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鱼类红细胞形状的演变。

The evolution of red blood cell shape in fishes.

机构信息

Graduate Program in Animal Biology, Instituto de Biociências, Universidade Federal de Mato Grosso do Sul, Campo Grande, Brasil.

Instituto de Biociências, Universidade Federal de Mato Grosso do Sul, Campo Grande, Brasil.

出版信息

J Evol Biol. 2021 Mar;34(3):537-548. doi: 10.1111/jeb.13757. Epub 2021 Feb 11.

Abstract

The size and shape of red blood cells (RBCs) provide key information on life-history strategies in vertebrates. However, little is known about how RBC shape evolved in response to environmental factors, body size and the role of evolutionary rate. Here, we analysed RBC morphometrics in a set of Teleostei (bony fishes) and Elasmobranchii (sharks and rays) species testing the hypothesis that phylogenetic relationship explains species occupation of morphospace. We collected data on cell and nucleus area and volume, nucleus:cytoplasm ratio and shape factor for 65 species belonging to 28 orders. Then, we built phylomorphospaces separately for bony fish and sharks and rays. To test whether phylogenetic relationships predicted phenotypic similarity, we calculated multivariate phylogenetic signal. We also estimated the evolutionary rate of RBC shape for each node and tip using ridge regression. Finally, we tested whether habitat and body size influenced RBC shape using a PGLS. We found a significant phylogenetic signal in RBC shape for bony fish, but not sharks and rays. Saltwater teleost species were more clustered than freshwater ones in the phylomorphospace, suggesting clade disparity. Accordingly, the rate of evolution was highly heterogeneous, with significant decrease in Acanthopterygii. Neither habitat nor body size influenced RBC shape. In conclusion, RBC shape seems to have evolved in fishes in response to multiple selective pressures independent of life-history characters.

摘要

红细胞(RBC)的大小和形状为脊椎动物的生活史策略提供了关键信息。然而,对于红细胞形状如何响应环境因素、体型和进化率的作用而进化,人们知之甚少。在这里,我们分析了一组硬骨鱼(骨鱼)和软骨鱼(鲨鱼和鳐鱼)物种的 RBC 形态计量学,检验了这样一个假设,即系统发育关系解释了物种在形态空间中的占据情况。我们收集了属于 28 个目的 65 个物种的细胞和核面积和体积、核/细胞质比和形状因子的数据。然后,我们分别为硬骨鱼和鲨鱼和鳐鱼构建了形态空间。为了测试系统发育关系是否预测表型相似性,我们计算了多变量系统发育信号。我们还使用脊回归估计了每个节点和尖端的 RBC 形状进化率。最后,我们使用 PGLS 测试了栖息地和体型是否影响 RBC 形状。我们发现硬骨鱼的 RBC 形状具有显著的系统发育信号,但鲨鱼和鳐鱼则没有。盐水中的硬骨鱼比淡水中的硬骨鱼在形态空间中更聚集,这表明了分支差异。相应地,进化率高度不均匀,棘鳍鱼类的进化率显著下降。栖息地和体型都没有影响 RBC 形状。总之,红细胞形状似乎是鱼类为了应对多种独立于生活史特征的选择压力而进化的。

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