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森林生产力提升与补偿性生长:综述与综合分析

Forest Productivity Enhancement and Compensatory Growth: A Review and Synthesis.

作者信息

Li Chao, Barclay Hugh, Roitberg Bernard, Lalonde Robert

机构信息

Canadian Wood Fibre Centre, Canadian Forest Service, Edmonton, AB, Canada.

Pacific Forestry Centre, Canadian Forest Service, Victoria, BC, Canada.

出版信息

Front Plant Sci. 2020 Sep 29;11:575211. doi: 10.3389/fpls.2020.575211. eCollection 2020.

Abstract

This review and synthesis article attempts to integrate observations from forestry to contemporary development in related biological research fields to explore the issue of forest productivity enhancement and its contributions in mitigating the wood supply shortage now facing the forest sector. Compensatory growth has been clearly demonstrated in the long-term precommercial thinning and fertilization trial near the Shawnigan Lake, British Columbia, Canada. This phenomenon appears similar to many observations from other biological fields. The concept of compensatory growth can be applied to forest productivity enhancement through overcompensation, by taking advantage of theories and methods developed in other compensatory growth research. Modeling technology provides an alternative approach in elucidating the mechanisms of overcompensation, which could reveal whether the Shawnigan Lake case could be generalized to other tree species and regions. A new mitigation strategy for dealing with issues related to wood supply shortage could be formed through searching for and creating conditions promoting overcompensation. A forest growth model that is state dependent could provide a way of investigating the effect of partial harvest on forest growth trajectories and stand dynamics. Results from such a study could provide cost-effective decision support tools to practitioners.

摘要

这篇综述与综合文章试图将林业观察结果与相关生物学研究领域的当代发展相结合,以探讨提高森林生产力的问题及其在缓解当前林业部门面临的木材供应短缺方面的贡献。在加拿大不列颠哥伦比亚省绍尼根湖附近进行的长期非商业性疏伐和施肥试验中,已清楚证明了补偿性生长现象。这一现象似乎与其他生物学领域的许多观察结果相似。通过利用其他补偿性生长研究中发展起来的理论和方法,补偿性生长的概念可应用于通过超补偿提高森林生产力。建模技术为阐明超补偿机制提供了一种替代方法,这可能揭示绍尼根湖的案例是否可推广到其他树种和地区。通过寻找和创造促进超补偿的条件,可以形成一种应对木材供应短缺相关问题的新缓解策略。一个依赖状态的森林生长模型可以提供一种研究部分采伐对森林生长轨迹和林分动态影响的方法。该研究结果可为从业者提供具有成本效益的决策支持工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/706d/7770279/e691e9ea0916/fpls-11-575211-g001.jpg

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