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Process-based modeling analyses of Sabina przewalskii growth response to climate factors around the northeastern Qaidam Basin

机译:process-based modeling analyses of sabina przewalskii growth response to climate factors around the northeastern Qaidam Basin

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摘要

Sabina przewalskii is the longest living endemic tree species in the northeastern Tibetan Plateau, and has been widely employed in tree ring based climate research in China. However, most dendroclimatic reconstructions have been primarily based on empirical relationships between tree growth and climate factors identified by statistical assessment. To date, the physiological relationships between tree growth and their limiting climate factors have not been properly assessed. Here, we simulated the physiological response of Sabina przewalskii tree growth to major limiting climate factors based on the Vaganov-Shashkin (VS) model. The VS modeled results validated the relationships between tree ring and climate factors constructed by statistical models, both approaches suggesting that precipitation during the early growing season, especially in May and June, has significant effect on tree growth, while temperature mainly affects tree growth by warming-induced drought and by extending the growing season. Under current and projected climate scenarios, our modeling results predict an increase in radial growth of Sabina przewalskii around the Qaidam Basin, with the potential outcome that regional forests will increase their capacity to sequester carbon.
机译:Sabina przewalskii是青藏高原东北部最长寿的特有树种,在中国基于树环的气候研究中被广泛采用。但是,大多数树状气候重建主要基于树木生长与通过统计评估确定的气候因素之间的经验关系。迄今为止,尚未正确评估树木生长与其极限气候因素之间的生理关系。在这里,我们基于Vaganov-Shashkin(VS)模型模拟​​了Sabina przewalskii树生长对主要限制气候因子的生理响应。 VS模型的结果验证了树木年轮与通过统计模型构建的气候因子之间的关系,这两种方法都表明生长季节早期(特别是5月和6月)的降水对树木生长有显着影响,而温度主要通过变暖影响树木生长干旱和延长生长期。在当前和预计的气候情景下,我们的模拟结果预测,柴达木盆地周围的Sabina przewalskii的径向生长将增加,其潜在结果是区域森林将增加其固存碳的能力。

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