodiversity across taxa. Cichlid fishes are well known for spectacular evolutionary radiations, as they have repeatedly evolved into large and phenotypically diverse arrays of species. Cichlid genomes carry signatures of past events and, at the same time, are the substrate for ongoing evolution. We survey genome-wide data and the available literature covering 438 cichlid populations (412 species) across multiple radiations to synthesize information about patterns and sharing of genetic variation. Nucleotide diversity within species is low in cichlids, with 92% of surveyed populations having less diversity than the median value found in other vertebrates. Divergence within radiations is also low, and a large proportion of variation is shared among species due to incomplete lineage sorting and widespread hybridization. Population genetics therefore provides a suitable conceptual framework for evolutionary genomic studies of cichlid radiations. We focus in detail on the roles of hybridization in shaping the patterns of genetic variation and in promoting cichlid diversification.

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来源期刊
Annual Review of Animal Biosciences
Annual Review of Animal Biosciences BIOTECHNOLOGY & APPLIED MICROBIOLOGY-ZOOLOGY
CiteScore
21.30
自引率
0.80%
发文量
31
期刊介绍: The Annual Review of Animal Biosciences is primarily dedicated to the fields of biotechnology, genetics, genomics, and breeding, with a special focus on veterinary medicine. This includes veterinary pathobiology, infectious diseases and vaccine development, and conservation and zoo biology. The publication aims to address the needs of scientists studying both wild and domesticated animal species, veterinarians, conservation biologists, and geneticists.
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