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Bio-optical properties of the subtropical North Atlantic. I. Vertical variability

机译:亚热带北大西洋的生物光学特性。一,垂直变化

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摘要

Studies of the physiological and optical properties of phytoplankton of the subtropical open ocean are rare. Yet, assessing the spatial and temporal variation in the photo-physiological parameters and chlorophyll-specific absorption coefficients of marine phytoplankton is essential if we are to account for the relative importance of pelagic systems in the global carbon economy. As a contribution to this general goal, the photosynthetic and bio-optical properties of phytoplankton were measured at 5 stations across a broad swath of the subtropical North Atlantic Ocean. Similar vertical patterns in pigment composition, chlorophyll-specific absorption coefficients and the photosynthesis-irradiance parameters were observed at all 5 stations. A considerable proportion of the vertical variation in the chlorophyll-specific absorption coefficients was caused by vertical changes in the proportion of the non-photosynthetic pigment (NPP) zeaxanthin relative to chlorophyll a. On the other hand, pigment packaging appeared to have a minor influence on the optical characteristics of the picoplankton-dominated region: chlorophyll-specific absorption coefficients observed at the red peak frequently exceeded 0.02 m2 (mg chl a)-1. Multiple, linear-regression analysis was used to examine the value of some commonly-measured environmental variables as potential predictors of the photosynthetic parameters αB and PmB. The results showed that indices of ambient irradiance, nutrient flux or nutrient concentration, separately or in combination, account for a significant fraction of the total variance in the photosynthetic parameters. The stability in the distribution patterns of both the photosynthetic parameters and absorptive characteristics of subtropical phytoplankton assemblages and in the principal factors governing the variability in these properties may facilitate the selection of appropriate input parameters for use in models of primary production for this hydrographic region.
机译:对亚热带开放性海洋浮游植物的生理和光学特性的研究很少。但是,如果要考虑远洋系统在全球碳经济中的相对重要性,评估海洋浮游植物的光生理参数和叶绿素特异性吸收系数的时空变化至关重要。为了实现这一总体目标,在亚热带北大西洋大片地区的5个站点对浮游植物的光合和生物光学特性进行了测量。在所有5个站均观察到相似的垂直方向的色素组成,叶绿素特异性吸收系数和光合作用-辐照度参数。叶绿素特异性吸收系数的很大一部分垂直变化是由于非光合色素(NPP)玉米黄质相对于叶绿素a的比例发生垂直变化引起的。另一方面,颜料的包装似乎对浮游生物为主区域的光学特性影响很小:在红色峰处观察到的叶绿素特异性吸收系数经常超过0.02 m2(mg chl a)-1。多元线性回归分析被用于检验一些通常测量的环境变量的值,这些变量是光合作用参数αB和PmB的潜在预测指标。结果表明,环境辐照度,养分通量或养分浓度的指数,单独或组合使用,占光合参数总变化的很大一部分。亚热带浮游植物组合的光合参数和吸收特征的分布模式的稳定性,以及控制这些特性变化的主要因素中的稳定性,可能有助于选择适当的输入参数,以用于该水文区域的初级生产模型。

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