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首页> 外文期刊>Remote Sensing in Ecology and Conservation >Do acoustically detectable species reflect overall diversity? A case study from Australia’s arid zone
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Do acoustically detectable species reflect overall diversity? A case study from Australia’s arid zone

机译:自动检测物种是否反映了整体多样性?澳大利亚干旱区的案例研究

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In recent years, passive acoustic monitoring has emerged as a reliable method for monitoring soniferous fauna, with numerous studies finding estimates of species richness and community composition are comparable with estimates derived from conventional field surveys. Most of these studies compare point counts of forest bird communities with contemporaneous short‐duration acoustic recordings, but several questions remain. How do these two methods compare in more open, arid ecosystems, how does applying methods optimally influence comparisons, and how do patterns in acoustically detectable species compare with overall patterns? Here we demonstrate techniques for improving sampling of acoustic data and conduct acoustic surveys to estimate species richness from ephemeral creek‐lines in the Australian arid zone using a long‐term passively derived acoustic dataset. We examine these results in the context of long‐term observer‐based transect surveys conducted along the same creek‐lines to define species within the avian assemblage that are acoustically detectable or acoustically undetectable/cryptic. Our data suggest that some species were consistently missed by acoustic surveys, but most belonged to groups that are typically excluded from inventories prior to analysis including rare species, raptors, waterbirds, swallows and nocturnal birds. Further, the relative diversities of sites were well estimated by acoustic surveys, with variations between sites reflecting those estimated by observer‐based field surveys. This suggests that in our study system, acoustically detectable species are reliable indicators of overall species richness. Field‐based surveys will remain an important component of sampling in arid ecosystems and we highlight the value of applying acoustic and conventional field‐based surveys in a complementary manner. This approach allows large, publishable datasets to be generated by exploiting the temporal reach of acoustic sensors, while also maximizing detections of acoustically cryptic species via field‐based surveys. We argue that acoustic monitoring has the potential to facilitate greater research effort in largely research‐deficient arid ecosystems.
机译:近年来,被动声学监测被出现为监测麻烦的动植物的可靠方法,许多研究发现物种丰富性和群落组成的估计与传统领域调查的估计相当。这些研究中的大多数比较与同期短期声学录音的森林鸟群的点数,但仍有几个问题。这两种方法如何在更开放,干旱的生态系统中进行比较,应用方法如何最佳地影响比较,以及声学上可检测物种的模式如何与整体模式进行比较?在这里,我们展示了改善声学数据采样的技术,并使用长期被动导出的声学数据集在澳大利亚干旱区中从澳大利亚干旱区中的短期溪线估计物种丰富度。我们在沿着相同的小溪线传导的长期观察者的横转调查中检查这些结果,以限定在声学上可检测或声学不可检测/隐秘的禽类组合中的物种。我们的数据表明,声学调查一直错过了一些物种,但最多属于通常在分析之前从库存中排除的群体,包括稀有物种,猛禽,水鸟,燕子和夜间鸟类。此外,通过声学调查估计存在的位点的相对分集,位点之间的变化反映了基于观察者的现场调查估计的站点之间的变化。这表明在我们的研究系统中,声学可检测物种是整体物种丰富的可靠指标。基于现场的调查将仍然是在干旱生态系统中采样的重要组成部分,并且我们突出了以互补的方式突出显示声学和传统的基于场的调查的价值。这种方法允许通过利用声学传感器的时间范围来生成大型可发出的数据集,同时还通过基于现场的调查最大化声学上隐蔽物种的检测。我们认为声学监测有可能促进大部分研究缺陷的干旱生态系统中的更大的研究工作。

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