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物候和生长对温度变化的响应模式在亲本代和子代中存在差异:欧洲山毛榉和欧洲橡树苗的研究

Phenology and growth of Fagus sylvatica and Quercus robur seedlings in response to temperature variation in the parental versus offspring generation.

机构信息

Forest & Nature Lab, Ghent University, Gontrode, Belgium.

Department of Biology, Ghent University, Ghent, Belgium.

出版信息

Plant Biol (Stuttg). 2020 Jan;22 Suppl 1:113-122. doi: 10.1111/plb.12975. Epub 2019 Mar 4.

DOI:10.1111/plb.12975
PMID:30739399
Abstract

Plants are known to respond to warming temperatures. Few studies, however, have included the temperature experienced by the parent plant in the experimental design, in spite of the importance of this factor for population dynamics. We investigated the phenological and growth responses of seedlings of two key temperate tree species (Fagus sylvatica and Quercus robur) to spatiotemporal temperature variation during the reproductive period (parental generation) and experimental warming of the offspring. To this end, we sampled oak and beech seedlings of different ages (1-5 years) from isolated mother trees and planted the seedlings in a common garden. Warming of the seedlings advanced bud burst in both species. In oak seedlings, higher temperatures experienced by mother trees during the reproductive period delayed bud burst in control conditions, but advanced bud burst in heated seedlings. In beech seedlings, bud burst timing advanced both with increasing temperatures during the reproductive period of the parents and with experimental warming of the seedlings. Relative diameter growth was enhanced in control oak seedlings but decreased with warming when the mother plant experienced higher temperatures during the reproductive period. Overall, oak displayed more plastic responses to temperatures than beech. Our results emphasise that temperature during the reproductive period can be a potential determinant of tree responses to climate change.

摘要

植物对气温升高有反应。然而,尽管这个因素对种群动态很重要,但很少有研究将亲代植物经历的温度纳入实验设计中。我们调查了两种关键温带树种(欧洲山毛榉和欧洲橡木)的幼苗在繁殖期(亲代)和后代的实验增温期间的物候和生长对时空温度变化的响应。为此,我们从孤立的母树上采集了不同年龄(1-5 年)的栎属和栎属幼苗,并将这些幼苗种植在一个共同的花园里。幼苗的增温使两种树种的芽爆发提前。在栎属幼苗中,母树在繁殖期经历的较高温度在对照条件下延迟了芽爆发,但在受热幼苗中提前了芽爆发。在山毛榉属幼苗中,随着父母繁殖期温度的升高和幼苗的实验增温,芽爆发的时间都提前了。对照栎属幼苗的相对直径生长得到了增强,但当母植物在繁殖期经历较高温度时,随着增温而下降。总体而言,栎属比山毛榉属对温度表现出更多的可塑性响应。我们的研究结果强调,繁殖期的温度可能是树木对气候变化响应的一个潜在决定因素。

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