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From the Cover: Marine mixotrophy increases trophic transfer efficiency mean organism size and vertical carbon flux

机译:从封面开始:海洋混合营养增加了营养传递效率平均生物体大小和垂直碳通量

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摘要

Mixotrophic plankton, which combine the uptake of inorganic resources and the ingestion of living prey, are ubiquitous in marine ecosystems, but their integrated biogeochemical impacts remain unclear. We address this issue by removing the strict distinction between phytoplankton and zooplankton from a global model of the marine plankton food web. This simplification allows the emergence of a realistic trophic network with increased fidelity to empirical estimates of plankton community structure and elemental stoichiometry, relative to a system in which autotrophy and heterotrophy are mutually exclusive. Mixotrophy enhances the transfer of biomass to larger sizes classes further up the food chain, leading to an approximately threefold increase in global mean organism size and an ∼35% increase in sinking carbon flux.
机译:混合营养型浮游生物结合了对无机资源的吸收和对活体猎物的摄取,在海洋生态系统中无处不在,但它们对生物地球化学的综合影响尚不清楚。我们通过从海洋浮游生物食物网的全球模型中删除浮游植物与浮游动物之间的严格区别来解决此问题。相对于自养和异养互斥的系统,这种简化允许出现一个现实的营养网络,其对浮游生物群落结构和元素化学计量的经验估计具有更高的保真度。混合营养促进了生物质向食物链进一步向上转移到更大尺寸类别的转移,导致全球平均生物体大小增加了大约三倍,而下沉的碳通量增加了约35%。

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