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Nitrogen fixation by cyanobacteria stimulates production in Baltic food webs

机译:蓝藻固氮促进波罗的海食物网的生产

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摘要

Filamentous, nitrogen-fixing cyanobacteria form extensive summer blooms in the Baltic Sea. Their ability to fix dissolved N2 allows cyanobacteria to circumvent the general summer nitrogen limitation, while also generating a supply of novel bioavailable nitrogen for the food web. However, the fate of the nitrogen fixed by cyanobacteria remains unresolved, as does its importance for secondary production in the Baltic Sea. Here, we synthesize recent experimental and field studies providing strong empirical evidence that cyanobacterial nitrogen is efficiently assimilated and transferred in Baltic food webs via two major pathways: directly by grazing on fresh or decaying cyanobacteria and indirectly through the uptake by other phytoplankton and microbes of bioavailable nitrogen exuded from cyanobacterial cells. This information is an essential step toward guiding nutrient management to minimize noxious blooms without overly reducing secondary production, and ultimately most probably fish production in the Baltic Sea.Electronic supplementary materialThe online version of this article (doi:10.1007/s13280-015-0660-x) contains supplementary material, which is available to authorized users.
机译:丝状的固氮蓝细菌在波罗的海形成大量的夏季开花。它们固定溶解的N2的能力使蓝细菌可以避开夏季普遍的氮限制,同时还可以为食物网提供新型的生物利用氮。然而,蓝藻固定的氮的命运以及波罗的海二次生产的重要性仍未得到解决。在这里,我们综合了最近的实验和田野研究,提供了有力的经验证据,表明蓝藻氮通过两种主要途径在波罗的海食物网中被有效地吸收和转移:直接通过放牧新鲜或腐烂的蓝细菌,以及通过其他浮游植物和微生物的间接吸收蓝细菌细胞中渗出的氮。这些信息是指导营养管理以在不过度减少次生产量的情况下最大程度减少有害花开的关键步骤,最终也可能是波罗的海的鱼类产量。电子补充材料本文的在线版本(doi:10.1007 / s13280-015-0660- x)包含补充材料,授权用户可以使用。

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