Fish life-history traits predict abundance-occupancy patterns in artificial lakes

L. E. Miranda
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Abstract

Life-history traits of a species have been postulated as a factor in abundance and occupancy patterns. Understanding how traits contribute to the ubiquity and rarity of taxa can facilitate the development of effective conservation policy by establishing a connection between species requirements and resource. The goal was to evaluate fish assemblages in artificial lakes for evidence of the abundance-occupancy patterns reported in natural environments and, if evident, to explore if observed patterns of abundance and occupancy could be attributed to species traits. Fish abundance and occupancy were estimated over 1990–2018 in 22 artificial lakes impounded within the Tennessee River basin, USA. Consistent with reports for many other taxonomic groups in natural environments, there was a positive association amidst 114 fish species between abundance and occupancy in artificial lakes ( R 2 = 0.78). This result indicates that the fish assemblages that develop in these anthropized environments follow the fundamental abundance-occupancy patterns uncovered in natural environments, despite assemblages having been disfigured by the dramatic rearrangement of habitats brought by impoundment. Moreover, a redundancy analysis focusing mostly on reproductive and habitat traits adequately predicted abundance-occupancy patterns of fish assemblages in artificial lakes ( R 2 = 0.69). Species abundance-occupancy is influenced by the interplay between life-history traits and habitat availability, even in artificial lakes, and by extension, possibly other artificial ecosystems.
鱼类生活史特征预测人工湖的丰度-占用模式
一个物种的生活史特征被假定为丰度和占用模式的一个因素。了解性状对分类群的普遍性和稀有性的影响,有助于建立物种需求与资源之间的联系,从而制定有效的保护政策。目的是评估人工湖中的鱼类组合,以寻找在自然环境中报告的丰度-占用模式的证据,如果明显,则探索观察到的丰度和占用模式是否可归因于物种特征。对美国田纳西河流域22个人工湖在1990-2018年间的鱼类丰度和占用率进行了估计。与自然环境中其他分类类群的报道一致,114种鱼类的丰度与人工湖的占用率呈正相关(r2 = 0.78)。这一结果表明,在这些人类环境中发展的鱼类群落遵循了在自然环境中发现的基本丰度-占用模式,尽管由于蓄水带来的栖息地的急剧重新排列,这些群落已经被破坏了。此外,主要关注繁殖和生境特征的冗余分析可以充分预测人工湖鱼类群落的丰度-占用模式(r2 = 0.69)。物种丰度-占用率受到生活史特征和栖息地可用性之间的相互作用的影响,即使在人工湖中也是如此,甚至可能在其他人工生态系统中也是如此。
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