ARC Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, QLD 4811, Australia.
Lancaster Environment Centre, Lancaster University, Lancaster, LA1 4YQ, United Kingdom.
Sci Rep. 2017 Aug 8;7(1):7557. doi: 10.1038/s41598-017-08109-4.
The availability of habitat structure across spatial scales can determine ecological organization and resilience. However, anthropogenic disturbances are altering the abundance and composition of habitat-forming organisms. How such shifts in the composition of these organisms alter the physical structure of habitats across ecologically important scales remains unclear. At a time of unprecedented coral loss and homogenization of coral assemblages globally, we investigate the inherent structural complexity of taxonomically distinct reefs, across five ecologically relevant scales of measurement (4-64 cm). We show that structural complexity was influenced by coral species composition, and was not a simple function of coral cover on the studied reefs. However, inter-habitat variation in structural complexity changed with scale. Importantly, the scales at which habitat structure was available also varied among habitats. Complexity at the smallest, most vulnerable scale (4 cm) varied the most among habitats, which could have inferences for as much as half of all reef fishes which are small-bodied and refuge dependent for much of their lives. As disturbances continue and species shifts persist, the future of these ecosystems may rely on a greater concern for the composition of habitat-building species and prioritization of particular configurations for protection of maximal cross-scale habitat structural complexity.
生境结构在不同空间尺度上的可利用性可以决定生态组织和恢复力。然而,人为干扰正在改变形成生境的生物的丰度和组成。这些生物组成的变化如何改变生态重要尺度上生境的物理结构仍不清楚。在全球珊瑚大量减少和珊瑚生物群同质化的空前时期,我们研究了五个生态相关的测量尺度(4-64cm)上具有不同分类学特征的珊瑚礁的固有结构复杂性。我们表明,结构复杂性受珊瑚物种组成的影响,而不是研究珊瑚礁上珊瑚盖度的简单函数。然而,结构复杂性的栖息地间差异随尺度而变化。重要的是,生境结构在不同生境中可用的尺度也不同。在最小、最脆弱的尺度(4cm)上,生境结构的复杂性在生境间变化最大,这可能对多达一半的所有珊瑚鱼类产生影响,这些鱼类体型较小,在其生命的大部分时间都依赖避难所。随着干扰的继续和物种的持续变化,这些生态系统的未来可能需要更加关注构建生境的物种的组成,并优先保护特定配置,以实现最大的跨尺度生境结构复杂性。