首页> 美国卫生研究院文献>other >Repeated Summer Drought and Re-watering during the First Growing Year of Oak (Quercus petraea) Delay Autumn Senescence and Bud Burst in the Following Spring
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Repeated Summer Drought and Re-watering during the First Growing Year of Oak (Quercus petraea) Delay Autumn Senescence and Bud Burst in the Following Spring

机译:橡树(栎属)成长的第一年反复进行夏季干旱和补水延缓了秋天的衰老并在随后的春天爆发了芽

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摘要

Climate change predicts harsher summer droughts for mid-latitudes in Europe. To enhance our understanding of the putative impacts on forest regeneration, we studied the response of oak seedlings (Quercus petraea) to water deficit. Potted seedlings originating from three locally sourced provenances were subjected to two successive drought periods during the first growing season each followed by a plentiful re-watering. Here, we describe survival and phenological responses after the second drought treatment, applying general linear mixed modeling. From the 441 drought treated seedlings 189 subsisted with higher chances of survival among smaller plants and among single plants per pot compared to doubles. Remarkably, survival was independent of the provenance, although relatively more plants had died off in two provenances compared to the third one with mean plant height being higher in one provenance and standard deviation of plant height being higher in the other. Timing of leaf senescence was clearly delayed after the severe drought treatment followed by re-watering, with two seedlings per pot showing a lesser retardation compared to single plants. This delay can be interpreted as a compensation time in which plants recover before entering the subsequent developmental process of leaf senescence, although it renders seedlings more vulnerable to early autumn frosts because of the delayed hardening of the shoots. Onset of bud flush in the subsequent spring still showed a significant but small delay in the drought treated group, independent of the number of seedlings per pot, and can be considered as an after effect of the delayed senescence. In both phenological models significant differences among the three provenances were detected independent from the treatment. The only provenance that is believed to be local of origin, displayed the earliest leaf senescence and the latest flushing, suggesting an adaptation to the local maritime climate. This provenance also displayed the highest standard deviation of plant height, which can be interpreted as an adaptation to variable and unpredictable weather conditions, favoring smaller plants in drought-prone summers and higher plants in more normal growing seasons.
机译:气候变化预示着欧洲中纬度地区夏季干旱将更加严峻。为了加深我们对森林更新的推定影响的了解,我们研究了橡树幼苗(栎栎)对缺水的响应。来自三个本地种源的盆栽幼苗在第一个生长季节都经历了两个连续的干旱时期,然后分别进行大量的补水。在这里,我们描述了第二次干旱处理后的生存和物候响应,应用了一般的线性混合建模。在441份经过干旱处理的幼苗中,有189株在较小植物和每盆单株植物中存活的机会较高,而双倍。值得注意的是,存活率与种源无关,尽管相比第三个种源,死于第二种源的植物相对较多,其中一个株系的平均株高较高,而另一种株高的标准差较高。严格的干旱处理后再浇水,叶子衰老的时间明显延迟了,与单株植物相比,每盆两棵幼苗显示的延迟时间要短。该延迟可以解释为补偿时间,在该补偿时间中植物在进入随后的叶片衰老的发育过程之前恢复,尽管由于枝条的延迟硬化,使幼苗更容易受到秋季初霜的影响。在随后的春季中,在干旱处理组中芽潮红的发作仍然显示出显着但很小的延迟,而与每盆苗的数量无关,并且可以认为是延迟衰老的后效应。在这两种物候模型中,检测到的三个来源之间的显着差异与治疗无关。唯一被认为是起源的起源显示出最早的叶片衰老和最新的潮红,表明它适应了当地的海洋气候。这种出处还显示出最高的植物高度标准差,这可以解释为对多变和不可预测的天气条件的适应,有利于干旱多发的夏季种植较小的植物,而在正常生长季节种植较高的植物。

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