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Redfield Ratios in Inland Waters: Higher Biological Control of C:N:P Ratios in Tropical Semi-arid High Water Residence Time Lakes

机译:内陆水域的红场比率:热带半干旱高水位停留时间湖泊中C:N:P比率的更高生物控制

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摘要

The canonical Redfield C:N:P ratio for algal biomass is often not achieved in inland waters due to higher C and N content and more variability when compared to the oceans. This has been attributed to much lower residence times and higher contributions of the watershed to the total organic matter pool of continental ecosystems. In this study we examined the effect of water residence times in low latitude lakes (in a gradient from humid to a semi-arid region) on seston elemental ratios in different size fractions. We used lake water specific conductivity as a proxy for residence time in a region of Eastern Brazil where there is a strong precipitation gradient. The C:P ratios decreased in the seston and bacterial size-fractions and increased in the dissolved fraction with increasing water retention time, suggesting uptake of N and P from the dissolved pool. Bacterial abundance, production and respiration increased in response to increased residence time and intracellular nutrient availability in agreement with the growth rate hypothesis. Our results reinforce the role of microorganisms in shaping the chemical environment in aquatic systems particularly at long water residence times and highlights the importance of this factor in influencing ecological stoichiometry in all aquatic ecosystems.
机译:内陆水域中藻类生物量的标准Redfield C:N:P比值通常无法实现,因为与海洋相比,其C和N含量更高,并且变异性更大。这归因于停留时间大大减少,流域对大陆生态系统的总有机物质池的贡献更大。在这项研究中,我们研究了低纬度湖泊中水的停留时间(从潮湿到半干旱地区的梯度)对不同大小分数下的元素元素比的影响。我们使用湖水的比电导率作为巴西东部地区降水量梯度大的停留时间的代表。随着保水时间的延长,C:P比值在细菌和细菌的大小级分中降低,而在溶解级分中则增加,表明从溶解池中吸收了N和P。响应生长时间假说,响应于增加的停留时间和细胞内养分的利用率,细菌的丰度,产生和呼吸增加。我们的研究结果增强了微生物在塑造水生系统化学环境中的作用,尤其是在较长的水停留时间,并强调了该因素在影响所有水生生态系统中生态化学计量方面的重要性。

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