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Solar irradiance and ENSO affect food security in Lake Tanganyika, a major African inland fishery

机译:太阳辐照度和ENSO在非洲内陆渔业大型内陆渔业喀万卡湖中影响粮食安全

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Food security in a warming world is a grave concern for rapidly growing impoverished populations. Low-latitude inland fisheries provide protein for millions of rural poor, yet the impacts of high-frequency climate oscillations on these aquatic ecosystems are unknown. Here, we present a sub-annual–to–annual resolution paleolimnological reconstruction of upwelling, productivity, and algal composition at Lake Tanganyika, one of Africa’s largest landlocked fisheries. The data reveal increases in diatom production at centennial-scale solar irradiance maxima, and interannual variability in upwelling linked to La Ni?a. Our study shows that interactions between global climatic controls and El Ni?o–Southern Oscillation teleconnections exert profound influences on the foundation of Lake Tanganyika’s food web. Adapting long-term management practices to account for high-frequency changes in algal production will help safeguard inland fish resources.
机译:在温暖的世界中的粮食安全是对快速增长的贫困人口的严重关切。低纬度内陆渔业为数百万农村贫民提供蛋白质,但高频气候振荡对这些水生生态系统的影响是未知的。在这里,我们在非洲最大的内陆渔业之一展示唐安尼卡湖的上涨,生产力和藻类组合的次年到年度积分古学重建。数据揭示了沿着百年太阳辐照度最大值的硅藻生产增加,并与La Ni的升值持续变异?a。我们的研究表明,全球气候控制与EL NI之间的相互作用对南山湖食品网湖的基础产生了深远的影响。调整长期管理实践以考虑藻类生产中的高频变化,将有助于保护内陆鱼类资源。

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