通过光合作用参数解决欧洲山毛榉的海拔和地理梯度问题:关于移植到丹麦的卡拉布里亚山毛榉的案例研究

Daniel Provazník, Jan Stejskal, Ole Kim Hansen, Jaroslav Čepl, Eva Roland Erichsen, Jon Kehlet Hansen, Dagmar Zádrapová, Ivana Tomášková
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引用次数: 0

摘要

欧洲山毛榉(Fagus sylvatica L.)正成为在气候变化条件下重建欧洲衰退针叶林的首选树种之一。在寻找合适的榉树幼苗时,可以考虑辅助迁移。要想了解榉树幼苗在不同种植条件下的生长和存活潜力,就必须了解其光合作用性能。我们研究了海拔对光合作用性能的影响,以及地理距离对光合作用性能的影响。实验对象是重新栽种在丹麦一个普通花园中的幼苗,包括从意大利卡拉布里亚地区移植过来的一组具有不同海拔亚群的原产地和丹麦当地的两个原产地。对叶绿素荧光(ChlF)动力学、气体交换(GE)、冲洗和衰老的产地和产地内差异进行了评估。叶绿素荧光测量结果表明,根据原产地的海拔高度,产地内存在差异,并能区分丹麦的两个产地。相比之下,GE 参数则能检测出意大利产地之间地理距离的差异。在丹麦降水量较高的天气条件下,意大利产地的高海拔亚组显示出最佳的叶片级光合作用性能。原产地海拔可能是产地内部差异的一个重要来源。我们的研究表明,评估幼树的这种差异有助于最大限度地发挥不同种植地点的原产地差异潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addressing the altitudinal and geographical gradient in European beech via photosynthetic parameters: a case study on Calabrian beech transplanted to Denmark
European beech (Fagus sylvatica L.) is becoming one of the go-to species in reconstructing declining conifer stands in Europe under climate change. Assisted migration may be considered when looking for suitable beech seedlings. Knowledge about the photosynthetic performance of beech seedlings is fundamental to understanding an essential part of their growth and survival potential in different planting conditions. We investigated the within-provenance variation in photosynthetic performance driven by altitude in contrast to inter-provenance variation given by geographical distance. The experiment was conducted on seedlings replanted in a Danish common garden comprising a cluster of provenances with various altitudinal subgroups transplanted from the Calabria region (Italy) and two local Danish provenances. Provenance and within-provenance variation in chlorophyll fluorescence (ChlF) kinetics, gas exchange (GE), flushing, and senescence were assessed. ChlF measurements revealed within-provenance differences based on altitude of origin and could distinguish between the two Danish provenances. In contrast, GE parameters detected variation in the geographical distance among Italian provenances. High-elevation subgroups of Italian provenances showed the best leaf-level photosynthetic performance in Danish weather conditions with high precipitation levels. Altitude of origin can be a significant source of within-provenance variation. We demonstrated that assessing this variation in young trees may be instrumental in maximizing the potential of provenance variation across diverse planting sites.
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