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海洋中浮游植物多样性与生产力之间的全球关系。

Global relationship between phytoplankton diversity and productivity in the ocean.

作者信息

Vallina S M, Follows M J, Dutkiewicz S, Montoya J M, Cermeno P, Loreau M

机构信息

1] Earth, Atmospheric and Planetary Sciences, MIT, Cambridge, MA 02139, USA [2] Institute of Marine Sciences, CSIC, 08003 Barcelona, Catalonia, Spain.

Earth, Atmospheric and Planetary Sciences, MIT, Cambridge, MA 02139, USA.

出版信息

Nat Commun. 2014 Jul 1;5:4299. doi: 10.1038/ncomms5299.

Abstract

The shape of the productivity-diversity relationship (PDR) for marine phytoplankton has been suggested to be unimodal, that is, diversity peaking at intermediate levels of productivity. However, there are few observations and there has been little attempt to understand the mechanisms that would lead to such a shape for planktonic organisms. Here we use a marine ecosystem model together with the community assembly theory to explain the shape of the unimodal PDR we obtain at the global scale. The positive slope from low to intermediate productivity is due to grazer control with selective feeding, which leads to the predator-mediated coexistence of prey. The negative slope at high productivity is due to seasonal blooms of opportunist species that occur before they are regulated by grazers. The negative side is only unveiled when the temporal scale of the observation captures the transient dynamics, which are especially relevant at highly seasonal latitudes. Thus selective predation explains the positive side while transient competitive exclusion explains the negative side of the unimodal PDR curve. The phytoplankton community composition of the positive and negative sides is mostly dominated by slow-growing nutrient specialists and fast-growing nutrient opportunist species, respectively.

摘要

海洋浮游植物的生产力-多样性关系(PDR)的形状被认为是单峰的,也就是说,多样性在中等生产力水平达到峰值。然而,相关观测较少,且几乎没有人尝试去理解导致浮游生物呈现这种形状的机制。在这里,我们使用一个海洋生态系统模型并结合群落组装理论来解释我们在全球尺度上获得的单峰PDR的形状。从低生产力到中等生产力的正斜率是由于食草动物的控制以及选择性摄食,这导致了捕食者介导的猎物共存。高生产力时的负斜率是由于机会主义物种在受到食草动物调节之前出现季节性大量繁殖。只有当观测的时间尺度捕捉到瞬态动态时,负斜率才会显现出来,而这种瞬态动态在季节性很强的纬度地区尤为重要。因此,选择性捕食解释了正斜率部分,而瞬态竞争排斥解释了单峰PDR曲线的负斜率部分。正斜率和负斜率部分的浮游植物群落组成分别主要由生长缓慢的营养专性物种和生长迅速的营养机会主义物种主导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a4b/4102128/66393d26d81f/ncomms5299-f1.jpg

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