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议树种生态保护
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作者 陆国滨 王从春 苏乙奇 《林业勘查设计》 1998年第1期50-50,共1页
森林三维方向的发展,构成结构复杂的生息空间,从而为众多物种的生活提供了可能性。绿色植物通过光合作用不仅给生态系统提供能量,也为动物生息提供了环境。然而,随着产业发展和人口爆炸性增长,森林急剧减少,引发环境变化,生物进入物种... 森林三维方向的发展,构成结构复杂的生息空间,从而为众多物种的生活提供了可能性。绿色植物通过光合作用不仅给生态系统提供能量,也为动物生息提供了环境。然而,随着产业发展和人口爆炸性增长,森林急剧减少,引发环境变化,生物进入物种大量灭绝的时代。 展开更多
关键词 森林 可持续经营 树种生态保护
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Effects of climate change on potential habitats of the cold temperate coniferous forest in Yunnan province, southwestern China 被引量:5
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作者 LIWang-jun PENG Ming-chun +7 位作者 Motoki HIGA Nobuyuki TANAKA Tetsuya MATSUI Cindy Q. TANG OU Xiao-kun ZHOU Rui-wu WANG Chong-yun YAN Hai-zhong 《Journal of Mountain Science》 SCIE CSCD 2016年第8期1411-1422,共12页
We built a classification tree (CT) model to estimate climatic factors controlling the cold temperate coniferous forest (CTCF) distributions in Yunnan province and to predict its potential habitats under the curre... We built a classification tree (CT) model to estimate climatic factors controlling the cold temperate coniferous forest (CTCF) distributions in Yunnan province and to predict its potential habitats under the current and future climates, using seven climate change scenarios, projected over the years of 2070-2099. The accurate CT model on CTCFs showed that minimum temperature of coldest month (TMW) was the overwhelmingly potent factor among the six climate variables. The areas of TMW〈-4.05 were suitable habitats of CTCF, and the areas of -1.35 〈 TMW were non-habitats, where temperate conifer and broad-leaved mixed forests (TCBLFs) were distribute in lower elevation, bordering on the CTCF. Dominant species of Abies, Picea, and Larix in the CTCFs, are more tolerant to winter coldness than Tsuga and broad-leaved trees including deciduous broad-leaved Acer and Betula, evergreen broad- leaved Cyclobalanopsis and Lithocarpus in TCBLFs. Winter coldness may actually limit the cool-side distributions of TCBLFs in the areas between -1.35℃ and -4.05℃, and the warm-side distributions of CTCFs may be controlled by competition to the species of TCBLFs. Under future climate scenarios, the vulnerable area, where current potential (suitable + marginal) habitats (80,749 km^2) shift to non-habitats, was predicted to decrease to 55.91% (45,053 km^2) of the current area. Inferring from the current vegetation distribution pattern, TCBLFs will replace declining CTCFs. Vulnerable areas predicted by models are important in determining priority of ecosystem conservation. 展开更多
关键词 Classification tree Climate scenarios Vulnerable area ABIES PICEA LARIX Evergreenbroad-leaved tree ALOS remote-sensing images
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