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Temperature controls growth of Pinus taiwanensis along an elevational gradient

机译:温度控制沿着高度梯度的Pinus Taiwanensis的生长

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Alpine treelines are thought to be controlled by low temperature, which affects tree physiology and limits growth. Irrespective of carbon and nutrient limitations are physiological mechanisms affecting the formation of alpine treelines still needs to be defined. We measured the rates of tree growth (basal area increment, BAI), nutrient concentrations in leaves and roots, foliar concentration of nonstructural carbohydrates (NSCs), and gas exchange in Pinus taiwanensis at five elevations (1200, 1400, 1600, 1800, and 2000 m) in the Wuyi Mountains, China. Leaves and roots were sampled twice (summer and winter). The soil nitrogen (N) and phosphorus (P) concentrations and BAI were measured during the summer. We analyzed the foliar traits in summer and winter. The N:P ratio was also analyzed. BAI decreased significantly as elevation increased, accompanied by increases in foliar NSC, N, and P concentrations in both summer and winter. The root P concentration increased with elevation in summer, but the foliar N:P ratio and root N and P concentrations were not affected by elevation in winter. Foliar photosynthesis and respiration did not change in winter, but increased in summer as elevation increased. These results suggest that C and nutrients may not be limiting resources in P. taiwanensis at this alpine treeline site, which instead may be controlled by temperature. P. taiwanensis at alpine treelines accumulates C and nutrient to increase its rates of biochemical reactions at low temperatures.
机译:阿尔卑斯山林线被认为是受低温控制的,低温影响树木生理,限制生长。无论碳和营养限制如何,影响高山树线形成的生理机制仍需确定。我们测量了中国武夷山五个海拔高度(1200、1400、1600、1800和2000米)黄山松的树木生长速率(断面积增量、BAI)、叶片和根系中的养分浓度、非结构性碳水化合物(NSC)的叶片浓度和气体交换。叶和根取样两次(夏季和冬季)。在夏季测定了土壤氮(N)、磷(P)浓度和BAI。我们分析了夏季和冬季的叶片特征。还分析了氮磷比。随着海拔的升高,BAI显著降低,伴随着夏季和冬季叶片NSC、N和P浓度的增加。夏季根磷浓度随海拔升高而升高,但冬季叶片氮磷比和根氮磷浓度不受海拔的影响。叶片光合作用和呼吸在冬季没有变化,但在夏季随着海拔的增加而增加。这些结果表明,C和营养物质可能不会限制该高山林带地点台山松的资源,而可能受温度控制。高山林中的台湾松积累C和养分,以增加其在低温下的生化反应速率。

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