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Spatial and temporal dynamics of habitat selection across canopy gradients generates patterns of species richness and composition in aquatic beetles

机译:跨越冠层梯度的生境选择的时空动态产生了水生甲虫物种丰富度和组成的模式

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1. Colonisation is a critical ecological process influencing both population and community level dynamics by connecting spatially discrete habitat patches. How communities respond to both natural and anthropogenic disturbances, furthermore, requires a basic understanding of how any environmental change modifies colonisation rates. For example, disturbance-induced shifts in the quantity of forest cover surrounding aquatic habitats have been associated with the distribution and abundance of numerous aquatic taxa. However, the mechanisms generating these broad and repeatable field patterns are unclear. 2. Such patterns of diversity could result from differential spatial mortality post colonisation, or from colonisation alone if species select sites non-randomly along canopy coverage gradients. We examined the colonisation/oviposition dynamics of aquatic beetles in experimental ponds placed under both open and closed forest canopies. 3. Canopy coverage imposed a substantial behavioural filter on the colonisation and reproduction of aquatic beetles representing multiple trophic levels, and resulted in significantly higher abundance, richness, and oviposition activity in open canopy ponds. These patterns strengthened overtime; although early in the experiment, the most abundant beetle had similar abundance in open and closed ponds. However, its abundance subsequently declined and then most other species heavily colonised open canopy ponds. 4. The primary response of many aquatic species to disturbances that generate canopy coverage gradients surrounding aquatic ecosystems is behavioural. The magnitude of the colonisation responses reported here rivals, if not exceeds, those produced by predators, suggesting that aquatic landscapes are behaviourally assessed and partitioned across multiple environmental gradients. The community level structure produced solely by selective colonisation, is predicted to strongly modify how patch area and isolation affect colonisation rates and the degree to which communities are linked by the flux of individuals and species.
机译:1.殖民化是通过连接空间离散的栖息地斑块而影响人口和社区水平动态的重要生态过程。此外,社区如何应对自然和人为干扰,还需要对任何环境变化如何改变殖民化率有基本的了解。例如,扰动引起的水生生境周围森林覆盖物数量的变化与许多水生生物类群的分布和丰富度有关。但是,产生这些广泛且可重复的场模式的机制尚不清楚。 2.这种多样性的模式可能是由于定居后空间死亡率的差异,或者是由于物种沿冠层覆盖梯度非随机地选择地点而单独定居的结果。我们检查了在开放式和封闭式林冠下的实验池塘中水生甲虫的定殖/产卵动态。 3.冠层覆盖对代表多个营养水平的水生甲虫的定殖和繁殖施加了实质性的行为过滤,并导致开放冠层池塘中的丰度,丰富度和产卵活性大大提高。这些模式加班了;尽管在实验的早期,最丰富的甲虫在开放和封闭的池塘中具有相似的丰度。但是,其丰度随后下降,然后大多数其他物种在开放的冠层池塘中大量繁殖。 4.许多水生物种对扰动的主要反应是行为,这是在水生生态系统周围产生冠层覆盖梯度的干扰。此处报道的定殖反应的规模与捕食者产生的定殖反应规模相当,甚至可以超过,这表明对水生景观的行为进行了评估,并将其划分为多个环境梯度。据预测,仅由选择性定殖产生的群落水平结构将极大地改变斑块面积和隔离对定殖率的影响,以及通过个体和物种的流动而将群落联系在一起的程度。

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