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Functional relationships between morphology and respiration of fine roots in two Chinese temperate tree species

机译:两种中国温带树种的形态与细根呼吸之间的功能关系

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摘要

Fine root morphology is closely linked with physiological functions. However, we have limited understanding of relationships between morphological traits and respiration of fine roots. In this study, we measured the fine root respiration rates of Tilia amurensis Rupr. and Pinus koraiensis Sieb. et Zucc with a simplified specially designed root-chamber system in the field. We found that mean diameter and specific root length (SRL) exhibited significant power relationships with fine root respiration in both species. Respiration rates of smaller fine roots (< 0.5 mm for Tilia amurensis and < 0.7 mm for Pinus koraiensis) in mean diameter were much higher and varied widely compared with those larger diameter class (0.6-1.8 mm for Tilia amurensis and 0.8-1.9 mm for Pinus koraiensis). Moreover, significant positive relationships existed between fine root nitrogen (N) concentration and respiration in both species. For Tilia amurensis, SRL explained more of the variability in respiration (84%) than diameter or N concentration, while for Pinus koraiensis, fine root N concentration explained more of the variability in respiration (79%) than diameter or SRL. Our results suggest that fine roots are composed of individual roots differing markedly in respiration and morphology, rather than identical units as traditionally assumed.
机译:优良的根系形态与生理功能密切相关。然而,我们对形态性状与细根呼吸之间关系的了解有限。在这项研究中,我们测量了紫ilia的细根呼吸速率。和红松Sieb。 et Zucc在现场使用了经过简化的专门设计的根室系统。我们发现,在两个物种中,平均直径和特定根长(SRL)与细根呼吸均表现出显着的幂关系。与细径较大的细根(紫ilia的0.6-1.8 mm和细ilia的0.8-1.9 mm)相比,细径小的细根(紫ilia <0.5 mm,红松<0.7 mm)的呼吸速率要高得多,并且变化很大。红松)。此外,在两个物种中,细根氮(N)浓度与呼吸之间存在显着的正相关关系。对于紫ilia,SRL解释了呼吸的变异性(84%),而不是直径或氮浓度,而对于红松,细根氮浓度解释了呼吸的变异性(79%),而不是直径或SRL。我们的结果表明,细根是由单个根组成的,这些根的呼吸和形态显着不同,而不是传统上假定的相同单位。

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