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Stoichiometric multitrophic networks reveal significance of land-sea interaction to ecosystem function in a subtropical nutrient-poor bight, South Africa

机译:化学计量比多营养网络揭示了在亚热带营养贫乏地区,陆地-海洋相互作用对生态系统功能的重要性

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摘要

Nearshore marine ecosystems can benefit from their interaction with adjacent ecosystems, especially if they alleviate nutrient limitations in nutrient poor areas. This was the case in our oligo- to mesotrophic study area, the KwaZulu-Natal Bight on the South African subtropical east coast, which is bordered by the Agulhas current. We built stoichiometric, multitrophic ecosystem networks depicting biomass and material flows of carbon, nitrogen and phosphorus in three subsystems of the bight. The networks were analysed to investigate whether the southern, middle and northern bight function similarly in terms of their productivity, transfer efficiency between trophic levels, material cycling, and nutrient limitations. The middle region of the bight was clearly influenced by nutrient additions from the Thukela River, as it had the highest ecosystem productivity, lower transfer efficiencies and degree of cycling. Most nodes in the networks were limited by phosphorus, followed by nitrogen. The middle region adjacent to the Thukela River showed a lower proportion of P limitation especially in summer. Interestingly, there was a clear distinction in sensitivities to nutrient limitations between lower and higher trophic level organisms. This is a reflection of their discrepant nutrient turnover times that are either higher, or lower, than that of the systems, and which might provide a balance to the system through this antagonistic influence. Furthermore, by tracking the stoichiometry through entire food webs it appeared how important the role of lower trophic level organisms was to regulate stoichiometry to more suitable ratios for higher trophic level requirements. Although we gained good insight into the behaviour of the three subsystems in the KZN Bight and the role of terrestrial influence on their functioning, a merged approach of incorporating data on metabolic constraints derived from experiments could further improve the representativeness of multitrophic stoichiometric ecosystem networks.
机译:近海海洋生态系统可从其与邻近生态系统的相互作用中受益,特别是如果它们减轻了营养不良地区的营养限制。在我们的由低营养到中营养的研究区域(南非亚热带东海岸的夸祖鲁-纳塔尔海岸线)就是这种情况,该地区与阿古拉斯河流接壤。我们建立了化学计量的,多营养的生态系统网络,描绘了海岸线三个子系统中的生物量以及碳,氮和磷的物质流。对这些网络进行了分析,以调查南部,中部和北部海岸线在生产力,营养水平之间的转移效率,物质循环和养分限制方面是否具有相似的功能。海岸线的中部地区明显受到Thukela河的营养添加的影响,因为它具有最高的生态系统生产力,较低的转移效率和循环度。网络中的大多数节点都受到磷的限制,其次是氮。靠近Thukela河的中部地区P限的比例较低,尤其是在夏季。有趣的是,营养水平较低和较高的有机物之间对养分限制的敏感性存在明显区别。这反映了它们不同的养分周转时间比系统的养分周转时间高或低,并且可能通过这种拮抗作用为系统提供平衡。此外,通过追踪整个食物网的化学计量,似乎营养水平较低的生物的作用对于将化学计量调节至更合适的比例以满足更高的营养水平要求具有多么重要的作用。尽管我们对KZN Bight中的三个子系统的行为以及陆地影响对其功能的作用有了很好的了解,但是合并来自实验的代谢限制数据的合并方法可以进一步提高多营养化学计量生态系统网络的代表性。

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