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首页> 外文期刊>Arctic, antarctic, and alpine research >Xylem Anatomical Trait Variability Provides Insight on the Climate-Growth Relationship of Betula nana in Western Greenland
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Xylem Anatomical Trait Variability Provides Insight on the Climate-Growth Relationship of Betula nana in Western Greenland

机译:木质部解剖特征的变异性为西部格陵兰西南桦的气候-生长关系提供了见识

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Climate change has been reported to affect shrub growth positively at several sites at high northern latitudes, including several arctic environments. The observed growth rates are, however, not uniform in space and time, and the mechanistic drivers of these patterns remain poorly understood. Here we investigated spatio-temporal interactions between climatic conditions, xylem anatomical traits, and annual growth of 21 Betula nana L. individuals from western Greenland for the period 2001–2011. Structural equation modeling showed that summer precipitation and winter temperature are affecting annual growth positively. Furthermore, vessel lumen area and vessel grouping, which are related to water conductivity and hydraulic connectivity of the xylem, respectively, positively influenced annual growth. To optimize growth B. nana was thus able to adjust its water transporting system. Annual variation in vessel lumen area seemed to be driven mostly by spring and summer temperatures, whereas annual variation in vessel grouping was driven by winter temperature. Linear models did not reveal a pattern in the spatial variation of xylem anatomical traits across the sampled climatic gradient. However, growth was positively correlated with local variation in insolation. Our results suggest that B. nana can adjust its hydraulic capacity to annual fluctuations in climatic conditions in order to optimize its total radial stem growth rate.
机译:据报道,气候变化在北部高纬度的几个地点,包括几个北极环境,对灌木的生长产生积极影响。但是,观察到的增长率在空间和时间上不一致,并且对这些模式的机理驱动力仍然知之甚少。在这里,我们调查了2001-2011年间来自格陵兰西部的21位桦(Betula nana L.)个体在气候条件,木质部解剖特征和年增长之间的时空相互作用。结构方程模型表明,夏季降水和冬季温度正对年均增长产生积极影响。此外,分别与木质部的水导率和水力连通性有关的血管腔面积和血管分组对年增长率产生了积极影响。为了优化增长B。因此,娜娜能够调整其水输送系统。血管腔面积的年度变化似乎主要由春季和夏季温度决定,而血管分组的年度变化则由冬季温度决定。线性模型没有揭示整个采样气候梯度的木质部解剖特征的空间变化模式。但是,生长与日照的局部变化呈正相关。我们的结果表明 B。 nana可以根据气候条件的年度波动来调整其水力容量,以优化其总径向茎生长速率。

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