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首页> 外文期刊>Progress in Oceanography >The role of mixing in controlling resource availability and phytoplankton community composition
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The role of mixing in controlling resource availability and phytoplankton community composition

机译:混合在控制资源可用性和浮游植物群落组成中的作用

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We investigate the role of mixing, through its effect on nutrient and light availability, as a driver of phytoplankton community composition in the context of Margalefs mandala. Data on microstructure turbulence, irradiance, new nitrogen supply and phytoplankton composition were collected at 102 stations in three contrasting marine environments: the Galician coastal upwelling system of the northwest Iberian Peninsula, the northwestern Mediterranean, and the tropical and subtropical Atlantic, Pacific and Indian oceans. Photosynthetic pigments concentration and microscopic analysis allowed us to investigate the contribution of diatoms, dinoflagellates, pico- and nanoeukaryotes, and cyanobacteria to the phytoplankton community. Simple linear regression was used to assess the role of environmental factors on community composition, and environmental overlap among different phytoplankton groups was computed using nonparametric kernel density functions. Mixing and new nitrogen supply played an important role in controlling the phytoplankton community structure. At lower values of mixing and new nitrogen supply cyanobacteria dominated, pico- and nanoeukaryotes were dominant across a wide range of environmental conditions, and finally enhanced new nitrogen supply was favourable for diatoms and dinofiagellates. Dinoflagellates were prevalent at intermediate mixing levels, Whereas diatoms spread across a wider range of mixing conditions. Occasional instances of enhanced diatom biomass were found under low mixing, associated with the high abundance of Hemiaulus hauckii co-occurring with high N-2 fixation in subtropical regions, and with the formation of thin layers in the Galician coastal upwelling. Our results verify the Margalef s mandala for the whole phytoplankton community, emphasizing the need to consider nutrient supply, rather than nutrient concentration, as an indicator of nutrient availability.
机译:我们调查混合的作用,通过其对营养物和光的可用性的影响,作为曼格达勒(Margalefs)曼陀罗背景下浮游植物群落组成的驱动因素。在三个不同的海洋环境中,在102个观测站收集了有关微结构湍流,辐照度,新氮供应和浮游植物组成的数据:西北伊比利亚半岛的加利西亚海岸上升系统,西北地中海以及热带和亚热带大西洋,太平洋和印度洋。光合色素的浓度和显微分析使我们能够研究硅藻,鞭毛藻,微微和纳米真核生物以及蓝细菌对浮游植物群落的贡献。简单线性回归用于评估环境因素在群落组成中的作用,并使用非参数核密度函数计算不同浮游植物群之间的环境重叠。混合和新的氮供应在控制浮游植物群落结构中起着重要作用。在较低的混合值和新的氮供应量下,蓝细菌占主导地位,在广泛的环境条件下,皮克和纳米真核生物占主导地位,最终增加的新氮供应量对硅藻和硅藻土生物有利。鞭毛藻在中间混合水平普遍存在,而硅藻则分布在更宽的混合条件范围内。在低混合条件下,硅藻生物量增强的情况偶尔出现,这与亚热带地区大量出现的Hahemii hauckii和高N-2固定现象有关,并与加利西亚沿海上升流中的薄层形成有关。我们的结果验证了整个浮游植物群落的Margalef s曼陀罗,强调需要考虑营养物供应而不是营养物浓度作为营养物可利用性的指标。

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