Suppr超能文献

杀虫剂对两种蝌蚪物种尽管存在优先效应,但仍有不对称的影响。

Insecticide has asymmetric effects on two tadpole species despite priority effects.

机构信息

Department of Zoology, Miami University, 212 Pearson Hall, Oxford, OH 45056, USA.

出版信息

Ecotoxicology. 2011 Jun;20(4):875-84. doi: 10.1007/s10646-011-0651-z. Epub 2011 Mar 23.

Abstract

Priority effects are defined as asymmetric responses of different species colonizing the same habitat in different sequences and are important in structuring communities, particularly for ephemeral systems that are colonized annually. Amphibians often use ephemeral ponds and have been shown to experience priority effects from interspecific competition. Pesticide exposure can impact amphibian species interactions like competition, and has been linked to declines. We investigated whether insecticide exposure interacted with colonization history to impact priority effects in Bufo americanus and Rana pipiens. We predicted that exposure to the insecticide carbaryl and colonization history would affect tadpole metamorphosis independently and interactively. Our results indicated that Bufo time to metamorphosis experienced priority effects: Bufo introduced early reached metamorphosis sooner when Rana were absent, but Bufo introduced late reached metamorphosis sooner when Rana were also late. Insecticide exposure eliminated differences in Bufo time to metamorphosis due to Rana colonization history. Rana survival and mass at metamorphosis were affected by intraspecific colonization history. Bufo had significantly fewer survivors and Rana had more survivors in insecticide-exposed treatments. Bufo did better when reared without Rana, but Rana was unaffected by Bufo presence. The effects on anuran metamorphosis occurred without any effects on periphyton abundance. We suggest that the effects of insecticide exposure on amphibian metamorphosis are not related to colonization history, although each factor alone can have substantial impacts. These results preliminarily suggest that managing pesticide applications with sensitivity to amphibians may be less complex than implied by traditional food web theory, although more research is needed.

摘要

优先效应是指不同物种在不同序列中殖民同一栖息地时的不对称反应,对群落结构很重要,特别是对每年被殖民的短暂系统。两栖动物经常使用短暂的池塘,并且已经证明它们受到种间竞争的优先效应的影响。杀虫剂暴露会影响像竞争这样的两栖动物种间相互作用,并且与下降有关。我们调查了杀虫剂暴露是否与殖民历史相互作用,以影响 Bufo americanus 和 Rana pipiens 的优先效应。我们预测,接触杀虫剂carbaryl 和殖民历史将独立和交互地影响蝌蚪变态。我们的结果表明,Bufo 的变态时间受到优先效应的影响:当 Rana 不存在时,早期引入的 Bufo 达到变态的时间更早,但当 Rana 也迟到时,晚期引入的 Bufo 达到变态的时间更早。杀虫剂暴露消除了 Rana 殖民历史对 Bufo 变态时间的差异。Rana 的存活和变态时的质量受到种内殖民历史的影响。在杀虫剂处理中,Bufo 的存活率显著降低,而 Rana 的存活率更高。当没有 Rana 饲养 Bufo 时,Bufo 表现更好,但 Rana 不受 Bufo 存在的影响。这些对两栖动物变态的影响没有对周丛生物丰度产生任何影响。我们认为,杀虫剂暴露对两栖动物变态的影响与殖民历史无关,尽管每个因素本身都可能产生重大影响。这些结果初步表明,管理农药应用对两栖动物的敏感性可能比传统食物网理论所暗示的要简单,尽管还需要更多的研究。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验