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Forest fragmentation affects step choices, but not homing paths of fragmentation-sensitive birds in multiple behavioral states

机译:森林碎片影响步骤选择,但不是在多种行为状态下归类敏感鸟类的归位

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ContextTheory predicts that movement limitation due to landscape fragmentation can reduce population viability. Understanding how landscape heterogeneity influences movement is thus critical for testing theory and developing conservation strategies. Consequently, studies are needed that link movement data with landscape features influencing dispersal.ObjectivesWe used experimental translocations to test whether forest fragmentation constrains movements of two fragmentation-sensitive bird species. We also tested for evidence of multiple behavioral movement phases (i.e., exploring, homing) and evaluated whether fragmentation effects varied between them.MethodsOver two breeding seasons we translocated territorial Wood Thrushes (Hylocichla mustelina; n=36) and Ovenbirds (Seiurus aurocapilla; n=19) 1-1.2km across landscapes spanning a fragmentation gradient and recorded spatial (movement path) and temporal (return time) homing data using VHF transmitters and receivers.ResultsNinety-one percent of individuals returned home, taking up to 72.2h. Movements of 98% of returning birds indicated distinct exploring (i.e., short, undirected movements and course reversals) and homing (i.e., large, fast steps towards home) movement phases. Both species chose steps minimizing gap exposure in both phases. However, landscape fragmentation had no negative effect on homing times or path straightness.ConclusionsOur results suggest movement limitation does not drive fragmentation sensitivity in these species. Discrepancy between step- and path-level analyses either indicate that fine-scale movement data do not reflect landscape connectivity, or that artificially motivated animals respond unnaturally to behavioral barriers. Given evidence for dichotomous movement behavior, future studies linking these behaviors to life stages will elucidate when and how landscape features influence movement.
机译:背景技术预测景观碎片引起的运动限制可以减少人口的活力。了解景观异质性如何影响运动对测试理论和发展保护策略至关重要。因此,需要研究具有影响Dispersal的景观特征的链接运动数据。objectiveswe使用实验易位来测试森林碎片是否限制两个碎片敏感鸟类的运动。我们还测试了多种行为运动阶段的证据(即,探索,归巢),并评估它们是否在它们之间变化的碎片效果。方法是我们漂移的地域木纹(Hylocichla Mustelina; n = 36)和卵巢(Seiurus aurocapilla; n = 19)使用VHF发射器和接收器跨越碎片梯度和记录的空间(移动路径)和记录的空间(移动路径)和时间(返回时间)归巢数据的景观1-1.2km。恢复房屋的个人百分之一,持续72.2h。 98%的返回鸟类的动作表明了不同的探索(即,短暂,无向动作和课程逆转)和归巢(即,大,快速的迈向家庭)运动阶段。两个物种选择步骤最小化两个阶段的间隙暴露。然而,景观碎片对归巢时间或路径直线没有负面影响.Conclusoursour结果表明运动限制不会在这些物种中推动碎片敏感性。阶梯和路径级别分析之间的差异指示细尺运动数据不反映景观连接,或者人工动力的动物对行为障碍不自然反应。考虑到二分法运动行为的证据,将这些行为与生活阶段的未来研究将阐明何时以及景观特征如何影响运动。

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