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Intraspecific Fine-Root Trait-Environment Relationships across Interior Douglas-Fir Forests of Western Canada

机译:加拿大西部内部Douglas-Fir林的内部内部细根特征 - 环境关系

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摘要

Variation in resource acquisition strategies enables plants to adapt to different environments and may partly determine their responses to climate change. However, little is known about how belowground plant traits vary across climate and soil gradients. Focusing on interior Douglas-fir (Pseudotsuga menziesii var. glauca) in western Canada, we tested whether fine-root traits relate to the environment at the intraspecific level. We quantified the variation in commonly measured functional root traits (morphological, chemical, and architectural traits) among the first three fine-root orders (i.e., absorptive fine roots) and across biogeographic gradients in climate and soil factors. Moderate but consistent trait-environment linkages occurred across populations of Douglas-fir, despite high levels of within-site variation. Shifts in morphological traits across regions were decoupled from those in chemical traits. Fine roots in colder/drier climates were characterized by a lower tissue density, higher specific area, larger diameter, and lower carbon-to-nitrogen ratio than those in warmer/wetter climates. Our results showed that Douglas-fir fine roots do not rely on adjustments in architectural traits to adapt rooting strategies in different environments. Intraspecific fine-root adjustments at the regional scale do not fit along a single axis of root economic strategy and are concordant with an increase in root acquisitive potential in colder/drier environments.
机译:变异资源收购战略使植物适应不同的环境,可能一定程度上决定对气候变化及其响应。然而,鲜为人知的是,地下植物性状跨越气候和土壤梯度如何变化。着眼于在加拿大西部内陆道格拉斯冷杉(花旗松变种木莲),我们测试的细根性状是否与在种内一级的环境。我们量化前三细根订单(即,吸收细根)之间以及跨在气候和土壤因素生物地理梯度常用的测量功能根系性状(形态,化学,和建筑性状)的变化。中度但一致的特征与环境的关系发生跨道格拉斯冷杉的人群,尽管高水平的内现场变化。在跨区域的形态特征的变化是从那些化学性状分离。细根较冷/干燥器气候通过下部组织密度,更高的比表面积,更大的直径,并降低碳 - 氮比高于在温暖/多雨气候条件下表征。我们的研究结果表明,花旗松细根不依赖于建筑特色调整,以适应在不同环境中生根策略。在区域尺度上种内细根调整不会沿着根经济战略的一个轴配合,并与一致在寒冷/干燥的环境中增加根聚财潜力。

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