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Biodiversity loss in a Mediterranean ecosystem due to an extreme warming event unveils the role of an engineering gorgonian species

机译:由于极端变暖事件导致地中海生态系统中的生物多样性丧失揭示了工程性高粱物种的作用

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摘要

Stochastic perturbations can trigger major ecosystem shifts. Marine systems have been severely affected in recent years by mass mortality events related to positive thermal anomalies. Although the immediate effects in the species demography affected by mortality events are well known, information on the mid- to long-term effects at the community level is much less documented. Here, we show how an extreme warming event replaces a structurally complex habitat, dominated by long-lived species, by a simplified habitat (lower species diversity and richness) dominated by turf-forming species. On the basis of a study involving the experimental manipulation of the presence of the gorgonian Paramuricea clavata, we observed that its presence mitigated the effects of warming by maintaining the original assemblage dominated by macroinvertebrates and delaying the proliferation and spread of the invasive alga Caulerpa cylindracea. However, due to the increase of sediment and turf-forming species after the mortality event we hypothesize a further degradation of the whole assemblage as both factors decrease the recruitment of P.clavata, decrease the survival of encrusting coralligenous-dwelling macroinvertebrates and facilitate the spreading of C. cylindracea.
机译:随机扰动会触发生态系统的重大转变。近年来,海洋系统受到与正热异常有关的大规模死亡事件的严重影响。尽管众所周知,受死亡事件影响的物种人口统计学会立即产生影响,但是有关社区一级中长期影响的信息却很少。在这里,我们展示了极端变暖事件如何通过以草皮形成物种为主的简化栖息地(物种多样性和丰富度较低)来代替以长寿物种为主的结构复杂的栖息地。在一项涉及实验性控制高粱旁Para的存在的研究的基础上,我们观察到它的存在通过维持由大型无脊椎动物主导的原始组合并延迟入侵藻类Caulerpa cylindracea的繁殖和扩散而减轻了变暖的影响。然而,由于死亡事件后沉积物和形成草皮的物种的增加,我们推测整个组合的进一步退化,因为这两个因素都会减少虾蟹的招募,降低包埋珊瑚的大型无脊椎动物的生存并促进传播C. cylindracea。

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