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Demographic and genetic viability of a medium-sized ground-dwelling mammal in a fire prone, rapidly urbanizing landscape

机译:易火,快速城市化景观中的中型陆栖哺乳动物的人口和遗传生存力

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摘要

The rapid and large-scale urbanization of peri-urban areas poses major and complex challenges for wildlife conservation. We used population viability analysis (PVA) to evaluate the influence of urban encroachment, fire, and fauna crossing structures, with and without accounting for inbreeding effects, on the metapopulation viability of a medium-sized ground-dwelling mammal, the southern brown bandicoot (Isoodon obesulus), in the rapidly expanding city of Perth, Australia. We surveyed two metapopulations over one and a half years, and parameterized the PVA models using largely field-collected data. The models revealed that spatial isolation imposed by housing and road encroachment has major impacts on I. obesulus. Although the species is known to persist in small metapopulations at moderate levels of habitat fragmentation, the models indicate that these populations become highly vulnerable to demographic decline, genetic deterioration, and local extinction under increasing habitat connectivity loss. Isolated metapopulations were also predicted to be highly sensitive to fire, with large-scale fires having greater negative impacts on population abundance than small-scale ones. To reduce the risk of decline and local extirpation of I. obesulus and other small- to medium-sized ground-dwelling mammals in urbanizing, fire prone landscapes, we recommend that remnant vegetation and vegetated, structurally-complex corridors between habitat patches be retained. Well-designed road underpasses can be effective to connect habitat patches and reduce the probability of inbreeding and genetic differentiation; however, adjustment of fire management practices to limit the size of unplanned fires and ensure the retention of long unburnt vegetation will also be required to ensure persistence. Our study supports the evidence that in rapidly urbanizing landscapes, a pro-active conservation approach is required that manages species at the metapopulation level and that prioritizes metapopulations and habitat with greater long-term probability of persistence and conservation capacity, respectively. This strategy may help us prevent future declines and local extirpations, and currently relatively common species from becoming rare.
机译:城市周边地区的快速大规模城市化为野生动植物保护提出了重大而复杂的挑战。我们使用种群生存力分析(PVA)评估了城市侵占,火灾和动物穿越结构,无论是否考虑近亲繁殖影响,对中等大小的地面居住哺乳动物,南部褐带( Isoodon obesulus),在迅速发展的澳大利亚珀斯市。我们在一年半的时间里调查了两个亚群,并使用大量现场收集的数据对PVA模型进行了参数化。这些模型表明,住房和道路侵占所造成的空间隔离对盲肠伊豆具有重大影响。尽管已知该物种在中等水平的生境破碎化过程中会维持在较小的种群中,但模型表明,这些生境在生境连通性损失增加的情况下极易受到人口下降,遗传退化和局部灭绝的影响。还预测了孤立的种群对火灾高度敏感,与小规模火灾相比,大规模火灾对人口数量的负面影响更大。为了减少在城市化,易发火的景观中肥胖鼠尾草和其他中小型地面哺乳动物的退化和局部灭绝的风险,我们建议保留栖息地之间的残留植被和植被繁茂的,结构复杂的走廊。设计良好的道路地下通道可以有效地连接栖息地,并减少近交和遗传分化的可能性;但是,还需要调整火种管理措施,以限制计划外火灾的规模,并确保保留长期未燃烧的植被,以确保持久性。我们的研究支持的证据表明,在快速城市化景观中,需要采取积极的保护措施,在种群分布水平上管理物种,并优先考虑具有长期持久性和保存能力的种群和栖息地。这种策略可以帮助我们防止未来的衰退和局部灭绝,并防止目前相对常见的物种变得稀有。

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