首页> 外文期刊>Progress in Oceanography >Nanoplanktonic assemblages in the upwelling area off Conception (~36°S), central Chile: Abundance, biomass, and grazing potential during the annual cycle
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Nanoplanktonic assemblages in the upwelling area off Conception (~36°S), central Chile: Abundance, biomass, and grazing potential during the annual cycle

机译:智利中部受孕区(〜36°S)附近上升流区的纳米浮游生物组合:年周期中的丰度,生物量和放牧潜力

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The structure and functioning of nanoplanktonic assemblages in coastal upwelling areas have usually been overlooked in explorations of the productivity of these areas. As part of a multidisciplinary, time-series station in the coastal area off Conception, seasonal variations (upwelling and non-upwelling) in the abundance and biomass of these assemblages were investigated. Hydrographic measurements and biological samples were taken monthly over a 2-year period (18 August 2004-28 July 2006). Nanoflagellates dominated the total integrated abundance (3-317 × 10~9 cells m~(-2); 0-80 m). Diatoms and dinoflagellates usually contributed to a lesser degree ( < 20%) but sporadically made important contributions to the total integrated nanoplankton biomass (0.02-10.6 g C m~(-2)). Most of the nanoplankton was concentrated in surface waters ( < 30 m) during all the samplings and no seasonal differences in abundance or biomass were found in this layer, although the mean values and dispersions around them were highest during the upwelling period along with maximum integrated (0-80 m) chlorophyll-a values, as total or in the < 20 μm fraction. Changes in nanoplankton abundance were significantly but weakly (r < 0.4) correlated with changes in the hydrographic variables; the highest correlation values were positive for temperature and oxygen, factors that varied with depth and date. The potential grazing rates of heterotrophic nano-pre-dators (flagellates and dinoflagellates) on prokaryotic prey, estimated with a generic model, ranged from 3 to 242 bacte-rioplankton predator~(-1) h~(-1) and from 0.1 to 14 cyanobacteria predator~(-1) h~(-1). Our results imply a small impact of seasonal hydrographic variability on the abundance and biomass of nanoplanktonic assemblages and suggest that grazing by nano-heterotrophs might control the prokaryotic picoplankton populations in the upwelling area off Conception.
机译:在沿海上升流地区,纳米浮游生物组合的结构和功能通常在探索这些地区的生产力时被忽视。作为位于Concept以外的沿海地区的多学科时间序列站的一部分,研究了这些组合的丰度和生物量的季节性变化(上升流和非上升流)。在两年期间(2004年8月18日至2006年7月28日)每月进行一次水文测量和生物采样。纳米鞭毛占总积分丰度(3-317×10〜9个细胞m〜(-2); 0-80 m)。硅藻和鞭毛藻通常贡献较小的程度(<20%),但偶尔会为整体纳米浮游生物的总生物量(0.02-10.6 g C m〜(-2))做出重要贡献。在所有采样过程中,大多数纳米浮游生物都集中在地表水(<30 m)中,并且在该层中没有发现丰度或生物量的季节性差异,尽管它们的平均值和分散度在上升阶段是最高的,而最大积分是(0-80 m)叶绿素a值,总计或<20μm分数。纳米浮游生物丰度的变化与水文变量的变化显着相关,但微弱(r <0.4)。温度和氧气的相关系数最高,这些因素随深度和日期而变化。用通用模型估计,异养纳米捕食者(鞭毛虫和鞭毛虫)在原核猎物上的潜在放牧率范围为3至242个细菌-浮游生物〜(-1)h〜(-1)和0.1至1。 14蓝细菌捕食者〜(-1)h〜(-1)。我们的研究结果表明季节性水文变异对纳米浮游生物组合的丰度和生物量影响很小,并表明纳米异养动物的放牧可能会控制构想上升区的原核浮游生物种群。

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