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补贴质量影响常见的河岸织网蜘蛛:水生污染和食物资源的后果。

Subsidy Quality Affects Common Riparian Web-Building Spiders: Consequences of Aquatic Contamination and Food Resource.

机构信息

iES Landau, Institute for Environmental Sciences, RPTU Kaiserslautern-Landau, Landau, Germany.

Zubrod Environmental Data Science, Landau, Germany.

出版信息

Environ Toxicol Chem. 2023 Jun;42(6):1346-1358. doi: 10.1002/etc.5614. Epub 2023 Apr 17.

Abstract

Anthropogenic stressors can affect the emergence of aquatic insects. These insects link aquatic and adjacent terrestrial food webs, serving as high-quality subsidy to terrestrial consumers, such as spiders. While previous studies have demonstrated that changes in the emergence biomass and timing may propagate across ecosystem boundaries, the physiological consequences of altered subsidy quality for spiders are largely unknown. We used a model food chain to study the potential effects of subsidy quality: Tetragnatha spp. were exclusively fed with emergent Chironomus riparius cultured in the absence or presence of either copper (Cu), Bacillus thuringiensis var. israelensis (Bti), or a mixture of synthetic pesticides paired with two basal resources (Spirulina vs. TetraMin®) of differing quality in terms of fatty acid (FA) composition. Basal resources shaped the FA profile of chironomids, whereas their effect on the FA profile of spiders decreased, presumably due to the capacity of both chironomids and spiders to modify (dietary) FA. In contrast, aquatic contaminants had negligible effects on prey FA profiles but reduced the content of physiologically important polyunsaturated FAs, such as 20:4n-6 (arachidonic acid) and 20:5n-3 (eicosapentaenoic acid), in spiders by approximately 30% in Cu and Bti treatments. This may have contributed to the statistically significant decline (40%-50%) in spider growth. The observed effects in spiders are likely related to prey nutritional quality because biomass consumption by spiders was, because of our experimental design, constant. Analyses of additional parameters that describe the nutritional quality for consumers such as proteins, carbohydrates, and the retention of contaminants may shed further light on the underlying mechanisms. Our results highlight that aquatic contaminants can affect the physiology of riparian spiders, likely by altering subsidy quality, with potential implications for terrestrial food webs. Environ Toxicol Chem 2023;42:1346-1358. © 2023 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

人为压力源会影响水生昆虫的出现。这些昆虫连接水生和相邻的陆地食物网,作为陆地消费者(如蜘蛛)的高质量补贴。虽然之前的研究表明,出现生物量和时间的变化可能会在生态系统边界上传播,但改变补贴质量对蜘蛛的生理后果在很大程度上是未知的。我们使用了一个模型食物链来研究补贴质量的潜在影响: Tetragnatha spp. 专门以在不存在或存在铜(Cu)、苏云金芽孢杆菌 var. israelensis(Bti)或与两种基础资源(螺旋藻与 TetraMin®)配对的合成农药混合物的情况下培养的 Chironomus riparius 为食,这两种基础资源在脂肪酸(FA)组成方面塑造了摇蚊的 FA 谱,而它们对蜘蛛 FA 谱的影响降低,大概是由于摇蚊和蜘蛛都有能力改变(饮食)FA。相比之下,水生污染物对猎物 FA 谱几乎没有影响,但会降低生理上重要的多不饱和 FA 的含量,如 20:4n-6(花生四烯酸)和 20:5n-3(二十碳五烯酸),在 Cu 和 Bti 处理中,蜘蛛中的含量减少了约 30%。这可能导致蜘蛛生长出现统计学上显著的下降(40%-50%)。在蜘蛛中观察到的影响可能与猎物的营养质量有关,因为根据我们的实验设计,蜘蛛对生物量的消耗是恒定的。分析描述消费者(如蛋白质、碳水化合物)的营养质量的其他参数以及污染物的保留情况,可能会进一步阐明潜在的机制。我们的结果强调,水生污染物会影响河岸蜘蛛的生理学,可能是通过改变补贴质量,从而对陆地食物网产生潜在影响。Environ Toxicol Chem 2023;42:1346-1358。© 2023 作者。环境毒理化学由 Wiley Periodicals LLC 代表 SETAC 出版。

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