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Systematically Variable Planktonic Carbon Metabolism Along a Land-To-Lake Gradient in a Great Lakes Coastal Zone

机译:大湖沿岸地区沿陆-陆梯度的系统可变浮游生物碳代谢

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摘要

During the summers of 2002–2013, we measured rates of carbon metabolism in surface waters of six sites across a land-to-lake gradient from the upstream end of drowned river-mouth Muskegon Lake (ML) (freshwater estuary) to 19 km offshore in Lake Michigan (LM) (a Great Lake). Despite considerable inter-year variability, the average rates of gross production (GP), respiration (R) and net production (NP) across ML (604 ± 58, 222 ± 22 and 381 ± 52 µg C L−1 day−1, respectively) decreased steeply in the furthest offshore LM site (22 ± 3, 55 ± 17 and −33 ± 15 µg C L−1day−1, respectively). Along this land-to-lake gradient, GP decreased by 96 ± 1%, whereas R only decreased by 75 ± 9%, variably influencing the carbon balance along this coastal zone. All ML sites were consistently net autotrophic (mean GP:R = 2.7), while the furthest offshore LM site was net heterotrophic (mean GP:R = 0.4). Our study suggests that pelagic waters of this Great Lakes coastal estuary are net carbon sinks that transition into net carbon sources offshore. Reactive and dynamic estuarine coastal zones everywhere may contribute similarly to regional and global carbon cycles.
机译:在2002–2013年夏季,我们测量了从淹死的河口马斯基根湖(ML)(淡水河口)上游到离岸19公里的陆地-湖泊梯度范围内六个地点的地表水中碳代谢速率在密歇根湖(LM)(大湖)中。尽管年际差异很大,但ML的平均总生产率(GP),呼吸(R)和净生产率(NP)分别为CL-1天-1,分别为604±58,222±22和381±52 µg )在最远的海上LM站点急剧下降(分别为22±3、55±17和-33±15 µg CL-1day-1)。沿着这个陆-湖梯度,GP下降了96±1%,而R仅下降了75±9%,从而不同程度地影响了该沿海地区的碳平衡。所有的ML部位始终是净自养性(平均GP:R = 2.7),而最远的近海LM部位是纯异养的(平均GP:R = 0.4)。我们的研究表明,大湖区沿海河口的中上层水是净碳汇,这些碳汇转变为近海的净碳源。各地的反应性和动态河口沿海地区可能对区域和全球碳循环做出类似贡献。

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