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The allometry of the smallest: superlinear scaling of microbial metabolic rates in the Atlantic Ocean

机译:最小的异速测量法:大西洋中微生物代谢率的超线性尺度

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摘要

Prokaryotic planktonic organisms are small in size but largely relevant in marine biogeochemical cycles. Due to their reduced size range (0.2 to 1 μm in diameter), the effects of cell size on their metabolism have been hardly considered and are usually not examined in field studies. Here, we show the results of size-fractionated experiments of marine microbial respiration rate along a latitudinal transect in the Atlantic Ocean. The scaling exponents obtained from the power relationship between respiration rate and size were significantly higher than one. This superlinearity was ubiquitous across the latitudinal transect but its value was not universal revealing a strong albeit heterogeneous effect of cell size on microbial metabolism. Our results suggest that the latitudinal differences observed are the combined result of changes in cell size and composition between functional groups within prokaryotes. Communities where the largest size fraction was dominated by prokaryotic cyanobacteria, especially Prochlorococcus, have lower allometric exponents. We hypothesize that these larger, more complex prokaryotes fall close to the evolutionary transition between prokaryotes and protists, in a range where surface area starts to constrain metabolism and, hence, are expected to follow a scaling closer to linearity.
机译:原核浮游生物体虽小,但在海洋生物地球化学循环中具有重要意义。由于它们的大小范围缩小(直径为0.2至1μm),因此几乎没有考虑细胞大小对其代谢的影响,通常在野外研究中未进行研究。在这里,我们显示了在大西洋沿纬度横断面的海洋微生物呼吸速率的大小分级实验结果。从呼吸速率和大小之间的幂关系获得的缩放指数显着高于1。这种超线性在整个横断面上都是普遍存在的,但它的价值并不普遍,这表明尽管细胞大小对微生物代谢具有很强的异质性影响。我们的结果表明,所观察到的纬度差异是原核生物内功能组之间细胞大小和组成变化的综合结果。规模最大的社区主要是原核生物蓝细菌,特别是原球菌,其异速指数较低。我们假设这些更大,更复杂的原核生物接近于原核生物和原生生物之间的进化过渡,而在该区域表面积开始限制新陈代谢,因此有望遵循接近线性的比例。

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