Linking hydrodynamic disturbances to microeukaryote biogeography: ciliate community shifts reveal freshwater plume and seawater intrusion dynamics.

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Autori principali: Liu, Weiwei, Ye, Bowen, Cheng, Zijun, McManus, George B, Li, Gang, Zhou, Linbin, Qiu, Dajun, Liu, Jiaxing, Ke, Zhixin, Li, Kaizhi, Tan, Yehui
Natura: Artículo científico
Lingua:en
Pubblicazione: ISME communications 2026
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author Liu, Weiwei
Ye, Bowen
Cheng, Zijun
McManus, George B
Li, Gang
Zhou, Linbin
Qiu, Dajun
Liu, Jiaxing
Ke, Zhixin
Li, Kaizhi
Tan, Yehui
author_facet Liu, Weiwei
Ye, Bowen
Cheng, Zijun
McManus, George B
Li, Gang
Zhou, Linbin
Qiu, Dajun
Liu, Jiaxing
Ke, Zhixin
Li, Kaizhi
Tan, Yehui
Liu, Weiwei
Ye, Bowen
Cheng, Zijun
McManus, George B
Li, Gang
Zhou, Linbin
Qiu, Dajun
Liu, Jiaxing
Ke, Zhixin
Li, Kaizhi
Tan, Yehui
collection PubMed - marine biology
contents Linking hydrodynamic disturbances to microeukaryote biogeography: ciliate community shifts reveal freshwater plume and seawater intrusion dynamics. Liu, Weiwei Ye, Bowen Cheng, Zijun McManus, George B Li, Gang Zhou, Linbin Qiu, Dajun Liu, Jiaxing Ke, Zhixin Li, Kaizhi Tan, Yehui Estuarine ecosystems are jointly regulated by freshwater plumes and seawater intrusion, yet their impact mechanisms on community dynamics remain insufficiently understood. Here, we investigated the response of ciliate community to freshwater plume-seawater intrusion disturbance in a large subtropical estuary in China. Ciliate distribution exhibited clear turnover along environmental gradients in both community composition and abundance. In summer, community composition showed gradual horizontal and vertical shifts that corresponded with broad environmental gradients generated by strong freshwater plumes. In contrast, in winter, community variation was most pronounced between the inner and middle estuary, reflecting the upstream compression of environmental gradients driven by strong seawater intrusion. These patterns were corroborated by our determinants analyses. Variation partitioning analysis revealed that physical factors explained a substantial proportion of community variation in both seasons, and structural equation modelling further demonstrated that physical factors exerted the strongest total effects on community structure. In addition, species abundances closely followed a log-normal distribution in both seasons, which is consistent with predictions of niche-based community theory. Niche differentiation along environmental gradients shaped by freshwater plumes and seawater intrusion may contribute to this pattern. Overall, our findings reveal a clear linkage between ciliate distribution and freshwater plume-seawater intrusion dynamics, suggesting that ciliate communities can sensitively reflect the spatial-temporal variability of these physical processes.
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language en
publishDate 2026
publisher ISME communications
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spellingShingle Linking hydrodynamic disturbances to microeukaryote biogeography: ciliate community shifts reveal freshwater plume and seawater intrusion dynamics.
Liu, Weiwei
Ye, Bowen
Cheng, Zijun
McManus, George B
Li, Gang
Zhou, Linbin
Qiu, Dajun
Liu, Jiaxing
Ke, Zhixin
Li, Kaizhi
Tan, Yehui
Linking hydrodynamic disturbances to microeukaryote biogeography: ciliate community shifts reveal freshwater plume and seawater intrusion dynamics. Liu, Weiwei Ye, Bowen Cheng, Zijun McManus, George B Li, Gang Zhou, Linbin Qiu, Dajun Liu, Jiaxing Ke, Zhixin Li, Kaizhi Tan, Yehui Estuarine ecosystems are jointly regulated by freshwater plumes and seawater intrusion, yet their impact mechanisms on community dynamics remain insufficiently understood. Here, we investigated the response of ciliate community to freshwater plume-seawater intrusion disturbance in a large subtropical estuary in China. Ciliate distribution exhibited clear turnover along environmental gradients in both community composition and abundance. In summer, community composition showed gradual horizontal and vertical shifts that corresponded with broad environmental gradients generated by strong freshwater plumes. In contrast, in winter, community variation was most pronounced between the inner and middle estuary, reflecting the upstream compression of environmental gradients driven by strong seawater intrusion. These patterns were corroborated by our determinants analyses. Variation partitioning analysis revealed that physical factors explained a substantial proportion of community variation in both seasons, and structural equation modelling further demonstrated that physical factors exerted the strongest total effects on community structure. In addition, species abundances closely followed a log-normal distribution in both seasons, which is consistent with predictions of niche-based community theory. Niche differentiation along environmental gradients shaped by freshwater plumes and seawater intrusion may contribute to this pattern. Overall, our findings reveal a clear linkage between ciliate distribution and freshwater plume-seawater intrusion dynamics, suggesting that ciliate communities can sensitively reflect the spatial-temporal variability of these physical processes.
title Linking hydrodynamic disturbances to microeukaryote biogeography: ciliate community shifts reveal freshwater plume and seawater intrusion dynamics.
url https://pubmed.ncbi.nlm.nih.gov/41971528/