globalchange  > 过去全球变化的重建
DOI: 10.1371/journal.pone.0090507
论文题名:
Biophysical Interactions Control the Size and Abundance of Large Phytoplankton Chains at the Ushant Tidal Front
作者: José M. Landeira; Bruno Ferron; Michel Lunven; Pascal Morin; Louis Marié; Marc Sourisseau
刊名: PLOS ONE
ISSN: 1932-6203
出版年: 2014
发表日期: 2014-2-28
卷: 9, 期:2
语种: 英语
英文关键词: Phytoplankton ; Tides ; Diatoms ; Nitrates ; Chlorophyll ; Fluorescence imaging ; Turbulence ; Ocean tides
英文摘要: Phytoplankton blooms are usually dominated by chain-forming diatom species that can alter food pathways from primary producers to predators by reducing the interactions between intermediate trophic levels. The food-web modifications are determined by the length of the chains; however, the estimation is biased because traditional sampling strategies damage the chains and, therefore, change the phytoplankton size structure. Sedimentological studies around oceanic fronts have shown high concentrations of giant diatom mats (>1 cm in length), suggesting that the size of diatom chains is underestimated in the pelagic realm. Here, we investigate the variability in size and abundance of phytoplankton chains at the Ushant tidal front (NW France) using the Video Fluorescence Analyzer (VFA), a novel and non-invasive system. CTD and Scanfish profiling characterized a strong temperature and chlorophyll front, separating mixed coastal waters from the oceanic-stratified domain. In order to elucidate spring-neap variations in the front, vertical microstructure profiler was used to estimate the turbulence and vertical nitrate flux. Key findings were: (1) the VFA system recorded large diatom chains up to 10.7 mm in length; (2) chains were mainly distributed in the frontal region, with maximum values above the pycnocline in coincidence with the maximum chlorophyll; (3) the diapycnal fluxes of nitrate enabled the maintenance of the bloom in the frontal area throughout the spring-neap tidal cycle; (4) from spring to neap tide the chains length was significantly reduced; (5) during neap tide, the less intense vertical diffusion of nutrients, as well as the lower turbulence around the chains, intensified nutrient-depleted conditions and, thus, very large chains became disadvantageous. To explain this pattern, we suggest that size plasticity is an important ecological trait driving phytoplankton species competition. Although this plasticity behavior is well known from experiments in the laboratory, it has never been reported from observations in the field.
URL: http://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0090507&type=printable
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/19748
Appears in Collections:过去全球变化的重建
影响、适应和脆弱性
科学计划与规划
气候变化与战略
全球变化的国际研究计划
气候减缓与适应
气候变化事实与影响

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作者单位: Département Dynamiques de l’Environnement Côtier/Pelagos, IFREMER/Centre de Brest, Plouzané, France;Laboratoire de Physique des Océans, UMR CNRS/IFREMER/IRD/UBO 6523, IFREMER/Centre de Brest, Plouzané, France;Département Dynamiques de l’Environnement Côtier/Pelagos, IFREMER/Centre de Brest, Plouzané, France;Adaptation et Diversité en Milieu Marin, UMR CNRS/UPMC 7144, Station Biologique de Roscoff, Roscoff, France;Laboratoire de Physique des Océans, UMR CNRS/IFREMER/IRD/UBO 6523, IFREMER/Centre de Brest, Plouzané, France;Département Dynamiques de l’Environnement Côtier/Pelagos, IFREMER/Centre de Brest, Plouzané, France

Recommended Citation:
José M. Landeira,Bruno Ferron,Michel Lunven,et al. Biophysical Interactions Control the Size and Abundance of Large Phytoplankton Chains at the Ushant Tidal Front[J]. PLOS ONE,2014-01-01,9(2)
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