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Disturbance-mediated facilitation by an intertidal ecosystem engineer

机译:由跨境生态系统工程师的扰动介导的便利化

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Ecosystem engineers facilitate communities by providing a structural habitat that reduces abiotic stress or predation pressure for associated species. However, disturbance may damage or move the engineer to a more stressful environment, possibly increasing the importance of facilitation for associated communities. In this study, we determined how disturbance to intertidal boulders (i.e., flipping) and the subsequent movement of a structural ecosystem engineer, the tube-forming serpulid worm Galeolaria caespitosa, from the bottom (natural state, low abiotic stress) to the top (disturbed state, high abiotic stress) surface of boulders influenced the importance of facilitation for intertidal communities across two intertidal zones. Theory predicts stronger relative facilitation should occur in the harsher environments of the top of boulders and the high intertidal zone. To test this prediction, we experimentally positioned boulders with the serpulids either face up or face down for 12 months in low and high zones in an intertidal boulder field. There were very different communities associated with the different boulders and serpulids had the strongest facilitative effects on the more stressful top surface of boulders with approximately double the species richness compared to boulders lacking serpulids. Moreover, within the serpulid matrix itself there was also approximately double the species richness (both zones) and abundance (high zone only) of small invertebrates on the top of boulders compared to the bottom. The high relative facilitation on the top of boulders reflected a large reduction in temperature by the serpulid matrix on that surface (up to 10 degrees C) highlighting a key role for modification of the abiotic environment in determining the community-wide facilitation. This study has demonstrated that disturbance and subsequent movement of an ecosystem engineer to a more stressful environment increased the importance of facilitation and allowed species to persist that would otherwise be unable to survive in that environment.
机译:生态系统工程师通过提供一种结构栖息地来促进社区,从而减少相关物种的非生物应激或捕食压力。然而,干扰可能会损坏或将工程师移动到更加紧张的环境,可能提高有关社区的便利化的重要性。在这项研究中,我们确定了对间隙巨石(即,翻转)和随后的结构生态系统工程师的扰动以及从底部(自然状态,低非生物应力)到顶部的管 - 形成的锯齿状蠕虫GaleoLaria caespitosa(令人不安的状态,高非生物应激)表面的巨石表面影响了两种跨境区域的透视社区的便利化的重要性。理论预测,巨石顶部的骚扰环境和高潮间区的骚扰环境中应该发生更强的相对便利。为了测试这一预测,我们在透模巨石场中的低和高地区面朝上或面朝下,通过将巨石与丝状物的巨石定位在一起或面朝下降12个月。与不同的巨石有关的巨冰和锯齿状有关的巨大促进作用,与缺乏锯齿状的巨石相比,对巨石的更加紧张的巨石顶表面具有最强的促进作用。此外,与底部相比,在六硫基矩阵本身中,还有大约两倍的物种丰富度(两个区域)和小型无脊椎动物的丰富(仅限高区)。巨石顶部的高相对促进反映了六硫基质在该表面上的温度大(最多10℃)的大大降低,突出了确定非生物环境在确定社区宽松的促进方面的关键作用。本研究表明,生态系统工程师对更加紧张的环境的干扰和随后的流动增加了促进和允许物种的重要性,否则将无法在该环境中存活。

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