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首页> 外文期刊>The Journal of Applied Ecology >The sound of recovery: Coral reef restoration success is detectable in the soundscape
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The sound of recovery: Coral reef restoration success is detectable in the soundscape

机译:复苏的声音:珊瑚礁修复成功是探测音景

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Pantropical degradation of coral reefs is prompting considerable investment in their active restoration. However, current measures of restoration success are based largely on coral cover, which does not fully reflect ecosystem function or reef health. Soundscapes are an important aspect of reef health; loud and diverse soundscapes guide the recruitment of reef organisms, but this process is compromised when degradation denudes soundscapes. As such, acoustic recovery is a functionally important component of ecosystem recovery. Here, we use acoustic recordings taken at one of the world's largest coral reef restoration projects to test whether successful restoration of benthic and fish communities is accompanied by a restored soundscape. We analyse recordings taken simultaneously on healthy, degraded (extensive historic blast fishing) and restored reefs (restoration carried out for 1-3 years on previously degraded reefs). We compare soundscapes using manual counts of biotic sounds (phonic richness), and two commonly used computational analyses (acoustic complexity index [ACI] and sound-pressure level [SPL]). Healthy and restored reef soundscapes exhibited a similar diversity of biotic sounds (phonic richness), which was significantly higher than degraded reef soundscapes. This pattern was replicated in some automated analyses but not others; the ACI exhibited the same qualitative result as phonic richness in a low-frequency, but not a high-frequency bandwidth, and there was no significant difference between SPL values in either frequency bandwidth. Furthermore, the low-frequency ACI and phonic richness scores were only weakly correlated despite showing a qualitatively equivalent overall result, suggesting that these metrics are likely to be driven by different aspects of the reef soundscape. Synthesis and applications. These data show that coral restoration can lead to soundscape recovery, demonstrating the return of an important ecosystem function. They also suggest that passive acoustic monitoring (PAM) might provide functionally important measures of ecosystem-level recovery-but only some PAM metrics reflect ecological status, and those that did are likely to be driven by different communities of soniferous animals. Recording soundscapes represents a potentially valuable tool for evaluating restoration success across ecosystems, but caution must be exercised when choosing metrics and interpreting results.
机译:泛热带珊瑚礁退化促使大量投资在他们的活跃恢复。恢复成功很大程度上是基于珊瑚盖,不完全反映生态系统函数或珊瑚礁健康。珊瑚礁健康的重要方面;音景指导招聘礁生物,但是这个过程被破坏时退化剥夺音景。声复苏是一个功能很重要生态系统的恢复。声录音之一在世界上最大的珊瑚礁修复项目测试底栖生物修复和是否成功鱼社区伴随着恢复音景。同时在健康、退化(广泛历史性的爆炸钓鱼)和恢复珊瑚礁(恢复为1 - 3年以前的珊瑚退化)。使用手册项生物声音音景(声音的丰富),和两个常用的(声学复杂性指数计算分析(ACI)和声压级别(SPL))。和恢复珊瑚礁音景表现出类似的生物多样性的声音(声音的丰富),这是明显高于退化珊瑚礁吗音景。自动分析而不是其他人;表现出相同的定性结果是有声的丰富的低频,但不是一个高频率带宽,也没有SPL值之间的显著差异要么频率带宽。低频ACI和声学的丰富性分数尽管显示只有弱相关定性等价的总体结果,表明这些指标可能会由珊瑚礁的不同方面音景。数据表明,珊瑚修复会导致音景复苏,展示的回归一个重要的生态功能。表明,被动声学监测(PAM)可能会提供功能的重要措施生态层面经济复苏只有一些PAM指标反映的生态地位,和那些可能是由不同的吗社区有响声的动物。音景代表一个潜在的价值评估工具修复成功生态系统,但必须小心谨慎选择指标和结果的解释。

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