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Effect of habitat degradation on competition, carrying capacity, and species assemblage stability

机译:生境退化对竞争,承载能力和物种组合稳定性的影响

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Abstract Changes in species?¢???? trophic niches due to habitat degradation can affect intra- and interspecific competition, with implications for biodiversity persistence. Difficulties of measuring species?¢???? interactions in the field limit our comprehension of competition outcomes along disturbance gradients. Thus, information on how habitat degradation can destabilize food webs is scarce, hindering predictions regarding responses of multispecies systems to environmental changes. Seagrass ecosystems are undergoing degradation. We address effects of Posidonia oceanica coverage reduction on the trophic organization of a macroinvertebrate community in the Tyrrhenian Sea (Italy), hypothesizing increased trophic generalism, niche overlap among species and thus competition and decreased community stability due to degraded conditions. Census data, isotopic analysis, and Bayesian mixing models were used to quantify the trophic niches of three abundant invertebrate species, and intra- and interspecific isotopic and resource-use similarity across locations differing in seagrass coverage. This allowed the computation of (1) competition strength, with respect to each other and remaining less abundant species and (2) habitat carrying capacity. To explore effects of the spatial scale on the interactions, we considered both individual locations and the entire study area (?¢?????¢????meadow scale?¢????). We observed that community stability and habitat carrying capacity decreased as P. oceanica coverage declined, whereas niche width, similarity of resource use and interspecific competition strength between species increased. Competition was stronger, and stability lower, at the meadow scale than at the location scale. Indirect effects of competition and the spatial compartmentalization of species interactions increased stability. Results emphasized the importance of trophic niche modifications for understanding effects of habitat loss on biodiversity persistence. Calculation of competition coefficients based on isotopic distances is a promising tool for describing competitive interactions in real communities, potentially extendible to any subset of ecological niche axes for which specimens?¢???? positions and pairwise distances can be obtained.
机译:摘要物种变化?栖息地退化造成的营养位可能影响种内和种间竞争,从而影响生物多样性的持久性。测量物种的困难?现场的相互作用限制了我们对沿着干扰梯度的竞争结果的理解。因此,缺乏关于生境退化如何破坏食物网稳定的信息,妨碍了关于多物种系统对环境变化的反应的预测。海草生态系统正在退化。我们解决了波西多尼亚大洋洲覆盖减少对第勒尼安海(意大利)的大型无脊椎动物群落的营养组织的影响,并假设营养不良的普遍性增强,物种之间的生态位重叠以及竞争由于条件退化而造成的群落稳定性下降,从而降低了种群稳定性。人口普查数据,同位素分析和贝叶斯混合模型用于量化三种丰富的无脊椎动物物种的营养位,以及海草覆盖范围不同位置之间的种内和种间同位素以及资源利用相似性。这样就可以计算出(1)彼此之间的竞争强度,以及剩余物种较少的物种,以及(2)栖息地的承载能力。为了探索空间尺度对相互作用的影响,我们同时考虑了单个位置和整个研究区域(“草地尺度”)。我们观察到,随着海洋运动覆盖率的下降,群落的稳定性和栖息地的承载能力下降,而生态位宽度,资源利用的相似性和物种之间的种间竞争强度则增加。草地规模的竞争比地点规模的竞争更激烈,稳定性更低。竞争的间接影响和物种相互作用的空间划分增加了稳定性。结果强调了营养生态位修饰对于了解生境丧失对生物多样性持久性的影响的重要性。基于同位素距离的竞争系数计算是描述真实社区中竞争相互作用的一种有前途的工具,可以潜在地扩展到标本的生态位轴的任何子集。可以获得位置和成对的距离。

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