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Non-Structural Carbohydrate Storage Strategy Explains the Spatial Distribution of Treeline Species

机译:非结构性碳水化合物储存策略解释了树枝种类的空间分布

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摘要

Environmental factors that drive carbon storage are often used as an explanation for alpine treeline formation. However, different tree species respond differently to environmental changes, which challenges our understanding of treeline formation and shifts. Therefore, we selected Picea jezoensis and Betula ermanii, the two treeline species naturally occurring in Changbai Mountain in China, and measured the concentration of non-structural carbohydrates (NSC), soluble sugars and starch in one-year-old leaves, shoots, stems and fine roots at different elevations. We found that compared with P. jezoensis, the NSC and soluble sugars concentrations of leaves and shoots of B. ermanii were higher than those of P. jezoensis, while the starch concentration of all the tissues were lower. Moreover, the concentration of NSC, soluble sugars and starch in the leaves of B. ermanii decreased with elevation. In addition, the starch concentration of B. ermanii shoots, stems and fine roots remained at a high level regardless of whether the soluble sugars concentration decreased. Whereas the concentrations of soluble sugars and starch in one-year-old leaves, shoots and stems of P. jezoensis responded similarly changes with elevation. These findings demonstrate that compared with P. jezoensis, B. ermanii has a higher soluble sugars/starch ratio, and its shoots, stems and fine roots actively store NSC to adapt to the harsh environment, which is one of the reasons that B. ermanii can be distributed at higher altitudes.
机译:驱动碳储存的环境因素通常被用作高山胫骨形成的解释。然而,不同的树种对环境变化的反应不同,这挑战了我们对三滨形成和转变的理解。因此,我们选择了在中国长白山自然发生的两种三豆类的Picea Jezoensis和Betula Ermanii,并在一岁的叶子,茎,茎中测量了非结构碳水化合物(NSC),可溶性糖和淀粉的浓度和不同的仰角的细根。我们发现与河谷的河流和可溶性糖浓度的叶子和芽的叶片和芽的叶片相比高于P. Jezoensis,而所有组织的淀粉浓度较低。此外,B.Ermanii叶片中NSC,可溶性糖和淀粉的浓度随升高而降低。此外,无论可溶性糖浓度是否下降,B. eRmanii枝条,茎和细根的淀粉浓度保持高水平。虽然一岁的叶片中可溶性糖和淀粉的浓度,芽孢杆菌和茎的茎和茎的症状因升高而响应而变化。这些研究结果表明,与P. Jezoensis,B.Ermanii相比,Ermanii具有更高的可溶性糖/淀粉比,其枝条,茎和细根积极存储NSC以适应恶劣的环境,这是B. Ermanii的原因之一可以在较高的海拔地区分发。

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