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Seasonal variation in biomass and carbohydrate partitioning of understory sugar maple (Acer saccharum) and yellow birch (Betula alleghaniensis) seedlings

机译:林下糖槭(Acer saccharum)和黄桦(Betula alleghaniensis)幼苗生物量和碳水化合物分配的季节性变化

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摘要

We investigated seasonal patterns of biomass and carbohydrate partitioning in relation to shoot growth phenology in two age classes of sugar maple (Acer saccharum Marsh.) and yellow birch (Betula alleghaniensis Britt.) seedlings growing in the understory of a partially harvested forest. The high root:shoot biomass ratio and carbohydrate concentration of sugar maple are characteristic of species with truncated growth patterns (i.e., cessation of aboveground shoot growth early in the growing season), a conservative growth strategy and high shade tolerance. The low root:shoot biomass ratio and carbohydrate concentration of yellow birch are characteristic of species with continuous growth patterns, an opportunistic growth strategy and low shade tolerance. In both species, starch represented up to 95% of total nonstructural carbohydrates and was mainly found in the roots. Contrary to our hypothesis, interspecific differences in shoot growth phenology (i.e., continuous versus truncated) did not result in differences in seasonal patterns of carbohydrate partitioning. Our results help explain the niche differentiation between sugar maple and yellow birch in temperate, deciduous understory forests.
机译:我们调查了在部分采伐森林的林下生长的糖枫(Acer saccharum Marsh。)和黄桦(Betula alleghaniensis Britt。)两个年龄类别的幼苗的生物量和碳水化合物分配与芽生长物候相关的季节性模式。枫糖的高根:茎生物量比率和碳水化合物浓度是具有截短生长模式(即在生长期早期停止地上芽生长),保守的生长策略和高遮荫性的物种的特征。黄桦的低根:茎生物量比率和碳水化合物浓度是具有连续生长模式,机会性生长策略和低阴影耐受性的物种的特征。在这两个物种中,淀粉占非结构性碳水化合物总量的95%,主要存在于根部。与我们的假设相反,枝条生长物候的种间差异(即连续与截短)并未导致碳水化合物分配的季节性模式差异。我们的结果有助于解释在温带落叶林下的森林中枫糖和黄桦之间的生态位差异。

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