旧金山河口上游近岸鱼类组合的区域多样性趋势

Q3 Agricultural and Biological Sciences San Francisco Estuary and Watershed Science Pub Date : 2024-06-11 DOI:10.15447/sfews.2024v22iss2art4
Ryan McKenzie, Christian Gredzens, B. Mahardja
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引用次数: 0

摘要

由于物种入侵、栖息地退化和气候变化的影响,生物多样性丧失和生物同质化在全球生态系统中呈上升趋势。在萨克拉门托-圣华金三角洲,非本地物种在鱼类群落中占大多数,本地物种的减少也有据可查;然而,人们对这些趋势是否导致生物同质化知之甚少。在本研究中,我们利用长期海滩围网调查的数据,分析了 1995 年至 2019 年三角洲近岸鱼类群落的区域贝塔多样性趋势。总体而言,我们没有发现研究期间出现区域生物同质化的迹象。随着时间的推移,区域贝塔多样性适度增加,并受到淡水流入量年际变化较大的显著影响。驱动这些贝塔多样性模式的是近年来在该系统中大量繁殖的非本地密西西比银鱼,但也有少量本地鱼类,如萨克拉门托吸盘鱼、图勒鲈和箭鱼。总之,我们的研究结果与世界上其他受到高度入侵的生态系统形成了鲜明对比,并表明尽管一些本地鱼类物种几乎灭绝,但三角洲仍有一些合适的栖息地,它们可能在保护残存的本地鱼类多样性方面发挥关键作用。
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Regional Diversity Trends of Nearshore Fish Assemblages of the Upper San Francisco Estuary
The loss of biodiversity and biotic homogenization are on the rise in ecosystems around the world as a result of species invasions, habitat degradation, and the effects of climate change. In the Sacramento–San Joaquin Delta, non-native species make up the majority of the fish community, and declines in native species have been well documented; however, little is known about whether these trends have resulted in biotic homogenization. In this study, we used data from a long-term beach seine survey to analyze regional beta diversity trends of nearshore fish assemblages in the Delta from 1995 to 2019. Overall, we found no evidence of regional biotic homogenization occurring over the study period. Regional beta diversity increased moderately over time and was significantly influenced by the high interannual variability of freshwater inflow. These beta diversity patterns were driven by the non-native Mississippi Silverside that has proliferated in the system in recent years, but also by a handful of native fish species such as the Sacramento Sucker, Tule Perch, and Splittail. Overall, our results offer a contrast to other highly invaded ecosystems around the world and suggest that despite the near extinction of some native fish species, there remain pockets of suitable habitat in the Delta that may play a key role in the conservation of remnant native fish diversity.
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来源期刊
San Francisco Estuary and Watershed Science
San Francisco Estuary and Watershed Science Environmental Science-Water Science and Technology
CiteScore
2.90
自引率
0.00%
发文量
24
审稿时长
24 weeks
期刊最新文献
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