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Positive effects of night warming on physiology of coniferous trees in late growing season: Leaf and root

机译:夜间增温对生长后期针叶树生理的积极影响:叶和根

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Previous studies about the effects of experimental warming on tree species have focused primarily on response of morphology and physiology in leaf and biomass allocation in the growing season, and a few studies considered the importance of roots. Based on the available evidence, it is unclear whether photosynthesis rate is enhanced by night warming in late autumn an issue that deserves further investigation. Thus, we exposed two coniferous species, Picea asperata and Abies faxoniana, to night warming continued throughout the year to investigate morphological and physiological responses of roots and leaves in the autumn. The results showed that night warming caused significant increases in net influxes of NH4+ and NO3- in P. asperata seedlings corresponding well with net H+ efflux and net influx of O-2. Meanwhile, night warming had a positive effect on foliar gas exchange such as net photosynthesis rate, apparent quantum efficiency, dark respiration rate and maximum quantum efficiency of PS II, and nitrate reductase activity of roots. Additionally, root morphology such as total roots length, surface area, specific root area and specific root length was also stimulated by night warming. In contrast, night warming decreased concentrations of non-structural carbohydrate in leaves and roots of both species in autumn. The present study demonstrates that night warming would enhance late autumn leaf photosynthetic rate, and increase N uptake capacity of roots. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:先前有关实验性变暖对树木物种影响的研究主要集中在生长季节叶片和生物量分配中的形态和生理响应,还有一些研究认为根的重要性。根据现有证据,尚不清楚深秋的夜间升温是否能提高光合作用速率,这一问题值得进一步研究。因此,我们将两种针叶树种云杉(Picea asperata)和冷杉冷杉(Abies Faxoniana)暴露于全年持续的夜间升温中,以调查秋天的根和叶的形态和生理响应。结果表明,夜间变暖导致白僵菌幼苗NH4 +和NO3-的净流入量显着增加,与H +净流出量和O-2的净流入量相当。同时,夜间升温对叶片气体交换具有积极的影响,例如净光合作用速率,表观量子效率,暗呼吸速率和PS II的最大量子效率以及根系的硝酸还原酶活性。另外,夜间升温也刺激了根的形态,例如总根长,表面积,比根面积和比根长。相反,夜间变暖在秋季降低了两种物种的叶和根中非结构性碳水化合物的浓度。本研究表明,夜间升温将提高深秋叶片的光合速率,并增加根系对氮的吸收能力。 (C)2016 Elsevier Masson SAS。版权所有。

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