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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/123456789/26559
Title: Diel Variations in Abundance of Viral, Picoplankton, and Nanoplankton in Coastal Waters of Taiwan in Spring
Authors: Chen, Patrichka W. -Y.
Olivia, Madeline
Mukhanov, Vladimir
Margarita, Ufimtseva
Tatiana, Liashko
Evgenii, Sakhon
Supriyadi
Puspitasari, Intan D.
Ghosh, Arpita
Tsai, An-Yi 
Keywords: Diel variations;Synechococcus spp.;Prochlorococcus spp.;Picoeukaryotes;Mixotrophs;Nanoflagellates
Issue Date: 2025
Publisher: NATL TAIWAN OCEAN UNIV
Journal Volume: 33
Journal Issue: 4
Start page/Pages: 11
Source: JOURNAL OF MARINE SCIENCE AND TECHNOLOGY-TAIWAN
Abstract: 
The diel variations of viruses (<0.2 & micro;m), picoplankton (0.2-2 & micro;m; heterotrophic bacteria, Synechococcus spp., and picoeukaryotes), and nanoflagellates (2-20 & micro;m; heterotrophic and pigmented nanoflagellates) were examined for 2 days with approximately 4 h of temporal sampling in the spring of 2024 in coastal surface waters of the subtropical western Pacific. The abundance of bacteria did not follow a consistent diel pattern, and viral abundance was positively correlated with bacterial abundance. Synechococcus spp. was found to grow during the light period and with peak abundance at night, exhibiting a remarkably diel pattern; however, the pattern was opposite in picoeukaryotes. In the size-fractionation experiments, after 32 h of incubation, the effects of grazing pressure on bacteria were examined because bacterial abundance generally decreased and was significantly lower in the unfiltered treatment than in the 1 & micro;m filtration treatment. Furthermore, we found a significant increase in picoeukaryotic abundance after 32 h of incubation; however, the opposite pattern was observed in bacteria, with a decline in their abundance, probably because of a predator-prey relationship. The results of our study suggest that some species of picoeukaryotes may act as bacterial predators by being mixotrophic. By analyzing these findings, we gain a more comprehensive understanding of picoplankton in coastal oceans, their functions, and the effects of environmental changes on their structure.
URI: http://scholars.ntou.edu.tw/handle/123456789/26559
ISSN: 1023-2796
DOI: 10.51400/2709-6998.2790
Appears in Collections:海洋環境與生態研究所

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