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八种杨属(颤杨和美洲颤杨)种内个体根系和叶片性状及叶-根性状关联的变异。

Intraspecific variation in root and leaf traits and leaf-root trait linkages in eight aspen demes (Populus tremula and P. tremuloides).

机构信息

Plant Ecology and Ecosystems Research, Albrecht von Haller Institute for Plant Sciences, University of Göttingen Göttingen, Germany.

出版信息

Front Plant Sci. 2013 Oct 21;4:415. doi: 10.3389/fpls.2013.00415. eCollection 2013.

Abstract

Leaf and fine root morphology and physiology have been found to vary considerably among tree species, but not much is known about intraspecific variation in root traits and their relatedness to leaf traits. Various aspen progenies (Populus tremula and P. tremuloides) with different growth performance are used in short-rotation forestry. Hence, a better understanding of the link between root trait syndromes and the adaptation of a deme to a particular environment is essential in order to improve the match between planted varieties and their growth conditions. We examined the between-deme (genetic) and within-deme (mostly environmental) variation in important fine root traits [mean root diameter, specific root area (SRA) and specific root length (SRL), root tissue density (RTD), root tip abundance, root N concentration] and their co-variation with leaf traits [specific leaf area (SLA), leaf size, leaf N concentration] in eight genetically distinct P. tremula and P. tremuloides demes. Five of the six root traits varied significantly between the demes with largest genotypic variation in root tip abundance and lowest in mean root diameter and RTD (no significant difference). Within-deme variation in root morphology was as large as between-deme variation suggesting a relatively low genetic control. Significant relationships existed neither between SLA and SRA nor between leaf N and root N concentration in a plant. Contrary to expectation, high aboveground relative growth rates (RGR) were associated with large, and not small, fine root diameters with low SRA and SRL. Compared to leaf traits, the influence of root traits on RGR was generally low. We conclude that aspen exhibits large intraspecific variation in leaf and also in root morphological traits which is only partly explained by genetic distances. A root order-related analysis might give deeper insights into intraspecific root trait variation.

摘要

叶片和细根形态和生理学特性在树种间存在很大差异,但对根系性状的种内变异及其与叶片性状的相关性知之甚少。具有不同生长性能的各种白杨(Populus tremula 和 P. tremuloides)被用于短轮伐期林业。因此,为了提高种植品种与其生长条件的匹配度,了解根系性状综合征与一个种群对特定环境的适应之间的联系至关重要。我们研究了 8 个遗传上不同的 P. tremula 和 P. tremuloides 种群之间(遗传)和种群内(主要是环境)重要细根性状[平均根直径、比根面积(SRA)和比根长(SRL)、根组织密度(RTD)、根尖丰度、根 N 浓度]的变化及其与叶片性状[比叶面积(SLA)、叶大小、叶 N 浓度]的共变。在这 6 个根系性状中,有 5 个在种群之间存在显著差异,其中根尖丰度的基因型变异最大,平均根直径和 RTD 最低(无显著差异)。根形态的种群内变异与种群间变异一样大,表明遗传控制相对较低。在植物中,SLA 和 SRA 之间以及叶片 N 和根 N 浓度之间没有显著关系。与预期相反,高地上相对生长率(RGR)与较大而不是较小的细根直径相关,这些细根直径具有较低的 SRA 和 SRL。与叶片性状相比,根系性状对 RGR 的影响通常较小。我们的结论是,白杨在叶片和根系形态性状方面表现出很大的种内变异,这些变异只能部分由遗传距离来解释。根系性状的顺序分析可能会更深入地了解种内根系性状的变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0e7/3801086/d147b8604f33/fpls-04-00415-g0001.jpg

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