Suppr超能文献

埃塞俄比亚的植被类型、气候和地形。

Ethiopian vegetation types, climate and topography.

作者信息

Asefa Mengesha, Cao Min, He Yunyun, Mekonnen Ewuketu, Song Xiaoyang, Yang Jie

机构信息

CAS, Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, 666303, Yunnan, China.

Department of Biology, College of Natural and Computational Sciences, University of Gondar, 196, Gondar, Ethiopia.

出版信息

Plant Divers. 2020 May 25;42(4):302-311. doi: 10.1016/j.pld.2020.04.004. eCollection 2020 Aug.

Abstract

Ethiopia is land of geographical contrasts with elevations that range from 125 m below sea level in the Danakil Depression to 4533 m above sea level in the Semien Mountains, a world heritage site. The diverse climate of various ecological regions of the country has driven the establishment of diverse vegetation, which range from Afroalpine vegetation in the mountains to the arid and semi-arid vegetation type in the lowlands. The formation of Ethiopian vegetation is highly connected to the climate and geological history of the country. Highland uplift and rift formation due to volcanic forces formed novel habitats with different topography and climatic conditions that have ultimately become drivers for vegetation diversification. Due to Ethiopia's connection with the temperate biome in the north and the Arabian Peninsula during the dry glacial period, the biotic assemblage of Ethiopian highlands consists of both Afrotropical and palearctic biota. In general, eight distinct vegetation types have been identified in Ethiopia, based mainly on elevation and climate gradients. These vegetation types host their own unique species, but also share several common species. Some of the vegetation types are identified as centers of endemism and have subsequently been identified globally as the East African Afromontane hotspot. Ethiopia is biologically rich, with more than 6500 vascular plant species. Of these species, 12% are endemic mainly due to geographical isolation and unique climatic conditions. However, researchers have yet to extensively investigate the ecology, phenology, as well as the evolutionary, genetics, and conservation status of Ethiopian vegetations at community and species level over space and time. This lack of research is a barrier to achieving the goal of zero global plant extinctions. Taxa extinction risk assessment has not been extensively carried out for majority of Ethiopian species. Detailed research is needed to explore how vegetation and species respond to rapidly growing environmental change. Currently, human-induced climate change and habitat fragmentation are severely threatening the country's biodiversity, and the consequences of these effects have not been studied at large. Furthermore, we still lack scientific evidence on how micro- and macro-ecological and evolutionary processes have been shaping vegetation structures in this climatically, topographically, and geologically diverse country. These gaps in our knowledge represent an opportunity for ecologists, geneticists, evolutionary biologists, conservation biologists, and other experts to investigate the biodiversity status and the complex ecological processes involved in structuring vegetation dynamics so as to help take effective conservation actions.

摘要

埃塞俄比亚是一个地理反差极大的国家,海拔范围从达纳基尔凹地低于海平面125米到世界遗产地塞米恩山脉高于海平面4533米。该国不同生态区域多样的气候促成了多样植被的形成,从山区的非洲高山植被到低地的干旱和半干旱植被类型。埃塞俄比亚植被的形成与该国的气候和地质历史高度相关。火山力量导致的高地隆起和裂谷形成造就了具有不同地形和气候条件的新栖息地,这些最终成为植被多样化的驱动力。由于在干燥的冰川期埃塞俄比亚与北方的温带生物群落以及阿拉伯半岛相连,埃塞俄比亚高地的生物群落由非洲热带生物群和古北生物群组成。总体而言,埃塞俄比亚主要根据海拔和气候梯度确定了八种不同的植被类型。这些植被类型有各自独特的物种,但也有一些共同的物种。其中一些植被类型被确定为特有中心,随后在全球范围内被认定为东非山地热点地区。埃塞俄比亚生物多样性丰富,有超过6500种维管植物物种。在这些物种中,12%是特有种,主要原因是地理隔离和独特的气候条件。然而,研究人员尚未在空间和时间上对埃塞俄比亚植被在群落和物种层面的生态、物候以及进化、遗传学和保护状况进行广泛研究。这种研究不足是实现全球植物零灭绝目标的障碍。对于大多数埃塞俄比亚物种,尚未广泛开展分类单元灭绝风险评估。需要进行详细研究以探索植被和物种如何应对快速增长的环境变化。目前,人为引起的气候变化和栖息地破碎化正严重威胁着该国的生物多样性,而这些影响的后果尚未得到广泛研究。此外,我们仍然缺乏关于微观和宏观生态及进化过程如何塑造这个气候、地形和地质多样的国家植被结构的科学证据。我们知识上的这些空白为生态学家、遗传学家、进化生物学家、保护生物学家和其他专家提供了一个机会,来研究生物多样性状况以及构建植被动态过程中涉及的复杂生态过程,从而帮助采取有效的保护行动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d987/7567763/a724f1788802/gr1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验