乌干达两座赤道高山上的植物多样性和组成随海拔高度变化而变化:评估气候变化影响的基线

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Fredrick Ssali, Badru Mugerwa, Miriam van Heist, Douglas Sheil, Ben Kirunda, Mariana Musicante, Anton Seimon, Stephan Halloy
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引用次数: 0

摘要

我们描述了乌干达Rwenzori山脉和埃尔贡山国家公园高海拔(海拔3980–4570m)维管植物的分布和多样性。这些是“全球高山环境观测研究倡议”(“GLORIA”)在非洲大陆的第一个目标区域。在每个目标区域,2011年7月和8月,使用标准化GLORIA协议选择并评估了四个顶点,这些顶点跨越了从树线交错带到维管植物生命极限的海拔高度。高海拔峰顶上很少有维管植物物种,特别是在Rwenzori,那里的许多亚地块几乎没有维管植物覆盖。Rwenzori的观测包括26种维管植物,Elgon山的观测包括47种,其中分别有10种和15种是特有的。相反,非维管植物的覆盖率随着海拔的升高而大大增加。最低的地点表现出相当大的多样性,在植物区系上与最高的山峰不同。后续的复苏,重复GLORIA协议,对于评估正在进行的动态和变化至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Plant diversity and composition vary with elevation on two equatorial high mountains in Uganda: baselines for assessing the influence of climate change

Plant diversity and composition vary with elevation on two equatorial high mountains in Uganda: baselines for assessing the influence of climate change

We describe the distribution and diversity of vascular plants at high elevations (3980–4570 m above sea level) in the Rwenzori Mountains and Mount Elgon National Parks in Uganda. These were the first target regions of the “Global Observation Research Initiative in Alpine Environments” (“GLORIA”) on the African continent. In each target region, four summits spanning elevations from the treeline ecotone up to the limits of vascular plant life were selected and assessed in July and August 2011 using the standardised GLORIA protocol. Few vascular plant species were present on high elevation summits, particularly in Rwenzori, where many sub-plots had little or no vascular plant cover. Observations from Rwenzori include 26 vascular plant species, and from Mount Elgon 47, of which 10 and 15 species, respectively, were endemic. In contrast, non-vascular plant cover greatly increased with elevation. The lowest sites showed considerable diversity and were floristically dissimilar to the highest summits. Subsequent resurveys, repeating the GLORIA protocol, will be critical in the assessment of ongoing dynamics and change.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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