旧金山河口上游三种主要浮游动物的季节性和丰度的长期趋势

Q3 Agricultural and Biological Sciences
Samuel Bashevkin, Christina Burdi, Rosemary Hartman, Arthur Barros
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引用次数: 0

摘要

在旧金山河口,浮游动物为受威胁和濒临灭绝的鱼类提供了重要的食物。食物供应的减少与21世纪初的远洋生物数量下降有关,浮游动物丰度、季节性和分布的进一步变化可能会继续威胁到数量下降的鱼类。虽然我们有丰富的监测数据,但我们对许多河口浮游动物物种的丰度趋势知之甚少。为了填补这些空白,我们回顾了过去的研究,然后分析了1972年至今在河口食物网中发挥重要作用的三种关键但研究不足的浮游动物物种(Bosmina longirostris, Acanthocyclops spp和Acartiella sinensis)的季节性和丰度趋势。在河口上游浮游动物监测综合数据库上拟合了各分类单元与盐度、季节、年份和地理关系的贝叶斯广义加性混合模型。我们发现每个研究物种的季节性和总体丰度都有明显的变化。长鼻花在秋季不再有丰度高峰,棘环虫在所有月份都急剧下降,与盐度失去了密切的关系,中华梭子鱼成虫丰度与盐度的关系变得更强,而幼鱼的季节丰度高峰更宽。通过这些分析,我们记录了每个物种自监测或引入以来与盐度和季节性的关系,从而增加了我们对河口生态和重要性的理解。这些结果可以为食物网模型提供信息,与鱼类数据配对以模拟这些物种对鱼类丰度趋势的贡献,并在未来的研究中反映其他物种的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Long-Term Trends in Seasonality and Abundance of Three Key Zooplankters in the Upper San Francisco Estuary
Zooplankton provide critical food for threatened and endangered fish species in the San Francisco Estuary (estuary). Reduced food supply has been implicated in the Pelagic Organism Decline of the early 2000s, and further changes in zooplankton abundance, seasonality, and distribution may continue to threaten declining fishes. While we have a wealth of monitoring data, we know little about the abundance trends of many estuary zooplankton species. To fill these gaps, we reviewed past research and then examined trends in seasonality and abundance from 1972 to the present of three key but understudied zooplankton species (Bosmina longirostris, Acanthocyclops spp., and Acartiella sinensis) that play important roles in the estuary food web. We fit Bayesian generalized additive mixed models of each taxon’s relationship with salinity, seasonality, year, and geography on an integrated database of zooplankton monitoring in the upper estuary. We found marked changes in the seasonality and overall abundance of each study species. Bosmina longirostris no longer peaks in abundance in the fall months, Acanthocyclops spp. precipitously declined in all months and lost its strong relationship with salinity, and A. sinensis adult abundance has become more strongly related to salinity while juveniles have developed wider seasonal abundance peaks. Through these analyses, we have documented the relationship of each species with salinity and seasonality since the beginning of monitoring or their introduction, thus increasing our understanding of their ecology and importance in the estuary. These results can inform food-web models, be paired with fish data to model the contributions of these species toward fish abundance trends and be mirrored to elucidate other species’ trends in future studies.
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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
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