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慈鲷鱼类大规模适应性辐射的驱动力和动态。

Drivers and dynamics of a massive adaptive radiation in cichlid fishes.

机构信息

Zoological Institute, Department of Environmental Sciences, University of Basel, Basel, Switzerland.

Palaeontological Institute and Museum, University of Zurich, Zurich, Switzerland.

出版信息

Nature. 2021 Jan;589(7840):76-81. doi: 10.1038/s41586-020-2930-4. Epub 2020 Nov 18.

DOI:10.1038/s41586-020-2930-4
PMID:33208944
Abstract

Adaptive radiation is the likely source of much of the ecological and morphological diversity of life. How adaptive radiations proceed and what determines their extent remains unclear in most cases. Here we report the in-depth examination of the spectacular adaptive radiation of cichlid fishes in Lake Tanganyika. On the basis of whole-genome phylogenetic analyses, multivariate morphological measurements of three ecologically relevant trait complexes (body shape, upper oral jaw morphology and lower pharyngeal jaw shape), scoring of pigmentation patterns and approximations of the ecology of nearly all of the approximately 240 cichlid species endemic to Lake Tanganyika, we show that the radiation occurred within the confines of the lake and that morphological diversification proceeded in consecutive trait-specific pulses of rapid morphospace expansion. We provide empirical support for two theoretical predictions of how adaptive radiations proceed, the 'early-burst' scenario (for body shape) and the stages model (for all traits investigated). Through the analysis of two genomes per species and by taking advantage of the uneven distribution of species in subclades of the radiation, we further show that species richness scales positively with per-individual heterozygosity, but is not correlated with transposable element content, number of gene duplications or genome-wide levels of selection in coding sequences.

摘要

适应辐射是生命生态和形态多样性的主要来源。大多数情况下,适应辐射的过程以及决定其范围的因素仍不清楚。本文报道了坦噶尼喀湖慈鲷鱼类的深入研究,这是一次壮观的适应性辐射。基于全基因组系统发育分析、三个生态相关性状复合体(体型、上颚形态和下咽颚形状)的多维形态测量、色素模式评分以及对近 240 种特有于坦噶尼喀湖的慈鲷物种的生态近似值,我们表明辐射发生在湖泊范围内,形态多样化以前所未有的形态空间扩张为特征,在特定性状的快速扩张脉冲中进行。我们为适应辐射的两种理论预测提供了经验支持,即“早期爆发”情景(针对体型)和阶段模型(针对所有调查性状)。通过对每个物种的两个基因组进行分析,并利用辐射子群中物种的不均匀分布,我们进一步表明,物种丰富度与个体杂合度呈正相关,但与转座元件含量、基因重复数或编码序列中全基因组选择水平无关。

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本文引用的文献

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BMC Evol Biol. 2019 Apr 25;19(1):94. doi: 10.1186/s12862-019-1417-0.
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BEAST 2.5: An advanced software platform for Bayesian evolutionary analysis.BEAST 2.5:一个用于贝叶斯进化分析的高级软件平台。
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Repeated Evolution Versus Common Ancestry: Sex Chromosome Evolution in the Haplochromine Cichlid Pseudocrenilabrus philander.
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