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  4. Diel to Seasonal Variation of Picoplankton in the Tropical South China Sea
 
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Diel to Seasonal Variation of Picoplankton in the Tropical South China Sea

Journal
Frontiers in Marine Science
Journal Volume
8
Journal Issue
Art. No.732017
Date Issued
2021-10-21
Author(s)
Chen, Tzong Yueh
Lai, Chao Chen
Tai, Jen Hua
CHIA-YING KO  
Shiah, Fuh Kwo
DOI
10.3389/fmars.2021.732017
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/587435
URL
https://api.elsevier.com/content/abstract/scopus_id/85118649284
Abstract
Eight diel surveys on picoplankton (Prochlorococcus, Synechococcus, picoeukaryotes, and heterotrophic bacteria) abundance at the South East Asian Time-Series Station (SEATS; 18°N; 116°E) were conducted during the period of 2010 to 2014. The results indicated that Prochlorococcus and picoeukaryotes showed a subsurface maximum in warm seasons (spring, summer, and fall) and were abundant at the surface in the cold season (winter). Synechococcus and heterotrophic bacteria exhibited higher cell numbers at the surface and decreased with depth throughout the year. Although not all, some clear diel patterns for picoplankton were observed. Picophytoplankton usually peaked in the nighttime; picoeukaryotes peaked at ~7 to 8 p.m., followed by Synechococcus (peaking at 1 a.m.) and Prochlorococcus (peaking at 2 a.m.). Unlike these picoautotrophs, heterotrophic bacteria could peak either at dusk (i.e., 7 p.m.) or at noon. Seasonally, Prochlorococcus was more abundant in the warm than the cold seasons, while Synechococcus and picoeukaryotes showed blooms in the winter of 2013 and 2011, respectively. Heterotrophic bacteria showed no significant seasonality. Regression analysis indicated that ~73% of the diel-to-seasonal variation of the euphotic zone depth-integrated picophytoplankton biomass (i.e., PicoBeu) could be explained by the changes of the mixed-layer depth (MLD), and this suggested that inorganic nutrient supply could be the major controlling factor in their growth. The strong linear relationship (coefficient of determination, R2 of 0.83, p < 0.01) between sea surface temperature (SST) and PicoBeu implied, for the first time, a potential of using satellite-based SST to trace the biomass of picophytoplankton in the pelagic areas of the northern South China Sea.
Subjects
heterotrophic bacteria | picoeukaryotes | picoplankton | Prochlorococcus | SEATS | South China Sea | Synechococcus
SDGs

[SDGs]SDG13

[SDGs]SDG14

Publisher
Frontiers Media S.A.
Type
journal article

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