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High-resolution analysis of stem radius variations in black spruce [Picea mariana (Mill.) BSP] subjected to rain exclusion for three summers

机译:高分辨率的分析黑云杉[Picea mariana(Mill。)BSP]在三个夏天受到雨水排斥的茎半径变化

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摘要

A rain exclusion repeated for 3 years resulted in larger summer stem contractions in three of the sites in the third year of the experiment and in larger winter contractions in the northern sites. However, there was no pronounced stress reaction in the stem radius variations of mature black spruce since total stem expansion was not reduced. Future climate warming is expected to produce more severe and frequent periods of drought with consequent water stresses for boreal species. In this paper, we present a high-resolution analysis of stem radius variations in black spruce under rain exclusion. All summer long rain exclusions were applied for three consecutive summers to mature trees on four sites along a latitudinal gradient. The stem radius variations of control and treated trees were monitored year-round at an hourly resolution with automatic point dendrometers. The seasonal patterns of shrinking and swelling were analyzed using a sequential analysis technique and the daily patterns of contraction and expansion were extracted. Overall, the treated trees followed their diurnal cycles of contraction and expansion during the rain exclusions and no significant cumulative difference in stem expansion between control and treated trees was observed over the 3 years. In the third year trees subjected to rain exclusion showed larger stem contractions in summer on three out of four sites and larger winter contractions were observed on the northern sites. This study shows that repeated summer rain exclusion does not necessarily lead to a direct evident stress reaction, showing the resilience of the boreal forest
机译:连续3年排除雨水,导致实验第三年中三个地点的夏季茎收缩较大,而北部地区的冬季收缩较大。但是,成熟的黑云杉的茎半径变化没有明显的应力反应,因为总茎膨胀没有减少。预计未来的气候变暖将导致更严重,更频繁的干旱时期,从而给北方物种造成干旱。在本文中,我们提出了高分辨率的黑云杉在雨天排除下茎半径变化的分析。将整个夏季的长雨排除期连续三个夏天应用于沿纬度梯度在四个位置上的成熟树木。对照树和处理过的树的茎半径变化使用自动点式测树仪以每小时的分辨率全年监测。使用顺序分析技术分析了季节的收缩和膨胀模式,并提取了每日的收缩和膨胀模式。总体而言,在雨天排除期间,处理过的树木遵循其昼夜的收缩和膨胀周期,并且在三年中未观察到对照和处理过的树木之间茎干膨胀的显着累积差异。在第三年,遭受雨水排斥的树木在夏季四分之三的位置显示出较大的茎收缩,而在北部的位置观察到较大的冬季收缩。这项研究表明,夏季雨水被排除在外并不一定会导致直接的明显应力反应,这表明北方森林的复原力

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