Department of Animal Ecology and Ecophysiology, Radboud University, P.O. Box 9010, 6500 GL Nijmegen, the Netherlands.
Department of Biological Sciences, North Carolina State University. Box 7633, Raleigh, NC 27695, USA.
Curr Opin Insect Sci. 2020 Oct;41:46-53. doi: 10.1016/j.cois.2020.06.001. Epub 2020 Jun 19.
Assemblages of aquatic insects are structured by multiple biotic and abiotic conditions, including temperature, salinity and oxygen. Here we highlight recent developments in our understanding of how high temperatures, elevated salinities and low oxygen levels affect physiological processes, responses at the organismal level, and impacts on species interaction and community assembly. As aquatic insects may be exposed to multiple stressors, we review their sensitivity to interactive effects of multiple stressors. While each of these stressors may operate via different physiological mechanisms, they all influence the overall energy budget as well as the allocation of energy to competing functions such as homeostatic maintenance, growth, development and reproduction. As such, there is potential for interaction whereby one stressor may exacerbate the effect of another stressor. Integrating research on these stressors can provide a powerful approach for delineating the sensitivity of aquatic insects to multiple stressors and developing sound management practices.
水生昆虫的组合由多种生物和非生物条件构成,包括温度、盐度和氧气。在这里,我们强调了最近在理解高温、高盐度和低氧水平如何影响生理过程、生物体水平的反应以及对物种相互作用和群落组装的影响方面的进展。由于水生昆虫可能会受到多种胁迫,我们回顾了它们对多种胁迫的交互作用的敏感性。虽然这些胁迫因子可能通过不同的生理机制起作用,但它们都会影响整体能量预算,以及能量在维持体内平衡、生长、发育和繁殖等竞争功能之间的分配。因此,一种胁迫因子可能会加剧另一种胁迫因子的影响,这是存在相互作用的可能性的。整合对这些胁迫因子的研究可以为阐明水生昆虫对多种胁迫因子的敏感性和制定合理的管理实践提供有力的方法。