Aquatic Contaminants Research Division, Water Science and Technology Directorate, Science and Technology Branch, Environment and Climate Change Canada, Montreal, QC, Canada.
J Helminthol. 2023 Apr 14;97:e34. doi: 10.1017/S0022149X2300010X.
The world's biodiversity is in peril. The major threats to biodiversity globally are habitat change, overexploitation, climate change, invasive species and pollution. Not only do these stressors impact free-living organisms, but they affect parasitic ones as well. Herein, this perspective examines the potential consequences of these anthropogenic perturbations on helminth populations and communities, with emphasis on significant developments over the past decade. Furthermore, several case studies are examined in more detail for each of these threats to biodiversity. While effects are widespread and diverse, for the most part all these environmental stressors have negative effects on parasite populations and communities. Those parasites with complex life cycles that are trophically transmitted are often more at risk, although larval parasites with a wide host spectrum, and directly transmitted ectoparasites, appear less threatened and may even benefit. However, differential effects on hosts and parasites, on parasite life cycle stages and on host-parasite interactions made specific predictions difficult and context-dependent. Experimental laboratory and mesocosm studies on specific parasites that test effects on the different life cycle stages, hosts and host-parasite interactions, permitting the determination of net effects of an environmental stressor, yield insightful and sometimes counterintuitive results, although they remain a simplification of real-world complexity. Recent advances in the use of parasites as bioindicators of effects also are discussed.
世界生物多样性正面临威胁。全球生物多样性的主要威胁包括生境变化、过度开发、气候变化、入侵物种和污染。这些压力不仅影响自由生活的生物,也影响寄生生物。本文从这些人为干扰对寄生虫种群和群落的潜在影响的角度进行了探讨,重点介绍了过去十年的重要发展。此外,还详细研究了每种生物多样性威胁的几个案例研究。尽管影响广泛而多样,但这些环境压力因素大多对寄生虫种群和群落产生负面影响。那些具有复杂营养传播生命周期的寄生虫通常面临更大的风险,尽管具有广泛宿主谱和直接传播的幼虫寄生虫受到的威胁较小,甚至可能受益。然而,宿主和寄生虫、寄生虫生命周期阶段以及宿主-寄生虫相互作用的不同影响使得具体预测变得困难且取决于具体情况。针对特定寄生虫的特定实验室和中观生态系统研究,测试不同生命周期阶段、宿主和宿主-寄生虫相互作用的影响,能够确定环境压力因素的净效应,产生有见地且有时与直觉相悖的结果,尽管它们仍然简化了现实世界的复杂性。本文还讨论了寄生虫作为生物指标在评估影响方面的最新进展。