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  1. National Taiwan Ocean University Research Hub
  2. 海洋科學與資源學院
  3. 海洋環境與生態研究所
Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26766
Title: Water temperature regulates picoplankton growth and mortality during the cold season in a subtropical coastal ecosystem
Authors: Olivia, Madeline
Annabel, Clara Natalie
Chen, Patrichka Wei-Yi
Hsieh, Chih-hao
Chen, Tzong-Yueh 
Chang, Feng-Hsun
Ho, Pei-Chi
Chien, Chia-Te
Shiah, Fuh-Kwo
Mukhanov, Vladimir
Tsai, An-Yi 
Keywords: Microbial food web;Grazing;Viral lysis;Synechococcus spp.;Temperature-driven dynamics;Coastal ecosystem;Lysogeny
Issue Date: 2026
Publisher: INTER-RESEARCH
Journal Volume: 92
Start page/Pages: 13
Source: AQUATIC MICROBIAL ECOLOGY
Abstract: 
Marine picoplankton populations are influenced by bottom-up control (resource availability, temperature) and top-down processes (e.g. grazing, viral lysis); however, seasonal variability in the bottom-up and top-down controls of picoplankton remains unclear, especially in cold-season studies, which remain scarce due to sampling challenges. To gain insight into the role of bottom-up and top-down control as determinants of picoplankton population abundance in the cold season, we examined bacterial, Synechococcus spp., and picoeukaryotic phytoplankton growth and mortality in a subtropical coastal region during the cold season (<25 degrees C) using modified dilution experiments. Results showed bacterial and Synechococcus spp. production rates were positively correlated with temperature, with growth rates ranging from 0.02 to 4.91 d(-1) (bacteria) and 0.29 to 6.28 d(-1) (Synechococcus spp.). Nanoflagellate grazing accounted for 43-80% of bacterial and 64-448% of Synechococcus spp. production, with carbon losses ranging from 2.07 to 18.82 mg C m(-3) d(-1) (bacteria) and from 1.94 to 92.93 mg C m(-3) d(-1) (Synechococcus spp.), while viral lysis was minimal for both but more significant for picoeukaryotic phytoplankton. Moreover, the 3 microbial groups exhibited distinct patterns: (1) Bacterial production was nearly balanced by total mortality (grazing and viral lysis) across all temperatures; (2) Synechococcus spp. contributed significantly to picophytoplankton production but declined sharply below 20 degrees C as grazing exceeded production; (3) Picoeukaryotic phytoplankton production surpassed Synechococcus spp. below 20 degrees C. These findings underscore temperature-driven microbial production and grazing-dominated mortality, suggesting reduced viral lysis due to increased lysogeny.
URI: http://scholars.ntou.edu.tw/handle/123456789/26766
ISSN: 0948-3055
DOI: 10.3354/ame02028
Appears in Collections:海洋環境與生態研究所

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