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Seasonal patterns in phytoplankton photosynthetic parameters and primary production at a coastal NW Mediterranean site

机译:西北部地中海沿岸地区浮游植物光合参数的季节性模式和初级生产

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摘要

We carried out monthly photosynthesis-irradiance (P-E) experiments with the 14C-method for 12 years (2003–2014) to determine the photosynthetic parameters and primary production of surface phytoplankton in the Blanes Bay Microbial Observatory, a coastal sampling station in the NW Mediterranean Sea. Our goal was to obtain seasonal trends and to establish the basis for detecting future changes of primary production in this oligotrophic area. The maximal photosynthetic rate PBmax ranged 30-fold (0.5-15 mg C mg Chl a–1 h–1), averaged 3.7 mg C mg Chl a–1 h–1 (±0.25 SE) and was highest in August and lowest in April and December. We only observed photoinhibition twice. The initial or light-limited slope of the P-E relationship, αB, was low, averaging 0.007 mg C mg Chl a–1 h–1 (μmol photons m–2 s–1)–1 (±0.001 SE, range 0.001-0.045) and showed the lowest values in spring (April-June). The light saturation parameter or saturation irradiance, EK, averaged 711 μmol photons m–2 s–1 (±58.4 SE) and tended to be higher in spring and lower in winter. Phytoplankton assemblages were typically dominated by picoeukaryotes in early winter, diatoms in late autumn and late winter, dinoflagellates in spring and cyanobacteria in summer. Total particulate primary production averaged 1.45 mg C m–3 h–1 (±0.13 SE) with highest values in winter (up to 8.50 mg C m–3 h–1) and lowest values in summer (summer average, 0.30 mg C m–3 h–1), while chlorophyll-specific primary production averaged 2.49 mg C mg Chl a–1 h–1 (±0.19, SE) and peaked in summer (up to 12.0 mg C mg Chl a–1 h–1 in August). 14C-determined phytoplankton growth rates varied between ca. 0.3 d–1 in winter and 0.5 d–1 in summer and were within 60-80% of the maximal rates of growth, based on PBmax. Chlorophyll a was a good predictor of primary production only in the winter and autumn. Seasonality appeared to explain most of the variability in the studied variables, while phytoplankton composition played a minor role. Daily integrated primary production was fairly constant throughout the year: similar to previous oxygen-based estimates in winter but considerably lower than these in summer. The difference between 14C- and oxygen-based estimates of primary production could be explained by community respiration. Annually integrated primary production amounted to a rather modest 48 g C m–2 yr–1 (equivalent to 130 mg C m–2 d–1). Although no interannual patterns were detected, our work soundly establishes the seasonal trends for the coastal NW Mediterranean, therefore setting the basis for future detection of change.
机译:我们使用14C方法进行了为期12年(2003-2014年)的每月光合作用-辐照度(PE)实验,以确定西北地中海沿岸的布拉内斯湾微生物天文台的光合作用参数和表面浮游植物的主要产量。海。我们的目标是获取季节性趋势,并为检测该贫营养地区初级生产的未来变化奠定基础。最大光合速率PBmax为30倍(0.5-15 mg C mg Chl-1–1 h-1),平均3.7 mg C mg Chl-1–1 h-1(±0.25 SE),在8月最高,而在12月最低四月和十二月。我们只观察了两次光抑制。 PE关系的初始斜率或光限斜率αB低,平均为0.007 mg C mg Chl a–1 h-1(μmol光子m–2 s–1)–1(±0.001 SE,范围0.001-0.045 ),并在春季(4月至6月)显示最低值。光饱和度参数或饱和度辐照度EK平均为711μmol光子m–2 s–1(±58.4 SE),春季时较高,冬季时较低。浮游植物的组合通常在冬季初为皮核生物,在秋季末和冬季末为硅藻,春季为鞭毛藻,夏季为蓝藻。初级颗粒物总平均产量为1.45 mg C m-3 h-1(±0.13 SE),冬季最高(最高8.50 mg C m-3 h-1),夏季最低(夏季平均值0.30 mg C m –3 h-1),而叶绿素特异性初级生产的平均水平为2.49 mg C mg Chl a-1 h-1(±0.19,SE),并在夏季达到峰值(最高为12.0 mg C mg Chl a-1 h-1八月)。 14C决定的浮游植物生长率在大约基于PBmax,冬季为0.3 d–1,夏季为0.5 d–1,处于最大增长率的60-80%之内。仅在冬季和秋季,叶绿素a才能很好地预测初级生产。季节性似乎可以解释所研究变量的大部分可变性,而浮游植物的组成起着较小的作用。全年的每日综合初级生产相当稳定:类似于以前基于冬季的氧气估算值,但大大低于夏季的估算值。 14 C和基于氧气的一次生产估算之间的差异可以通过社区呼吸来解释。每年的初级综合产量为48 g C m-2 yr-1(相当于130 mg C m-2 d-1)。尽管未检测到年际变化,但我们的工作很好地建立了西北地中海沿岸的季节性趋势,因此为将来发现变化奠定了基础。

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