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[高山林线形成机制的研究进展。]

[Progresses of alpine treeline formation mechanism.].

作者信息

Cong Yu, He Hong Shi, Gu Xiao Nan, Xu Wen Ru, Liu Kai, Zong Sheng Wei, Du Hai Bo

机构信息

School of Geographical Sciences, Northeast Normal University, Changchun 130024, China.

School of Natural Resources, University of Missouri, Columbia, MO 65211, USA.

出版信息

Ying Yong Sheng Tai Xue Bao. 2016 Sep;27(9):3035-3041. doi: 10.13287/j.1001-9332.201609.010.

Abstract

Alpine treelines represent one of the most distinct vegetation boundaries between canopy closed montane forest and treeless alpine vegetation. This transitional ecotone is highly sensitive to global and regional climate change and is considered as an ideal indicator of such changes. Treeline studies have evolved from morphological description to various hypotheses of treeline formation. Although individual hypothesis may provide reasonable explanation locally, a generalized hypothesis that is applicable on the global scale is still lacking. Temperature is considered the limited factor controlling the distribution of alpine treeline as low temperature restricts biochemical processes of tree growth. However, which particular biochemical processes are affected by low temperature remains unknown. This paper summarized the mechanisms of treeline formation with a focus on how low temperature affects photosynthesis characteristics, nutrient characteristics, non-structural carbohydrate (NSC) and antioxidant system. We also reviewed the key issues and future perspectives in treeline research.

摘要

高山林线是封闭树冠的山地森林与无树高山植被之间最明显的植被界限之一。这个过渡生态交错带对全球和区域气候变化高度敏感,被视为此类变化的理想指标。林线研究已从形态描述发展到林线形成的各种假说。尽管个别假说可能在局部提供合理的解释,但仍缺乏一个适用于全球尺度的广义假说。温度被认为是控制高山林线分布的限制因素,因为低温会限制树木生长的生化过程。然而,低温具体影响哪些生化过程仍不清楚。本文总结了林线形成的机制,重点关注低温如何影响光合作用特征、养分特征、非结构性碳水化合物(NSC)和抗氧化系统。我们还回顾了林线研究中的关键问题和未来展望。

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