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浮游植物群落对不同营养浓度和化学计量条件下温度波动的响应。

Phytoplankton community responses to temperature fluctuations under different nutrient concentrations and stoichiometry.

机构信息

Institute for Chemistry and Biology of the Marine Environment (ICBM), University of Oldenburg, Schleusenstrsse 1, 26382, Wilhelmshaven, Germany.

Laboratoire Microorganismes Génome et Environnement (LMGE), UMR CNRS 6023, Université Clermont Auvergne, 1 ImpasseAmélie Murat, F-63178, Aubière cedex, France.

出版信息

Ecology. 2019 Nov;100(11):e02834. doi: 10.1002/ecy.2834. Epub 2019 Aug 23.

Abstract

Nutrient availability and temperature are important drivers of phytoplankton growth and stoichiometry. However, the interactive effects of nutrients and temperature on phytoplankton have been analyzed mostly by addressing changes in average temperature, whereas recent evidence suggests an important role of temperature fluctuations. In a laboratory experiment, we grew a natural phytoplankton community under fluctuating and constant temperature regimes across 25 combinations of nitrogen (N) and phosphorus (P) supply. Temperature fluctuations decreased phytoplankton growth rate (r ), as predicted by nonlinear averaging along the temperature-growth relationship. r increased with increasing P supply, and a significant temperature × P × N interaction reflected that the shape of the thermal reaction norm depended on nutrients. By contrast, phytoplankton carrying capacity increased with N supply and in fluctuating rather than constant temperature. Higher phytoplankton N:P ratios under constant temperature showed that temperature regimes affected cellular nutrient incorporation. Minor differences in species diversity and composition existed. Our results suggest that temperature variability interacts with nutrient supply to affect phytoplankton physiology and stoichiometry at the community level.

摘要

养分可用性和温度是浮游植物生长和化学计量的重要驱动因素。然而,养分和温度对浮游植物的相互影响主要通过解决平均温度的变化来分析,而最近的证据表明温度波动起着重要作用。在一项实验室实验中,我们在 25 种氮 (N) 和磷 (P) 供应组合下,通过不断变化和恒定的温度条件来培养自然浮游植物群落。正如沿温度-生长关系的非线性平均所预测的那样,温度波动降低了浮游植物的生长率 (r)。r 随着 P 供应的增加而增加,而显著的温度×P×N 相互作用表明,热反应规范的形状取决于养分。相比之下,浮游植物的承载能力随着 N 供应的增加而增加,并且在波动而不是恒定的温度下增加。在恒定温度下,浮游植物的 N:P 比更高,表明温度条件影响细胞养分的吸收。物种多样性和组成存在较小差异。我们的研究结果表明,温度变异性与养分供应相互作用,影响浮游植物在群落水平上的生理和化学计量。

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