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The value of local habitat heterogeneity and productivity when estimating avian species richness and species of concern

机译:估计禽类丰富和物种的局部栖息地异质性和生产率的价值

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As the quality and quantity of natural habitats decrease, pressure increases to better understand species–habitat interactions and how animal communities respond to habitat changes. We assessed the relative importance of local habitat heterogeneity and productivity measures as predictors of avian species richness and compared these results to models for species of conservation concern (SCC). We derived three‐dimensional habitat heterogeneity and productivity measures from light detection and ranging data and hyperspectral imagery, and then used a Bayesian multi‐species hierarchical framework to model avian species richness and occupancy. We found both habitat heterogeneity and productivity were important factors for determining avian community richness. Three‐dimensional habitat heterogeneity and productivity metrics accurately predicted species richness at a local scale and were especially important to use within habitat guilds (i.e., alpha diversity). When scaling up to community richness across multiple habitat types (i.e., gamma diversity), two‐dimensional (surface level) productivity and heterogeneity metrics became important additions to the three‐dimensional metrics when estimating total avian richness. We also tested the utility of these metrics for predicting occupancy of SCC and compared community‐level relationships to species‐specific relationships. Species of conservation concern differed from the broader avian community with regard to local habitat heterogeneity and productivity measures. Species of conservation concern had different relationship habitat metrics than the greater avian community. Three‐dimensional measures of habitat heterogeneity and productivity predicted avian richness across the landscape, yet also highlighted the different habitat structure needs of SCC compared with the greater avian community.
机译:由于天然栖息地的质量和数量减少,压力增加,以更好地了解物种 - 栖息地相互作用以及动物社区如何应对栖息地变化。我们评估了当地栖息地异质性和生产率措施的相对重要性,作为禽类种类的预测因素,并将这些结果与保护令(SCC)的模型进行了比较。我们从光检测和测距图像和高光谱图像中衍生三维栖息地异质性和生产力措施,然后使用贝叶斯多种分层框架来模拟禽类丰富和占用。我们发现栖息地异质性和生产力是确定禽社区丰富性的重要因素。三维栖息地异质性和生产率度量准确地预测了当地规模的物种丰富性,并且在栖息地公会中使用尤为重要(即,α多样性)。在跨多种栖息地类型(即伽马分集)上扩展到社区丰富性时,在估计禽类总丰富时,二维(表面级)生产率和异质性度量成为三维度量的重要补充。我们还测试了这些指标的效用,以预测SCC的占用,并比较与物种的特定关系的社区级关系。在局部栖息地异质性和生产力措施方面,保护界面与更广泛的禽类社区不同。保护关注物种具有不同的关系栖息地指标,而不是更大的禽类社区。栖息地异质性和生产力的三维措施预测了整个景观的禽流富度,但也强调了与大禽社区相比SCC的不同栖息地结构需求。

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