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遗传同化与无肛鱼类生殖器不对称方向进化的关系。

Genetic assimilation and the evolution of direction of genital asymmetry in anablepid fishes.

机构信息

Department of Biology, Zoology and Evolutionary Biology, University of Konstanz, 78457 Konstanz, Germany.

Unidad Ejecutora Lillo (CONICET), Fundación Miguel Lillo, Tucumán, Argentina.

出版信息

Proc Biol Sci. 2022 May 11;289(1974):20220266. doi: 10.1098/rspb.2022.0266.

DOI:10.1098/rspb.2022.0266
PMID:35538779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9091857/
Abstract

Phylogenetic comparative studies suggest that the direction of deviation from bilateral symmetry (sidedness) might evolve through genetic assimilation; however, the changes in sidedness inheritance remain largely unknown. We investigated the evolution of genital asymmetry in fish of the family Anablepidae, in which males' intromittent organ (the gonopodium, a modified anal fin) bends asymmetrically to the left or the right. In most species, males show a 1 : 1 ratio of left-to-right-sided gonopodia. However, we found that in three species left-sided males are significantly more abundant than right-sided ones. We mapped sidedness onto a new molecular phylogeny, finding that this left-sided bias likely evolved independently three times. Our breeding experiment in a species with an excess of left-sided males showed that sires produced more left-sided offspring independently of their own sidedness. We propose that sidedness might be inherited as a threshold trait, with different thresholds across species. This resolves the apparent paradox that, while there is evidence for the evolution of sidedness, commonly there is a lack of support for its heritability and no response to artificial selection. Focusing on the heritability of the left : right ratio of offspring, rather than on individual sidedness, is key for understanding how the direction of asymmetry becomes genetically assimilated.

摘要

系统发育比较研究表明,从双侧对称性(偏侧性)的偏差方向可能通过遗传同化进化而来;然而,偏侧性遗传的变化在很大程度上仍然未知。我们研究了棘鳍鱼科鱼类生殖器不对称性的进化,其中雄性的交接器官(生殖鳍,一种改良的臀鳍)向左或向右不对称弯曲。在大多数物种中,雄性的生殖鳍左右侧的比例为 1:1。然而,我们发现有三个物种中,左侧雄性明显比右侧雄性更为丰富。我们将偏侧性映射到一个新的分子系统发育树上,发现这种左侧偏好在三次独立进化中都可能进化而来。我们在一个左侧雄性过多的物种中的繁殖实验表明,亲代雄性无论自身的偏侧性如何,都能独立地产生更多的左侧后代。我们提出,偏侧性可能作为一种阈性状遗传,不同物种的阈限不同。这解决了一个明显的悖论,即虽然有证据表明偏侧性的进化,但通常缺乏对其遗传性的支持,也没有对人工选择的响应。关注后代左右比例的遗传性,而不是个体的偏侧性,是理解不对称性的方向如何在遗传上被同化的关键。