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Population-level responses of stream macroinvertebrates to drying can be density-independent or density-dependent

机译:溪流大型无脊椎动物对干燥的种群水平响应可能与密度无关或与密度有关

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The frequency and intensity of droughts and stream drying are likely to increase with climate change, but how freshwater macroinvertebrate populations respond to such disturbances is poorly understood. Theory predicts that stochastic disturbances should generate density-independent mortality, but density dependence is possible if mortality arises indirectly through changes in consumer-resource dynamics, or if mortality is mediated by disturbance refugia. Empirical evidence for density-dependent or density-independent mortality in freshwater invertebrates is scarce, but important to predict how population sizes will alter with changing climate. In a stream mesocosm experiment, we tested whether short-term drying events (5-6days) resulted in population losses of macroinvertebrates, and whether any losses were density-dependent or density-independent. On each of 10 replicate drying events over a year and over a naturally occurring range of invertebrate densities, we measured pre- and post-disturbance densities. From these data, we calculated per capita mortality rates, tested statistically for associations between mortality rates and pre-disturbance densities, and assessed whether mortality differed seasonally. Invertebrate assemblages in the channels were derived from a chalk stream in south-west England. Analyses focussed on 12 core taxa that were common in the community, which included a taxonomically diverse group of worms, Gastropoda, Gammaridae, Diptera, Ephemeroptera and Trichoptera. Responses to drying were species-specific and three different response types were observed. Half of the taxa were resistant to drying and there was no apparent mortality, even in the near-total loss of free water (Potamopyrgus antipodarum, Bezzia sp., Chironomini, Radix balthica and two groups of Naididae). Four taxa showed density-independent mortality (Polycentropus flavomaculatus, Tanypodinae, Gammarus pulex, Baetis scambus), but differed in vulnerability with per capita loss rates ranging from 57 to 100%. Strong evidence of density-dependent mortality was observed in Orthocladiinae and suggested also for Tanytarsini. Mortality varied seasonally for only one taxon (Tanytarsini), with higher mortality in warm versus cool months. Particular response types were not necessarily associated with particular taxonomic groups or body shapes. This range of responses to drying by different, naturally co-occurring, populations suggests that community-level impacts of drying are underpinned by diverse, taxon-specific responses. The experiment provides some support for theoretical predictions of density-independent mortality, but also some of the first evidence that disturbance refugia can result in density-dependent mortality.
机译:干旱和溪流干燥的频率和强度可能随气候变化而增加,但人们对淡水大型无脊椎动物种群如何应对此类干扰的了解却很少。理论预测,随机干扰会产生与密度无关的死亡率,但是如果死亡率是通过消费者资源动态变化间接产生的,或者死亡率是由干扰避难所介导的,则密度依赖性是可能的。淡水无脊椎动物中依赖密度或依赖密度的死亡率的经验证据很少,但对于预测人口规模将如何随着气候变化而改变至关重要。在流介观实验中,我们测试了短期干燥事件(5-6天)是否导致大型无脊椎动物种群损失,以及是否有任何损失是密度依赖性或密度依赖性的。在一年中和自然发生的无脊椎动物密度范围内的10次重复干燥事件中,我们分别测量了扰动前后的密度。从这些数据中,我们计算了人均死亡率,对死亡率与骚扰前的密度之间的关联性进行了统计检验,并评估了死亡率是否随季节变化。河道中的无脊椎动物集合来自英格兰西南部的白垩流。分析的重点是社区中常见的12个核心类群,其中包括蠕虫,腹足纲,伽马科,双翅目,E翅目和毛鳞翅目等分类学上不同的蠕虫。对干燥的响应是特定于物种的,观察到三种不同的响应类型。一半的分类单元对干燥具有抗性,即使在几乎完全丧失自由水的情况下也没有明显的死亡率(Potamopyrgus antipodarum,Bezzia sp。,Chironomini,Balixica和两组Naididae)。四个分类单元显示出不依赖于密度的死亡率(Polycentropus flavomaculatus,Tanypodinae,Gammarus pulex,Baetis scambus),但脆弱性有所不同,人均损失率为57%至100%。有明显的证据表明,在邻cla科中存在依赖密度的死亡率,对于坦尼塔西尼也有提示。死亡率仅在一个分类单元(Tanytarsini)上随季节变化,在温暖和凉爽的月份死亡率较高。特定的响应类型不一定与特定的分类组或体型相关。不同的自然共生种群对干燥的反应范围如此广泛,这表明,不同的分类单元特异性反应可支持社区层面的干燥影响。该实验为密度无关死亡率的理论预测提供了支持,但也为干扰避难所可导致密度依赖性死亡率提供了一些初步证据。

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