The Contribution of Mutation to Variation in Temperature-Dependent Sprint Speed in Zebrafish, Danio rerio.

IF 2.4 2区 环境科学与生态学 Q2 ECOLOGY
American Naturalist Pub Date : 2023-10-01 Epub Date: 2023-08-31 DOI:10.1086/726011
Christina L Miller, Derek Sun, Lauren H Thornton, Katrina McGuigan
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引用次数: 1

Abstract

AbstractThe contribution of new mutations to phenotypic variation and the consequences of this variation for individual fitness are fundamental concepts for understanding genetic variation and adaptation. Here, we investigated how mutation influenced variation in a complex trait in zebrafish, Danio rerio. Typical of many ecologically relevant traits in ectotherms, swimming speed in fish is temperature dependent, with evidence of adaptive evolution of thermal performance. We chemically induced novel germline point mutations in males and measured sprint speed in their sons at six temperatures (between 16°C and 34°C). Heterozygous mutational effects on speed were strongly positively correlated among temperatures, resulting in statistical support for only a single axis of mutational variation, reflecting temperature-independent variation in speed (faster-slower mode). These results suggest pleiotropic effects on speed across different temperatures; however, spurious correlations arise via linkage or heterogeneity in mutation number when mutations have consistent directional effects on each trait. Here, mutation did not change mean speed, indicating no directional bias in mutational effects. The results contribute to emerging evidence that mutations may predominantly have synergistic cross-environment effects, in contrast to conditionally neutral or antagonistic effects that underpin thermal adaptation. We discuss several aspects of experimental design that may affect resolution of mutations with nonsynergistic effects.

突变对斑马鱼温度依赖性冲刺速度变化的贡献。
新突变对表型变异的贡献以及这种变异对个体适应度的影响是理解遗传变异和适应的基本概念。在这里,我们研究了突变如何影响斑马鱼复杂性状的变异。鱼类的游泳速度是外胚层许多生态相关特征的典型特征,与温度有关,有证据表明热性能的适应性进化。我们在雄性中化学诱导了新的种系点突变,并在六个温度(16°C至34°C)下测量了它们儿子的冲刺速度。杂合子对速度的突变效应在温度之间呈强正相关,导致只有一个轴的突变变化得到统计支持,反映了与温度无关的速度变化(更快-更慢模式)。这些结果表明,在不同温度下,速度会受到多效性影响;然而,当突变对每个性状具有一致的方向性影响时,通过突变数量的连锁或异质性会产生虚假的相关性。在这里,突变没有改变平均速度,表明突变效应没有方向性偏差。这些结果有助于新出现的证据表明,突变可能主要具有协同的跨环境效应,而条件中性或拮抗效应则是热适应的基础。我们讨论了实验设计的几个方面,这些方面可能会影响具有非遗传效应的突变的解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
American Naturalist
American Naturalist 环境科学-进化生物学
CiteScore
5.40
自引率
3.40%
发文量
194
审稿时长
3 months
期刊介绍: Since its inception in 1867, The American Naturalist has maintained its position as one of the world''s premier peer-reviewed publications in ecology, evolution, and behavior research. Its goals are to publish articles that are of broad interest to the readership, pose new and significant problems, introduce novel subjects, develop conceptual unification, and change the way people think. AmNat emphasizes sophisticated methodologies and innovative theoretical syntheses—all in an effort to advance the knowledge of organic evolution and other broad biological principles.
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