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首页> 外文期刊>Global Ecology and Conservation >Original Research Article Vulnerability of baobab ( Adansonia digitata L.) to human disturbances and climate change in western Tigray, Ethiopia: Conservation concerns and priorities
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Original Research Article Vulnerability of baobab ( Adansonia digitata L.) to human disturbances and climate change in western Tigray, Ethiopia: Conservation concerns and priorities

机译:埃塞俄比亚西部德格拉德西部人力骚扰和气候变化的原始研究文章脆弱性(Adansonia Digitata L.):保护关注和优先事项

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The increasing rate of land use intensification and the rising evidence of climate change impacts raise concerns about the viability of valued non-timber forest product (NTFP)-providing trees. This calls for the assessment of the current status and future trajectories of their populations. Using population data collected from three land-use types (e.g., grazing lands, riverine areas and natural forest) in western Tigray, we evaluated the vulnerability of the multipurpose baobab tree ( Adansonia digitata L.) to human disturbances and climate change. The study was based on the premises that integrating ecological science with modeling tools and local knowledge would enhance the overall effectiveness of conservation strategies and community support. Therefore, based on field-based inventory, ecological niche modeling and a socioeconomic study, we characterized and mapped baobab current and future population distribution and documented local knowledge on the uses and management of the species. The characterization of the population structure showed that baobab stands were denser with larger-sized and taller trees in riverine areas and natural forest compared to grazing lands, suggesting adverse effects of human disturbances on its populations. Moreover, positively skewed size-class distributions with negative slopes in all land-use types indicated a low recruitment of juvenile trees to the adult stage. Climate change simulations using Maximum Entropy Algorithm (Maxent) revealed that future temperature increases would lead to significant reductions (41–100%) in baobab suitable habitats due to range contraction. The intensive harvesting of baobab leaves, branches and bark and lack of conversation practices as indicated by local communities, in combination with the risk of local extinction under future climate warming constitute serious threats for the viability of the species in western Tigray. The results suggest immediate interventions, such as planting baobab at up to 65?m higher in altitude, designing appropriate leaf and bark harvest strategies and protecting seedlings from livestock, will help guarantee the persistence of the species populations.
机译:土地利用增长率的增加和气候变化的上升的证据影响对有价值的非木材森林产品(NTFP)的可行性提高了担忧。这次要求评估其人口的当前状态和未来轨迹。使用从西部地区的三种土地使用类型(例如,放牧土地,河流地区和天然森林)收集的人口数据,我们评估了多功能猴面包树(Adansonia Digitata L.)对人类扰动和气候变化的脆弱性。该研究基于与建模工具和本地知识集成生态科学的场所,将提高保护策略和社区支持的整体效力。因此,基于基于现场的库存,生态利基建模和社会经济研究,我们描述并映射了Baobab当前和未来的人口分布,并记录了对物种的用途和管理的本地知识。人口结构的表征表明,与放牧土地相比,河岸地区具有较大尺寸和更高的树木的百罗巴地块和较高的树木,表明人类扰动对其种群的不利影响。此外,在所有土地使用类型中具有负斜坡的带有负面斜坡的带有宽度级别的分布表明,在成人阶段的少年树上招募了低招募。使用最大熵算法(MaxEnt)的气候变化模拟显示,由于范围收缩,未来温度升高将导致猴面包坯合适的栖息地中的显着减少(41-100%)。猴面包坯叶,分支机构和树皮的密集收获以及当地社区表示的缺乏对话实践,与未来气候变暖下的当地灭绝的风险相结合,构成了西部地区种类生存能力的严重威胁。结果表明直接干预措施,例如在海拔高度较高的植物猴面包坯,设计适当的叶子和树皮收获策略和保护牲畜的幼苗,将有助于保证物种群体的持久性。

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