多重压力因素在淡水系统中重新连接了热带级流和生态系统过程
Claire Duchet1, Helena Švecová2, Vojtech Kolar1
1Department of Ecosystem Biology, Faculty of Science, University of South Bohemia, Branišovská 1760, CZ-37005 České Budějovice, Czech Republic; Institute of Entomology, Biology Centre of the Czech Academy of Sciences, Branišovská 31, CZ-37005 České Budějovice, Czech Republic.
气候变暖和农药混合物相互作用破坏淡水生态系统,改变食物网并减少营养循环等基本功能. 这些综合性压力因素对水生生物和生态系统健康构成重大威胁.
科学领域:
- 环境科学 环境科学
- 生态毒理学 生态毒理学
- 淡水生态学 淡水生态
背景情况:
- 淡水生态系统面临着气候变暖和化学污染带来的越来越大的威胁.
- 这些压力因素的综合生态影响尚未得到充分理解.
研究的目的:
- 研究气候变暖和农药混合物对淡水社区结构和生态系统运作的相互作用影响.
- 评估这些综合性压力因素如何影响季节间的食用相互作用和生态系统过程.
主要方法:
- 进行了一项全因子介质宇宙实验,模拟了冬季和夏季的条件.
- 常见的除草剂和杀菌剂在环境现实的度下与+4°C升温处理一起应用.
- 监测了多个营养水平的反应,包括植物浮游生物,动物浮游生物,捕食昆虫和盆地破坏动物.
主要成果:
- 变暖和农药混合物诱导了复杂的,非添加的生态反应.
- 由于变暖,人们观察到食物网控制的转变 (从上下向下向上).
- 杀虫剂混合物通过改变捕食者-猎物动态引发了食用级联.
- 综合压力因素减少了关键生态系统过程,如营养循环和分解.
- 压力因子路径的季节性差异很明显,冬季的控制是自上而下,夏季是自下而上.
结论:
- 气候变暖改变了杀虫剂对淡水系统的影响的生态路径.
- 目前的环境风险评估不足以解决气候变化和化学污染的综合影响.
- 迫切需要将多重压力动态纳入淡水保护战略.
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