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Deciduous and evergreen trees differ in juvenile biomass allometries because of differences in allocation to root storage

机译:落叶乔木和常绿乔木在幼年生物量的同素异形性方面有所不同这是因为根系分配的差异

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摘要

Background and AimsBiomass partitioning for resource conservation might affect plant allometry, accounting for a substantial amount of unexplained variation in existing plant allometry models. One means of resource conservation is through direct allocation to storage in particular organs. In this study, storage allocation and biomass allometry of deciduous and evergreen tree species from seasonal environments were considered. It was expected that deciduous species would have greater allocation to storage in roots to support leaf regrowth in subsequent growing seasons, and consequently have lower scaling exponents for leaf to root and stem to root partitioning, than evergreen species. It was further expected that changes to root carbohydrate storage and biomass allometry under different soil nutrient supply conditions would be greater for deciduous species than for evergreen species.
机译:背景和目的为保护资源而进行的生物量划分可能会影响植物异体结实,这说明了现有植物异体结构模型中大量无法解释的变化。资源节约的一种方法是通过直接分配给特定器官中的存储。在这项研究中,考虑了季节性环境下的落叶和常绿乔木树种的储藏分配和生物量测度。预计落叶树种会在随后的生长季节中更多地分配给根部以支持叶片再生,因此,与常绿树种相比,落叶到根部和茎部到根部的分配比例指数更低。进一步预期在落叶养分物种下,在不同土壤养分供应条件下,根系碳水化合物的储存和生物量等速变化将比常绿树种更大。

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