Department of Ecology and Ecosystem Modelling, University of Potsdam, Am Neuen Palais 10, 14469, Potsdam, Germany.
ISME J. 2020 Jun;14(6):1451-1462. doi: 10.1038/s41396-020-0619-1. Epub 2020 Mar 3.
Theory predicts that trade-offs, quantifying costs of functional trait adjustments, crucially affect community trait adaptation to altered environmental conditions, but empirical verification is scarce. We evaluated trait dynamics (antipredator defense, maximum growth rate, and phosphate affinity) of a lake phytoplankton community in a seasonally changing environment, using literature trait data and 21 years of species-resolved high-frequency biomass measurements. The trait data indicated a concave defense-growth trade-off, promoting fast-growing species with intermediate defense. With seasonally increasing grazing pressure, the community shifted toward higher defense levels at the cost of lower growth rates along the trade-off curve, while phosphate affinity explained some deviations from it. We discuss how low fitness differences of species, inferred from model simulations, in concert with stabilizing mechanisms, e.g., arising from further trait dimensions, may lead to the observed phytoplankton diversity. In conclusion, quantifying trade-offs is key for predictions of community trait adaptation and biodiversity under environmental change.
理论预测,权衡(量化功能性状调整的成本)对于群落适应环境变化的性状至关重要,但实证验证却很少。我们使用文献性状数据和 21 年的高分辨率生物量测量数据,评估了季节性变化环境中湖泊浮游植物群落的性状动态(抗捕食防御、最大增长率和磷酸盐亲和力)。性状数据表明存在防御-生长权衡关系,促进了具有中等防御水平的快速生长物种。随着季节性放牧压力的增加,群落沿着权衡曲线向更高的防御水平转移,而磷酸盐亲和力则解释了其偏离的部分原因。我们讨论了物种低适应度差异,以及稳定机制(例如,由进一步的性状维度引起的稳定机制)如何导致观察到的浮游植物多样性。总之,权衡的量化对于预测环境变化下群落的性状适应和生物多样性至关重要。