首页> 外文期刊>The Journal of Ecology >A phenotypic plasticity framework for assessing intraspecific variation in arbuscular mycorrhizal fungal traits. (Special Feature: The tree of life in ecosystems: evolution of plant effects on carbon and nutrient cycling.)
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A phenotypic plasticity framework for assessing intraspecific variation in arbuscular mycorrhizal fungal traits. (Special Feature: The tree of life in ecosystems: evolution of plant effects on carbon and nutrient cycling.)

机译:一个表型可塑性框架,用于评估丛枝菌根真菌特征的种内变异。 (专着:生态系统中的生命之树:植物对碳和养分循环的影响的演变。)

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摘要

Statistical models of ecosystem functioning based on species traits are valuable tools for predicting how nutrient cycling will respond to global change. However, species such as arbuscular mycorrhizal fungi (AMF) have evolved high intraspecific trait variation, making trait characterization and inclusion in functional trait models difficult. We present a five-part framework based on experimental designs from the phenotypic plasticity literature to quantify AMF intraspecific trait variation in a nutrient cycling context. Framework experiments involve exposing AMF replicates to different environmental conditions and recording trait values to quantify the (i) degree of variation, (ii) reversibility of traits, (iii) relationships among traits, (iv) adaptive nature of traits and (v) potential for trait variation to evolve. We include a phenotypic trajectory analysis of a simulated data set to illustrate relationships among traits. To focus future research, we provide a synthesis of AMF traits whose evolution is particularly relevant to nutrient cycling and environmental factors that induce variation in those traits. Synthesis. Characterizing the depth and range of arbuscular mycorrhizal fungal trait variation is essential for predicting responses to natural and anthropogenic environmental changes, as well as understanding past and future fungal trait evolutionary trajectories in the Tree of Life.
机译:基于物种特征的生态系统功能的统计模型是预测养分循环如何响应全球变化的宝贵工具。但是,诸如丛枝菌根真菌(AMF)之类的物种已经进化出高种内性状变异,这使得特征表征和功能性特征模型的纳入变得困难。我们基于表型可塑性文献的实验设计,提出了一个由五个部分组成的框架,用于量化营养循环环境中AMF种内性状的变异。框架实验包括将AMF复制品暴露在不同的环境条件下并记录性状值以量化(i)变化程度,(ii)性状的可逆性,(iii)性状之间的关系,(iv)性状的适应性和(v)潜力使性状变异得以发展。我们包括模拟数据集的表型轨迹分析,以说明特征之间的关系。为了关注未来的研究,我们提供了AMF性状的综合信息,这些性状的进化与导致这些性状变异的养分循环和环境因素特别相关。合成。表征丛枝菌根真菌性状变异的深度和范围对于预测对自然和人为环境变化的响应以及了解生命之树中过去和将来的真菌性状进化轨迹至关重要。

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