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High growth potential of Ailanthus altissima in warm and dry weather conditions in novel forests of southern Switzerland

机译:瑞士南部新森林的温暖和干燥天气条件下艾丽尼·阿利斯菊的高增长潜力

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Key messageOur analysis of short-term growth responses to weather conditions provided evidence that the non-native tree species Ailanthus altissima may have a high growth potential in a warmer and drier environment, as predicted by global warming scenarios.AbstractNon-native tree species may alter ecosystem services in colonized forest communities. These novel forests represent a challenge for management, which is further accentuated by anthropogenic global change. Knowledge on the intra-annual growth performance and tree water relations of established and novel tree species is required to elucidate the drivers underlying forest dynamics. Here, we analysed intra-annual radial growth of the introduced tree species Ailanthus altissima (Mill.) Swingle and co-occurring Castanea sativa Mill. in novel forest communities in southern Switzerland. We used fouryears of continuously measured growth data in two sites to identify weather conditions in which the species achieved highest hourly growth and conditions in which largest proportions of seasonal growth occurred. While both species reached the largest proportion of seasonal growth and achieved the highest hourly growth under the most frequent weather conditions, A. altissima featured the highest growth rates in a wider range of weather conditions than C. sativa, particularly at hightemperature and highvapour pressure deficit. We conclude that A. altissima has a greater potential than C. sativa to sustain growth in warm-dry conditions. Importantly, the advantages of A. altissima may be more accentuated in forest stands with low interspecific competition.
机译:短期增长对天气条件的关键令人信念分析提供了证据表明,非本土树种Ailanthus Altissima可能在较温暖和干燥环境中具有高增长潜力,如全球变暖场景所预测的.Abstractnon-Native树种可能会改变殖民森林社区的生态系统服务。这些新颖的森林代表了管理的挑战,这是通过人为的全球变革进一步突出。有关年产内成绩和树水关系的知识,要求阐明森林动态的司机。在这里,我们分析了介绍的树种型树脂血管术(轧机)的初始径向生长。Swingle和Countranea Sativa Mill。在瑞士南部的小说森林社区。我们在两个地点中使用了Fouryear的连续测量的生长数据,以确定天气状况,其中物种在最大的每小时生长和季节性生长的比例最大的情况下实现。虽然这两个物种都达到了季节性增长的最大比例,并且在最常见的天气条件下实现了最高的每小时增长,A. Altissima在更广泛的天气状况中的增长率比C. Sativa更广泛,特别是在高温和高度的压力缺陷。我们得出结论,A. Altissima具有比C. ativa更大的潜力,以维持在温干条件下的增长。重要的是,A Altissima的优势在森林中可能更加突出,竞争低的森林站立。

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