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Population Viability and Vital Rate Sensitivity of an Endangered Avian Cooperative Breeder the White-Breasted Thrasher (Ramphocinclus brachyurus)

机译:濒临灭绝的禽类合作饲养者白胸Thasher(Ramphocinclus brachyurus)的种群生存力和生命率敏感性

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摘要

Social behaviors can significantly affect population viability, and some behaviors might reduce extinction risk. We used population viability analysis to evaluate effects of past and proposed habitat loss on the White-breasted Thrasher (Ramphocinclus brachyurus), a cooperatively breeding songbird with a global population size of <2000 individuals. We used an individual-based approach to build the first demographic population projection model for this endangered species, parameterizing the model with data from eight years of field study before and after habitat loss within the stronghold of the species’ distribution. The recent habitat loss resulted in an approximately 18% predicted decline in population size; this estimate was mirrored by a separate assessment using occupancy data. When mortality rates remained close to the pre-habitat loss estimate, quasi-extinction probability was low under extant habitat area, but increased with habitat loss expected after current plans for resort construction are completed. Post-habitat loss mortality rate estimates were too high for projected populations to persist. Vital rate sensitivity analyses indicated that population growth rate and population persistence were most sensitive to juvenile mortality. However, observed values for adult mortality were closest to the threshold value above which populations would crash. Adult mortality, already relatively low, may have the least capacity to change compared to other vital rates, whereas juvenile mortality may have the most capacity for improvement. Results suggest that improving mortality estimates and determining the cause(s) of juvenile mortality should be research priorities. Despite predictions that aspects of cooperative systems may result in variation in reproduction or juvenile mortality being the most sensitive vital rates, adult mortality was the most sensitive in half of the demographic models of other avian cooperative breeders. Interestingly, vital rate sensitivity differed by model type. However, studies that explicitly modeled the species’ cooperative breeding system found reproduction to be the most sensitive rate.
机译:社会行为会显着影响人口的生存能力,某些行为可能会降低灭绝风险。我们使用种群生存力分析来评估过去和拟议的栖息地丧失对白胸Thrasher(Ramphocinclus brachyurus)的影响,该白胸Thrasher是一种合作繁殖的鸣禽,全球人口总数小于2000。我们使用基于个体的方法为该濒危物种建立了第一个人口统计学种群预测模型,并使用该物种分布据点内生境丧失前后八年实地研究的数据对该模型进行了参数化。最近的栖息地丧失导致预计的人口规模减少约18%。此估计值通过使用占用数据的单独评估反映出来。当死亡率保持在接近栖息地丧失之前的估计值时,在现有栖息地面积下准灭绝的可能性较低,但随着目前度假胜地建设计划的完成,预计随着栖息地丧失而灭绝的可能性会增加。居住后丧失的死亡率估计值过高,无法预测人口的持久性。生命率敏感性分析表明,人口增长率和人口持久性对少年死亡率最敏感。但是,观察到的成年人死亡率值最接近阈值,在该阈值以上人口将崩溃。与其他生命率相比,已经相对较低的成人死亡率可能具有最小的变化能力,而青少年死亡率可能具有最大的改善能力。结果表明,改善死亡率估计值并确定青少年死亡率的原因应作为研究重点。尽管有人预测合作系统的各个方面可能导致生殖变异或幼虫死亡率是最敏感的生命率,但在其他禽类合作繁殖者的一半人口统计学模型中,成年死亡率是最敏感的。有趣的是,生命率敏感性因模型类型而异。但是,对树种的合作繁殖系统进行了明确建模的研究发现,繁殖是最敏感的繁殖率。

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