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Linking fishes to multiple metrics of coral reef structural complexity using three-dimensional technology

机译:使用三维技术将鱼与珊瑚礁结构复杂性的多个指标联系起来

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摘要

Structural complexity strongly influences biodiversity and ecosystem productivity. On coral reefs, structural complexity is typically measured using a single and small-scale metric (‘rugosity’) that represents multiple spatial attributes differentially exploited by species, thus limiting a complete understanding of how fish associate with reef structure. We used a novel approach to compare relationships between fishes and previously unavailable components of reef complexity, and contrasted the results against the traditional rugosity index. This study focused on damselfish to explore relationships between fishes and reef structure. Three territorial species, with contrasting trophic habits and expected use of the reef structure, were examined to infer the potential species-specific mechanisms associated with how complexity influences habitat selection. Three-dimensional reef reconstructions from photogrammetry quantified the following metrics of habitat quality: 1) visual exposure to predators and competitors, 2) density of predation refuges and 3) substrate-related food availability. These metrics explained the species distribution better than the traditional measure of rugosity, and each species responded to different complexity components. Given that a critical effect of reef degradation is loss of structure, adopting three-dimensional technologies potentially offers a new tool to both understand species-habitat association and help forecast how fishes will be affected by the flattening of reefs.
机译:结构的复杂性强烈影响生物多样性和生态系统的生产力。在珊瑚礁上,结构复杂性通常使用单个和小规模的度量标准(“皱纹度”)来衡量,该度量标准表示物种不同利用的多个空间属性,从而限制了人们对鱼类与珊瑚礁结构的关系的完整了解。我们使用一种新颖的方法来比较鱼类与以前无法获得的珊瑚礁复杂性之间的关系,并将结果与​​传统的皱纹指数进行对比。这项研究侧重于雀鲷,以探索鱼类与珊瑚礁结构之间的关系。研究人员通过对比了营养习惯和珊瑚礁结构的预期用途来研究三种领土物种,以推断出与物种复杂性如何影响栖息地选择相关的潜在物种特定机制。摄影测量法对珊瑚礁的三维重建量化了以下栖息地质量指标:1)肉食者和竞争者的视觉暴露; 2)捕食避难所的密度; 3)与基质相关的食物供应。这些度量标准比传统的皱纹度量更好地解释了物种分布,并且每个物种都对不同的复杂性组件做出了响应。鉴于礁石退化的关键影响是结构的丧失,采用三维技术可能提供一种新工具,既可以理解物种与栖息地的联系,又可以帮助预测鱼类将如何受到礁石平坦化的影响。

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