Stowers Institute for Medical Research, Missouri, Kansas City, USA.
Department of Cell Biology & Physiology, University of Kansas Medical Center, Kansas City, Missouri, USA.
J Exp Zool B Mol Dev Evol. 2024 May;342(3):178-188. doi: 10.1002/jez.b.23238. Epub 2024 Jan 21.
Extreme environmental conditions have profound impacts on shaping the evolutionary trajectory of organisms. Exposure to these conditions elicits stress responses, that can trigger phenotypic changes in novel directions. The Mexican Tetra, Astyanax mexicanus, is an excellent model for understanding evolutionary mechanisms in response to extreme or new environments. This fish species consists of two morphs; the classical surface-dwelling fish and the blind cave-dwellers that inhabit dark and biodiversity-reduced ecosystems. In this review, we explore the specific stressors present in cave environments and examine the diverse adaptive strategies employed by cave populations to not only survive but thrive as successful colonizers. By analyzing the evolutionary responses of A. mexicanus, we gain valuable insights into the genetic, physiological, and behavioral adaptations that enable organisms to flourish under challenging environmental conditions.
极端环境条件对塑造生物的进化轨迹有着深远的影响。暴露在这些条件下会引发应激反应,从而促使生物体朝着新的方向产生表型变化。墨西哥脂鲤(Astyanax mexicanus)是一个极好的模型,可用于理解生物体对极端或新环境的进化机制。这种鱼类有两种形态;经典的水面栖息鱼类和生活在黑暗且生物多样性减少的生态系统中的盲眼洞穴栖居鱼类。在这篇综述中,我们探讨了洞穴环境中存在的特定胁迫因子,并研究了洞穴种群所采用的各种适应性策略,这些策略不仅使它们得以生存,而且还能成功地作为殖民者繁衍生息。通过分析墨西哥脂鲤的进化反应,我们深入了解了使生物体能够在具有挑战性的环境条件下茁壮成长的遗传、生理和行为适应性。