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世界树木在气候梯度上的碳浓度。

Carbon concentration in the world's trees across climatic gradients.

机构信息

Department of Integrative Biology, University of Guelph, Guelph, ON, N1G 2W1, Canada.

Department of Physical and Environmental Sciences, University of Toronto Scarborough, Scarborough, ON, M1C 1A4, Canada.

出版信息

New Phytol. 2021 Oct;232(1):123-133. doi: 10.1111/nph.17587. Epub 2021 Jul 23.

Abstract

Wood carbon (C) concentration is a key wood trait that varies widely among tree species, but our understanding of the factors governing this trait is limited, despite reason to hypothesize that wood C varies systematically across environmental gradients. We compiled a novel database of 1145 geo-referenced wood C observations from 415 species, to elucidate climate correlates of wood C concentrations, and test if these relationships differ across tissue types and major taxonomic divisions (i.e. angiosperms vs gymnosperms). Climate variables, including mean annual temperature (MAT) and precipitation and temperature seasonality, are significantly correlated with wood C concentrations. Relationships between wood C and these variables differ across tissue types and taxonomic divisions, yet there is a negative relationship between wood C and MAT that exists across all tissues and species groups. Wood C concentrations in trees are influenced by climate, with experimental evidence (albeit scant) indicating that climate-driven changes in lignin concentrations likely govern these relationships. Our study presents among the first lines of evidence indicating that wood C concentrations are correlated with environmental conditions, thereby enhancing our understanding of the potential adaptive significance of wood C variation in trees.

摘要

木材碳(C)浓度是树木物种间差异很大的关键木材特性,但尽管有理由假设木材 C 会沿环境梯度系统变化,但我们对控制这一特性的因素的理解仍然有限。我们编制了一个由 415 个物种的 1145 个具有地理参考的木材 C 观测值组成的新数据库,以阐明木材 C 浓度与气候的关系,并检验这些关系是否因组织类型和主要分类群(即被子植物与裸子植物)而异。气候变量,包括年平均温度(MAT)、降水和温度季节性,与木材 C 浓度显著相关。木材 C 与这些变量之间的关系因组织类型和分类群而异,但木材 C 与 MAT 之间存在负相关关系,这种关系存在于所有组织和物种群中。树木的木材 C 浓度受气候影响,尽管实验证据(尽管很少)表明,木质素浓度的气候驱动变化可能控制着这些关系。我们的研究提供了首批表明木材 C 浓度与环境条件相关的证据之一,从而增强了我们对树木中木材 C 变异潜在适应意义的理解。

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