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海洋鱼类食物网是全球性连通的。

The marine fish food web is globally connected.

机构信息

IFREMER, unité Ecologie et Modèles pour l'Halieutique, Nantes, France.

Departement de biologie, Faculté des sciences et de génie, Université Laval, Québec, Québec, Canada.

出版信息

Nat Ecol Evol. 2019 Aug;3(8):1153-1161. doi: 10.1038/s41559-019-0950-y. Epub 2019 Jul 29.

Abstract

The productivity of marine ecosystems and the services they provide to humans are largely dependent on complex interactions between prey and predators. These are embedded in a diverse network of trophic interactions, resulting in a cascade of events following perturbations such as species extinction. The sheer scale of oceans, however, precludes the characterization of marine feeding networks through de novo sampling. This effort ought instead to rely on a combination of extensive data and inference. Here we investigate how the distribution of trophic interactions at the global scale shapes the marine fish food web structure. We hypothesize that the heterogeneous distribution of species ranges in biogeographic regions should concentrate interactions in the warmest areas and within species groups. We find that the inferred global metaweb of marine fish-that is, all possible potential feeding links between co-occurring species-is highly connected geographically with a low degree of spatial modularity. Metrics of network structure correlate with sea surface temperature and tend to peak towards the tropics. In contrast to open-water communities, coastal food webs have greater interaction redundancy, which may confer robustness to species extinction. Our results suggest that marine ecosystems are connected yet display some resistance to perturbations because of high robustness at most locations.

摘要

海洋生态系统的生产力及其为人类提供的服务在很大程度上取决于猎物和捕食者之间的复杂相互作用。这些相互作用嵌入在一个多样化的营养相互作用网络中,导致在物种灭绝等干扰后出现一系列事件。然而,海洋的规模之大,使得通过从头开始采样来描述海洋摄食网络变得不可能。因此,这一工作应该依赖于广泛的数据和推理的结合。在这里,我们研究了全球尺度上的营养相互作用分布如何影响海洋鱼类食物网结构。我们假设,生物地理区域中物种分布的异质性应该会将相互作用集中在最温暖的地区和物种群体内。我们发现,推断出的海洋鱼类全球元网络——即共同出现的物种之间所有可能的潜在摄食联系——在地理上高度连接,空间模块化程度较低。网络结构的度量与海面温度相关,并且往往在热带地区达到峰值。与开阔水域群落相比,沿海食物网具有更高的相互作用冗余性,这可能使物种灭绝具有更强的稳健性。我们的结果表明,海洋生态系统是相互连接的,但由于大多数地方的高稳健性,它们对干扰具有一定的抵抗力。

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