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气候和系统发育历史构成了细根等级间形态和结构特征的变异。

Climate and phylogenetic history structure morphological and architectural trait variation among fine-root orders.

作者信息

McCormack M Luke, Kaproth Matthew A, Cavender-Bares Jeannine, Carlson Eva, Hipp Andrew L, Han Ying, Kennedy Peter G

机构信息

Center for Tree Science, The Morton Arboretum, Lisle, IL, 60523, USA.

Department of Plant and Microbial Biology, University of Minnesota, St Paul, MN, 55108, USA.

出版信息

New Phytol. 2020 Dec;228(6):1824-1834. doi: 10.1111/nph.16804. Epub 2020 Aug 14.

DOI:10.1111/nph.16804
PMID:32654151
Abstract

Fine roots mediate below-ground resource acquisition, yet understanding of how fine-root functional traits vary along environmental gradients, within branching orders and across phylogenetic scales remains limited. Morphological and architectural fine-root traits were measured on individual root orders of 20 oak species (genus Quercus) from divergent climates of origin that were harvested after three growing seasons in a glasshouse. These were then compared with similar measurements obtained from a phylogenetically diverse dataset of woody species from the Fine-Root Ecology Database (FRED). For the oaks, only precipitation seasonality and growing season moisture availability were correlated to aspects of root diameter and branching. Strong correlations among root diameters and architecture of different branch orders were common, while correlations between diameter and length were weakly negative. By contrast, the FRED dataset showed strong positive correlations between diameter and length and fewer correlations between root diameter and architectural traits. Our findings suggest that seasonal patterns of water availability are more important drivers of root adaptation in oaks than annual averages in precipitation and temperature. Furthermore, contrasting patterns of trait relationships between the oak and FRED datasets suggest that branching patterns are differentially constrained at narrow vs broad phylogenetic scales.

摘要

细根介导地下资源获取,但对于细根功能性状如何沿环境梯度、在分支等级内以及跨系统发育尺度变化的理解仍然有限。在温室中生长三个季节后,对来自不同气候起源的20种栎属(Quercus)橡树的各个根序的形态和结构细根性状进行了测量。然后将这些测量结果与从细根生态数据库(FRED)中系统发育多样的木本植物数据集中获得的类似测量结果进行比较。对于橡树,只有降水季节性和生长季节水分有效性与根直径和分支的某些方面相关。不同分支等级的根直径和结构之间的强相关性很常见,而直径和长度之间的相关性则呈弱负相关。相比之下,FRED数据集显示直径和长度之间呈强正相关,根直径与结构性状之间的相关性较少。我们的研究结果表明,水分可利用性的季节性模式比降水和温度的年平均值更重要,是橡树根系适应的驱动因素。此外,橡树和FRED数据集之间性状关系的对比模式表明,分支模式在狭窄与广泛的系统发育尺度上受到不同的限制。

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