Facilitating the recovery of insect communities in restored streams by increasing oviposition habitat

IF 4.3 2区 环境科学与生态学 Q1 ECOLOGY
Samantha Dilworth, Brad W. Taylor
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引用次数: 0

Abstract

Recruitment limitation is known to influence species abundances and distributions. Recognition of how and why it occurs both in natural and in designed environments could improve restoration. Aquatic insects, for instance, rarely reestablish in restored streams to levels comparable to reference streams even years after restoration. We experimentally increased oviposition habitat in five out of 10 restored streams in western North Carolina to test whether insect egg-laying habitat was limiting insect populations in restored streams. A main goal was to test whether adding oviposition habitat in the form of rocks that partially protrude above the water surface could be used to increase the abundance and richness of stream insect eggs and larval insects in restored streams. Adding egg-laying habitat enhanced several response variables (e.g., protruding rocks, number of eggs, egg masses, egg morphotype richness, and oviposition habitat stability) to levels similar to those found in reference streams. Following the addition of protruding rocks, egg mass abundance increased by 186% and richness by 77% in restored-treated streams. Densities of larval insects that attached their eggs to protruding rocks showed an overall pattern consistent with treatment effects due to the combination of nonsignificant and significant increases of several taxa and not just one taxon. Our results indicate that these stream insect populations are limited by oviposition habitat and that adding egg-laying habitat alleviated this component of recruitment limitation. However, the weaker larval response indicates that additional post-recruitment factors, such as egg or larval mortality, may still be limiting a full recovery of larval insect abundances in these restored streams. This study shows the importance of integrating information from animal life histories, ecology, and geomorphology into restoration practices to improve the recovery of aquatic insects, which are commonly used to assess water quality and the biological efficacy of stream restoration.

Abstract Image

通过增加产卵栖息地,促进恢复后的溪流中昆虫群落的恢复
众所周知,繁殖限制会影响物种的数量和分布。认识到在自然环境和设计环境中如何以及为什么会出现这种情况,可以改善恢复工作。例如,水生昆虫在恢复后的溪流中很少能重建到与参考溪流相当的水平,即使在恢复后数年也是如此。我们在北卡罗来纳州西部的十条修复溪流中的五条中试验性地增加了产卵栖息地,以测试昆虫产卵栖息地是否限制了修复溪流中的昆虫数量。我们的一个主要目标是测试在恢复后的溪流中,以部分突出水面的岩石形式增加产卵栖息地是否能提高溪流昆虫卵和幼虫的丰度和丰富度。增加产卵栖息地可提高几个响应变量(如突出的岩石、卵的数量、卵块、卵的形态丰富度和产卵栖息地的稳定性),使其达到与参考溪流相似的水平。在添加了突出岩石后,经过修复处理的溪流中的卵块丰度增加了186%,卵的丰富度增加了77%。将卵附着在突出岩石上的幼虫密度显示出与处理效果一致的整体模式,这是因为多个分类群(而不仅仅是一个分类群)的非显著和显著增加相结合。我们的研究结果表明,这些溪流昆虫种群受到产卵栖息地的限制,而增加产卵栖息地则缓解了这部分繁殖限制。然而,幼虫的反应较弱表明,卵或幼虫死亡等其他招募后因素可能仍然限制着这些恢复后的溪流中昆虫幼虫数量的全面恢复。这项研究表明,将动物生活史、生态学和地貌学信息整合到修复实践中对改善水生昆虫的恢复非常重要,这些信息通常用于评估水质和溪流修复的生物功效。
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来源期刊
Ecological Applications
Ecological Applications 环境科学-环境科学
CiteScore
9.50
自引率
2.00%
发文量
268
审稿时长
6 months
期刊介绍: The pages of Ecological Applications are open to research and discussion papers that integrate ecological science and concepts with their application and implications. Of special interest are papers that develop the basic scientific principles on which environmental decision-making should rest, and those that discuss the application of ecological concepts to environmental problem solving, policy, and management. Papers that deal explicitly with policy matters are welcome. Interdisciplinary approaches are encouraged, as are short communications on emerging environmental challenges.
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