Modeling past, present and future: Species-specific responses to climate changes in three shrub congeners from south American drylands

IF 2.6 3区 环境科学与生态学 Q2 ECOLOGY Journal of Arid Environments Pub Date : 2024-02-29 DOI:10.1016/j.jaridenv.2024.105139
Cintia P. Souto , Laura P. Zalazar , Mariana Tadey , Andrea C. Premoli
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Abstract

Drylands cover c

40% of the land global surface and deliver significant ecosystem services. These regions are the most sensitive, prone to suffer the effects of climate and distribution changes, so estimates on projected range shifts are crucial to complement traditional approaches to biodiversity conservation and sustainability. Shrubs of the Monte Desert dominate the largest temperate dryland in South America. Our goal is to assess the spatial distribution and niche overlap of three native shrubs (Larrea cuneifolia (LC), L. divaricata (LD), and L. nitida (LN)), under present climate conditions, to retrodict their potential past distribution, and anticipate their predicted range under future climate scenarios. We used ecological niche modeling that were projected to the past (LGM and Mid Holocene) and future (2050 and 2070) under two scenarios of greenhouse gas emissions and two model of global circulation. All species have high niche overlap (67–89%), but showed species-specific responses, highlighting the need to develop mitigation measures particularly for LD and LN in the face of climate change and land use pressures. Global South deserts are being highly degraded and information on future potential ranges of endemic species can support the development of sustainable conservation and management plans.

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模拟过去、现在和未来:南美旱地三种灌木同源植物物种对气候变化的反应
旱地占全球陆地面积的 40%,提供重要的生态系统服务。这些地区是最敏感的地区,容易受到气候和分布变化的影响,因此,对预计范围变化的估计对于补充生物多样性保护和可持续发展的传统方法至关重要。在南美洲最大的温带干旱地区,蒙特沙漠的灌木占据了主导地位。我们的目标是评估三种本地灌木(Larrea cuneifolia (LC)、L. divaricata (LD) 和 L. nitida (LN))在当前气候条件下的空间分布和生态位重叠情况,重现它们过去的潜在分布,并预测它们在未来气候条件下的预测分布范围。我们利用生态位模型,在两种温室气体排放情景和两种全球环流模式下,对过去(LGM 和全新世中期)和未来(2050 年和 2070 年)进行了预测。所有物种的生态位重叠率都很高(67%-89%),但却表现出物种特有的反应,这突出表明,面对气候变化和土地利用压力,有必要制定缓解措施,特别是针对低密度和低浓度物种。全球南部沙漠正在高度退化,关于特有物种未来潜在分布范围的信息有助于制定可持续的保护和管理计划。
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来源期刊
Journal of Arid Environments
Journal of Arid Environments 环境科学-环境科学
CiteScore
5.70
自引率
3.70%
发文量
144
审稿时长
55 days
期刊介绍: The Journal of Arid Environments is an international journal publishing original scientific and technical research articles on physical, biological and cultural aspects of arid, semi-arid, and desert environments. As a forum of multi-disciplinary and interdisciplinary dialogue it addresses research on all aspects of arid environments and their past, present and future use.
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