Altitudinal Difference of Growth–Climate Response Models in the Coniferous Forests of Southeastern Tibetan Plateau, China

Forests Pub Date : 2024-07-20 DOI:10.3390/f15071265
Shanshan Xu, Chao Zheng, Zhigang Zhang, Zhiyuan Shang, Xinggong Kong, Zhijun Zhao
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Abstract

Characterized as a climatologically sensitive region, the southeastern Tibetan Plateau (STP) is an ideal location for dendrochronological research. Here, five tree-ring width (TRW) chronologies were developed: three for Picea likiangensis along altitudinal gradients from 3600 to 4400 m a.s.l. and two for Sabina saltuaria and Abies squamata from 4200 m a.s.l. Significant differences in the growth rates and age composition of Picea likiangensis were observed at various elevation gradients. The chronology statistics (mean sensitivity, etc.) fluctuated with the elevation gradient. Picea likiangensis showed distinct growth patterns in response to climatic variability along the altitude gradient: the minimum temperature influenced tree growth at lower and middle altitudes, while higher altitudes were affected by precipitation. The radial growth of different tree species growing in the same region is controlled by the same climatic factors. Sabina saltuaria and Abies squamata exhibited similar growth responses to Picea likiangensis. Stand conditions (wind speeds, slope, and elevation) and biotic factors (the depth of root, forest type, tree age, and sensitivity) can partially explain why the ring width–climate relationships change with altitude.
中国青藏高原东南部针叶林生长-气候响应模型的海拔差异
青藏高原东南部(STP)是气候敏感区域,也是开展树木年代学研究的理想地点。在这里,我们建立了五个树环宽度(TRW)年代学:三个是海拔从 3600 米到 4400 米沿海拔梯度的丽江云杉年代学,两个是海拔从 4200 米的 Sabina saltuaria 和 Abies squamata 年代学。年代统计(平均灵敏度等)随海拔梯度而波动。沿海拔梯度,丽江云杉对气候变异的反应表现出不同的生长模式:最低气温影响了中低海拔地区的树木生长,而高海拔地区则受到降水的影响。生长在同一地区的不同树种的径向生长受相同气候因素的控制。Sabina saltuaria 和 Abies squamata 表现出与 Picea likiangensis 相似的生长反应。林分条件(风速、坡度和海拔)和生物因素(根系深度、森林类型、树龄和敏感性)可以部分解释环宽与气候的关系为何随海拔而变化。
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