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首页> 外文期刊>Environmental Reviews >Traits to stay, traits to move: a review of functional traits to assess sensitivity and adaptive capacity of temperate and boreal trees to climate change
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Traits to stay, traits to move: a review of functional traits to assess sensitivity and adaptive capacity of temperate and boreal trees to climate change

机译:留下的特征,性状的变化:对功能性状的回顾,以评估温带和北方树木对气候变化的敏感性和适应能力

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The integration of functional traits into vulnerability assessments is a promising approach to quantitatively capture differences in species sensitivity and adaptive capacity to climate change, allowing the refinement of tree species distribution models. In response to a clear need to identify traits that are responsive to climate change and applicable in amanagement context, we review the state of knowledge of the main mechanisms, and their associated traits, that underpin the ability of boreal and temperate tree species to persist and (or) shift their distribution in a changing climate. We aimed to determine whether current knowledge is sufficiently mature and available to be used effectively in vulnerability assessments. Marshalling recent conceptual advances and assessing data availability, our ultimate objective is to guide modellers and practitioners in finding and selecting sets of traits that can be used to capture differences in species' ability to persist and migrate. While the physiological mechanisms that determine sensitivity to climate change are relatively well understood (e.g., drought-induced cavitation), manyassociated traits have not been systematically documented for North American trees and differences in methodology preclude their widespread integration into vulnerability assessments (e.g., xylem recovery capacity). In contrast, traits traditionally associated with the ability to migrate and withstand fire are generally well documented, but new key traits are emerging in the context of climate change that have not been as well characterized (e.g., age of optimum seed production). More generally, lack of knowledge surrounding the extent and patterns in intraspecific trait variation, as well as co-variation and interaction among traits, limit our ability to use this approach to assess tree adaptive capacity. We conclude by outlining research needs and potential strategies for the development of trait-based knowledge applicable in large-scale modelling efforts, sketching out important aspects of trait data organization that should be part of a coordinated effort by the forest science community.
机译:将功能性状整合到脆弱性评估中​​是一种有前途的方法,可以定量捕获物种敏感性和对气候变化的适应能力方面的差异,从而可以改进树木物种分布模型。为了明确确定对气候变化有响应并适用于管理环境的性状的需求,我们回顾了对主要机制及其相关性状的了解情况,这些机制支撑了北方和温带树种的持久性和持久性。 (或)在气候变化的情况下改变其分布。我们旨在确定当前的知识是否足够成熟并且可以有效地用于脆弱性评估。整理最新的概念进展并评估数据的可用性,我们的最终目标是指导建模者和从业人员寻找和选择可用于捕获物种持久和迁移能力差异的特征集。虽然确定气候变化敏感性的生理机制相对较容易理解(例如,干旱引起的空化),但北美树种的许多相关性状尚未得到系统的记录,而且方法的差异使得它们无法广泛地纳入脆弱性评估(例如木质部恢复)中。容量)。相比之下,传统上与​​迁移和抵御火的能力相关的性状通常得到充分记录,但是在气候变化的背景下,新的关键性状却没有得到很好的表征(例如,最佳种子生产的年龄)。更普遍地,缺乏关于种内性状变异的程度和模式以及性状之间的共变异和相互作用的知识,限制了我们使用这种方法评估树木适应能力的能力。最后,我们概述了发展适用于大规模建模工作的基于特征的知识的研究需求和潜在策略,并勾勒出应作为森林科学界协调工作一部分的特征数据组织的重要方面。

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