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在苔原植物群落内部和跨群落中,一致的性状-环境关系。

Consistent trait-environment relationships within and across tundra plant communities.

机构信息

University of Helsinki, Helsinki, Finland.

University of Pretoria, Pretoria, South Africa.

出版信息

Nat Ecol Evol. 2021 Apr;5(4):458-467. doi: 10.1038/s41559-021-01396-1. Epub 2021 Feb 25.

Abstract

A fundamental assumption in trait-based ecology is that relationships between traits and environmental conditions are globally consistent. We use field-quantified microclimate and soil data to explore if trait-environment relationships are generalizable across plant communities and spatial scales. We collected data from 6,720 plots and 217 species across four distinct tundra regions from both hemispheres. We combined these data with over 76,000 database trait records to relate local plant community trait composition to broad gradients of key environmental drivers: soil moisture, soil temperature, soil pH and potential solar radiation. Results revealed strong, consistent trait-environment relationships across Arctic and Antarctic regions. This indicates that the detected relationships are transferable between tundra plant communities also when fine-scale environmental heterogeneity is accounted for, and that variation in local conditions heavily influences both structural and leaf economic traits. Our results strengthen the biological and mechanistic basis for climate change impact predictions of vulnerable high-latitude ecosystems.

摘要

基于特征的生态学的一个基本假设是,特征与环境条件之间的关系在全球范围内是一致的。我们使用实地量化的小气候和土壤数据来探索特征-环境关系是否可以在植物群落和空间尺度上具有普遍性。我们从四个不同的半球的苔原地区收集了 6720 个样方和 217 个物种的数据。我们将这些数据与超过 76000 个数据库特征记录相结合,将当地植物群落的特征组成与关键环境驱动因素的广泛梯度联系起来:土壤湿度、土壤温度、土壤 pH 值和潜在太阳辐射。结果表明,在北极和南极地区都存在强烈而一致的特征-环境关系。这表明,即使考虑到细微的环境异质性,在苔原植物群落之间也可以转移检测到的关系,并且当地条件的变化对结构和叶片经济特征都有很大的影响。我们的研究结果为脆弱的高纬度生态系统的气候变化影响预测提供了坚实的生物学和机制基础。

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