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Demographic effects of fire on two endemic plant species in the longleaf pine-wiregrass ecosystem

机译:火对长叶松-草生态系统中两种特有植物物种的人口统计学影响

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Fire can have dramatic effects on the vital rates of plant species and has been used successfully for management in a number of ecosystems. However, the demographic response of species to fire in fire-dependent ecosystems is variable, making it important to study the effects of fire on rare and threatened species. We quantified the effects of fire on Astragalus michauxii and Pyxidanthera brevifolia, two rare endemics of the longleaf pine-wiregrass ecosystem of the southeastern USA, by means of periodic matrix models to project the effect of fire frequency on population growth. In contrast to many species in the longleaf pine-wiregrass ecosystem, fire had short-term negative effects on both species, causing reductions in survival, size, flowering, and fruit production. Relative to the three-year fire intervals to which the study populations are currently exposed, more frequent burning is projected to cause population decline, with the most dramatic effects under annual burning. Although the current longleaf pine-wiregrass ecosystem is fire dependent and has experienced frequent fire for at least several thousand years, we propose that the two endemic species may be remnants from a past vegetation assemblage that experienced less frequent fire and thus may be adapted to longer fire-return intervals compared to other species currently in the ecosystem. Despite the short-term negative effects of fire on the vital rates of these species, longer-term benefits such as reduction of woody encroachment and litter removal may be important for the ultimate success of the species.
机译:火灾会对植物物种的生命率产生巨大影响,并已成功用于许多生态系统的管理。但是,在依赖火的生态系统中,物种对火灾的人口响应是可变的,因此研究火灾对稀有和受威胁物种的影响非常重要。我们通过周期性矩阵模型预测火灾频率对人口增长的影响,从而量化了火灾对美国东南部长叶松-铁线草生态系统的两种罕见地方病-米黄芪和短小Pyxidanthera brevifolia的影响。与长叶松-钢丝草生态系统中的许多物种相反,火对这两个物种都有短期负面影响,从而导致生存,大小,开花和果实产量减少。相对于研究人群当前面临的三年火灾间隔,预计更频繁的燃烧会导致种群下降,在年度燃烧下影响最为明显。尽管当前的长叶松木-钢丝草生态系统依赖火种并且至少经历了数千年的频繁火灾,但我们建议这两种特有物种可能是过去经历较少火种的过去植被组合中的残留物,因此可以适应更长的时间与当前生态系统中其他物种相比的回火间隔。尽管火对这些物种的生命率产生了短期负面影响,但长期利益,如减少木本植物的侵占和清除垃圾的行为可能对于该物种的最终成功至关重要。

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