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Mixing depth and allochthonous dissolved organic carbon: controlling factors of coastal trophic balance

机译:混合深度和异源溶解有机碳:沿海营养平衡的控制因素

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ABSTRACT: The interacting effects of different mixing depths and increased allochthonous dissolved organic carbon (DOC) on the ratio of heterotrophic to autotrophic production (i.e. trophic balance) was evaluated in a mesocosm study with a stratified water column. An autumn plankton community from the northern Bothnian Sea showed significantly decreased phytoplankton production and somewhat increased bacterial production with added DOC. In addition, increased mixing depth further reduced phytoplankton production. With a deep pycnocline and added DOC, the system became net-heterotrophic, with an average bacteria-to-phytoplankton production ratio of 1.24. With a deep pycnocline without added DOC, the trophic balance was changed to 0.44 (i.e. autotrophic). With a shallow pycnocline, the system remained net-autotrophic irrespective of DOC addition. We propose that increased precipitation in northern Europe due to climate change may result in changed density stratification and increased allochthonous DOC transport to the sea, leading to more heterotrophic coastal aquatic ecosystems. Such a scenario may entail reduced biological production at higher trophic levels and enhanced CO2 emission to the atmosphere.
机译:摘要:在分层水柱进行的中观研究中,评估了不同混合深度和增加的异源可溶性有机碳(DOC)对异养与自养产量比(即营养平衡)的相互作用。来自北波海尼亚海的一个秋季浮游生物群落显示,添加DOC后,浮游植物的产量显着下降,细菌产量有所增加。另外,增加的混合深度进一步降低了浮游植物的产量。加上深的比考克林和添加的DOC,该系统变为净异养的,细菌与浮游植物的平均产量比为1.24。在没有添加DOC的深比浓可可碱的情况下,营养平衡变为0.44(即自养)。对于较浅的比诺可林,无论添加DOC如何,该系统均保持自养。我们认为,由于气候变化,北欧降水增加可能会导致密度分层变化和异源DOC向海洋的迁移增加,从而导致更具异养性的沿海水生生态系统。这种情况可能导致较高营养级别的生物产量减少,并增加了向大气中的CO 2 排放。

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