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Temporal Beta Diversity of Bird Assemblages in Agricultural Landscapes: Land Cover Change vs. Stochastic Processes

机译:农业景观中鸟类聚集体的时间贝塔多样性:土地覆盖变化与随机过程

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摘要

Temporal variation in the composition of species assemblages could be the result of deterministic processes driven by environmental change and/or stochastic processes of colonization and local extinction. Here, we analyzed the relative roles of deterministic and stochastic processes on bird assemblages in an agricultural landscape of southwestern France. We first assessed the impact of land cover change that occurred between 1982 and 2007 on (i) the species composition (presence/absence) of bird assemblages and (ii) the spatial pattern of taxonomic beta diversity. We also compared the observed temporal change of bird assemblages with a null model accounting for the effect of stochastic dynamics on temporal beta diversity. Temporal assemblage dissimilarity was partitioned into two separate components, accounting for the replacement of species (i.e. turnover) and for the nested species losses (or gains) from one time to the other (i.e. nestedness-resultant dissimilarity), respectively. Neither the turnover nor the nestedness-resultant components of temporal variation were accurately explained by any of the measured variables accounting for land cover change (r2<0.06 in all cases). Additionally, the amount of spatial assemblage heterogeneity in the region did not significantly change between 1982 and 2007, and site-specific observed temporal dissimilarities were larger than null expectations in only 1% of sites for temporal turnover and 13% of sites for nestedness-resultant dissimilarity. Taken together, our results suggest that land cover change in this agricultural landscape had little impact on temporal beta diversity of bird assemblages. Although other unmeasured deterministic process could be driving the observed patterns, it is also possible that the observed changes in presence/absence species composition of local bird assemblages might be the consequence of stochastic processes in which species populations appeared and disappeared from specific localities in a random-like way. Our results might be case-specific, but if stochastic dynamics are generally dominant, the ability of correlative and mechanistic models to predict land cover change effects on species composition would be compromised.
机译:物种集合组成的时间变化可能是环境变化和/或定殖和局部灭绝的随机过程驱动的确定性过程的结果。在这里,我们分析了确定性过程和随机过程对法国西南部农业景观中鸟类聚集的相对作用。我们首先评估了1982年至2007年间发生的土地覆被变化对(i)鸟类集合的物种组成(存在/不存在)和(ii)分类β多样性的空间格局的影响。我们还用零模型比较了观察到的鸟类组合的时间变化,该模型解释了随机动力学对时间β多样性的影响。时间组合的不相似度被分为两个独立的部分,分别解释了物种的替换(即周转)和一次到另一次的嵌套物种损失(或收益)(即嵌套导致的不相似)。土地覆盖变化(r 2 <0.06)在任何情况下都不能用任何测量变量准确解释时间变化的周转率或嵌套导致的时间变化。此外,该区域的空间组合异质性数量在1982年至2007年之间没有显着变化,并且特定地点观察到的时间差异在零营业额站点和嵌套结果站点的13%中大于空预期。不相似。两者合计,我们的结果表明,这种农业景观中的土地覆盖变化对鸟类组合的时间β多样性影响很小。尽管其他无法衡量的确定性过程可能会驱动观察到的模式,但观察到的本地鸟类组合存在/不存在物种组成的变化也可能是随机过程的结果,随机物种在特定区域随机出现或消失。样的方式。我们的结果可能是针对特定案例的,但是如果随机动力学通常占主导地位,则相关模型和机械模型预测土地覆被变化对物种组成的影响的能力将受到损害。

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