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Associations of breeding-bird abundance with climate vary among species and trait-based groups in southern California

机译:育种鸟类与气候变化的育种鸟类在南加州南部种群中变化

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The responses of individuals and populations to climate change vary as functions of physiology, ecology, and plasticity. We investigated whether annual variation in seasonal temperature and precipitation was associated with relative abundances of breeding bird species at local and regional levels in southern California, USA, from 1968–2013. We tested our hypotheses that abundances were correlated positively with precipitation and negatively with temperature in this semiarid to arid region. We also examined whether responses to climate varied among groups of species with similar land-cover associations, nesting locations, and migratory patterns. We investigated relations between seasonal climate variables and the relative abundances of 41 species as estimated by the North American Breeding Bird Survey. Associations with climate variables varied among species. Results of models of species associated with arid scrublands or that nest on the ground strongly supported our hypotheses, whereas those of species associated with coniferous forests or that nest in cavities did not. Associations between climate variables and the abundances of other trait-based groups were diverse. Our results suggest that species in arid areas may be negatively affected by increased temperature and aridity, but species in nearby areas that are cooler and less arid may respond positively to those fluctuations in climate. Relations with climate variables can differ among similar species, and such knowledge may inform projections of future abundance trajectories and geographic ranges.
机译:个人和群体对气候变化的回应随着生理学,生态和可塑性的职能而变化。我们调查了季节性温度和降水的年度变异是否与美国南加州南加州,1968 - 2013年的育种鸟类的相对丰富有关。我们测试了我们的假设,在这种半干旱中对温度和对干旱地区的温度产生沉淀和负面影响。我们还检查了对具有类似陆地关联,嵌套地点和迁徙模式的物种组中对气候的反应。我们调查了季节性气候变量与41种相对丰富的关系,由北美育种鸟类调查估计。物种之间具有气候变量的关联。与干旱灌木丛或巢穴相关的物种模型的结果强烈支持我们的假设,而与针叶林相关的物种或在腔内巢没有。气候变量与其他基于特征群体的丰富之间的关联是多元化的。我们的研究结果表明,干旱地区的物种可能受到更高的温度和炎症的负面影响,但附近的地区的种类可能会对气候的波动产生积极作用。与气候变量的关系可能在类似的物种之间有所不同,并且这些知识可以向未来丰富的轨迹和地理范围提供预测。

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