Suppr超能文献

沙漠蟋蟀迁徙多态性的实验室进化:生理学与数量遗传学的结合

Laboratory evolution of the migratory polymorphism in the sand cricket: combining physiology with quantitative genetics.

作者信息

Roff Derek A, Fairbairn Daphne J

机构信息

Department of Biology, University of California, 900 University Avenue, Riverside, California 92507, USA.

出版信息

Physiol Biochem Zool. 2007 Jul-Aug;80(4):358-69. doi: 10.1086/518012. Epub 2007 Apr 30.

Abstract

Predicting evolutionary change is the central goal of evolutionary biology because it is the primary means by which we can test evolutionary hypotheses. In this article, we analyze the pattern of evolutionary change in a laboratory population of the wing-dimorphic sand cricket Gryllus firmus resulting from relaxation of selection favoring the migratory (long-winged) morph. Based on a well-characterized trade-off between fecundity and flight capability, we predict that evolution in the laboratory environment should result in a reduction in the proportion of long-winged morphs. We also predict increased fecundity and reduced functionality and weight of the major flight muscles in long-winged females but little change in short-winged (flightless) females. Based on quantitative genetic theory, we predict that the regression equation describing the trade-off between ovary weight and weight of the major flight muscles will show a change in its intercept but not in its slope. Comparisons across generations verify all of these predictions. Further, using values of genetic parameters estimated from previous studies, we show that a quantitative genetic simulation model can account for not only the qualitative changes but also the evolutionary trajectory. These results demonstrate the power of combining quantitative genetic and physiological approaches for understanding the evolution of complex traits.

摘要

预测进化变化是进化生物学的核心目标,因为这是我们检验进化假说的主要手段。在本文中,我们分析了在实验室环境下,由于有利于迁移型(长翅型)形态的选择放松,导致翅二型的沙地蟋蟀(Gryllus firmus)种群的进化变化模式。基于繁殖力与飞行能力之间已明确的权衡关系,我们预测在实验室环境中的进化应导致长翅型形态的比例降低。我们还预测长翅型雌性的繁殖力会增加,主要飞行肌肉的功能和重量会降低,而短翅型(无飞行能力)雌性的变化则很小。基于数量遗传学理论,我们预测描述卵巢重量与主要飞行肌肉重量之间权衡关系的回归方程将显示其截距发生变化,但斜率不变。跨代比较验证了所有这些预测。此外,利用先前研究估计的遗传参数值,我们表明数量遗传模拟模型不仅可以解释定性变化,还可以解释进化轨迹。这些结果证明了将数量遗传学和生理学方法相结合来理解复杂性状进化的强大力量。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验