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首页> 外文期刊>Ecology letters >Limited functional redundancy in high diversity systems: resilience and ecosystem function on coral reefs
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Limited functional redundancy in high diversity systems: resilience and ecosystem function on coral reefs

机译:高多样性系统中有限的功能冗余:珊瑚礁的复原力和生态系统功能

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Biodiversity is frequently associated with functional redundancy. Indo-Pacific coral reefs incorporate some of the most diverse ecosystems on the globe with over 3000 species of fishes recorded from the region. Despite this diversity, we document changes in ecosystem function on coral reefs at regional biogeographical scales as a result of overfishing of just one species, the giant humphead parrotfish (Bolbometopon muricatum). Each parrotfish ingests over 5 tonnes of structural reef carbonates per year, almost half being living corals. On relatively unexploited oceanic reefs, total ingestion rates per m~2 balance estimated rates of reef growth. However, human activity and ecosystem disruption are strongly correlated, regardless of local fish biodiversity. The results emphasize the need to consider the functional role of species when formulating management strategies and the potential weakness of the link between biodiversity and ecosystem resilience.
机译:生物多样性通常与功能冗余相关。印度洋-太平洋珊瑚礁融合了全球一些最多样化的生态系统,该地区记录了3000多种鱼类。尽管存在这种多样性,但我们记录了由于仅捕捞一种巨大的驼头鹦嘴鱼(Bolbometopon muricatum)而导致的区域生物地理尺度上珊瑚礁生态系统功能的变化。每个鹦嘴鱼每年摄取超过5吨的结构性碳酸盐碳酸盐,其中近一半是活珊瑚。在相对未开发的海洋礁石上,每m〜2的总摄食率与估计的礁石生长率保持平衡。但是,无论当地鱼类的生物多样性如何,人类活动和生态系统破坏都密切相关。结果强调,在制定管理战略时必须考虑物种的功能作用,以及生物多样性与生态系统复原力之间联系的潜在弱点。

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