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首页> 外文期刊>Global change biology >Extreme drought pushes stream invertebrate communities over functional thresholds
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Extreme drought pushes stream invertebrate communities over functional thresholds

机译:极端干旱推动流量的无脊椎动物社区通过功能阈值

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Functional traits are increasingly being used to predict extinction risks and range shifts under long-term climate change scenarios, but have rarely been used to study vulnerability to extreme climatic events, such as supraseasonal droughts. In streams, drought intensification can cross thresholds of habitat loss, where marginal changes in environmental conditions trigger disproportionate biotic responses. However, these thresholds have been studied only from a structural perspective, and the existence of functional nonlinearity remains unknown. We explored trends in invertebrate community functional traits along a gradient of drought intensity, simulated over 18 months, using mesocosms analogous to lowland headwater streams. We modelled the responses of 16 traits based on a priori predictions of trait filtering by drought, and also examined the responses of trait profile groups (TPGs) identified via hierarchical cluster analysis. As responses to drought intensification were both linear and nonlinear, generalized additive models (GAMs) were chosen to model response curves, with the slopes of fitted splines used to detect functional thresholds during drought. Drought triggered significant responses in 12 (75%) of the a priori-selected traits. Behavioural traits describing movement (dispersal, locomotion) and diet were sensitive to moderate-intensity drought, as channels fragmented into isolated pools. By comparison, morphological and physiological traits showed little response until surface water was lost, at which point we observed sudden shifts in body size, respiration mode and thermal tolerance. Responses varied widely among TPGs, ranging from population collapses of non-aerial dispersers as channels fragmented to irruptions of small, eurythermic dietary generalists upon extreme dewatering. Our study demonstrates for the first time that relatively small changes in drought intensity can trigger disproportionately large functional shifts in stream communities, suggesting that traits-based approaches could be particularly useful for diagnosing catastrophic ecological responses to global change.
机译:越来越多地用于预测长期气候变化情景下的消失风险和范围的功能性状,但很少被用于研究对极端气候事件的脆弱性,例如SupraseAssears干旱。在溪流中,干旱强化可以交叉栖息地损失的阈值,其中环境条件的边际变化引发不成比例的生物反应。然而,已经仅从结构性角度研究了这些阈值,并且功能性非线性的存在仍然是未知的。我们沿着干旱强度的梯度探讨无脊椎动物群落功能性状的趋势,超过18个月模拟,使用类似于低地地下水流的Mesocosms。我们基于干旱的特征滤波的先验预测建模了16个特征的响应,并通过分层集群分析检查了特征谱分组(TPG)的响应。由于对干旱强化的反应是线性和非线性的,选择广义添加剂模型(Gam)以模拟响应曲线,用拟合花键的斜率用于检测干旱期间的功能阈值。干旱引发了12(75%)的先前选择的特征的重要反应。描述运动(分散,运动)和饮食的行为特征对中等强度干旱敏感,因为往复到分离的池中的通道。通过比较,形态和生理性状表现出很少的反应,直到表面水丢失,在此时我们观察到体尺寸,呼吸模式和热容差的突然变化。响应在TPG之间广泛变化,从非空中分散器的人口崩溃等于诸如极端脱水时分散到小的肠道膳食通用灌溉的渠道。我们的研究首次证明了干旱强度的相对较小的变化可以触发流社区中的不成比例的功能变化,表明基于特性的方法对于诊断灾难性的生态反应来诊断到全球变革特别有用。

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