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森林生产力对干旱具有抗性吗?一项为期18年的降水减少实验的结果。

Is forest fecundity resistant to drought? Results from an 18-yr rainfall-reduction experiment.

作者信息

Bogdziewicz Michał, Fernández-Martínez Marcos, Espelta Josep M, Ogaya Romà, Penuelas Josep

机构信息

Department of Systematic Zoology, Faculty of Biology, Adam Mickiewicz University, 61-614, Poznań, Poland.

CREAF, Cerdanyola del, Vallès, 08193, Catalonia, Spain.

出版信息

New Phytol. 2020 Aug;227(4):1073-1080. doi: 10.1111/nph.16597. Epub 2020 May 2.

Abstract

Recruitment is a primary determinant of the long-term dynamics of plant populations in changing environments. However, little information is known about the effects of anthropogenic environmental changes on reproductive ecology of trees. We evaluated the impact of experimentally induced 18 yr of drought on reproduction of three contrasting forest trees: Quercus ilex, Phillyrea latifolia and Arbutus unedo. Rainfall reduction did not decrease tree fecundity. Drought, however, affected the allocation of resources in Q. ilex and A. unedo but not the more drought tolerant P. latifolia. Larger crop production by Q. ilex and A. unedo was associated with a stronger decrease in growth in the rainfall-reduction plots compared with the control plots, suggesting that these species were able to maintain their fecundity by shifting their allocation of resources away from growth. Our results indicated resistance to change in tree fecundity in Mediterranean-type forest subjected to an average 15% decrease in the amount of soil moisture, suggesting that these ecosystems may adapt to a progressive increase in arid conditions. However, the species-specific reductions in growth may indirectly affect future fecundity and ultimately shift community composition, even without immediate direct effects of drought on tree fecundity.

摘要

在不断变化的环境中,补充更新是植物种群长期动态变化的一个主要决定因素。然而,关于人为环境变化对树木繁殖生态学的影响,我们所知甚少。我们评估了实验诱导的持续18年干旱对三种不同森林树木(冬青栎、宽叶福桂树和草莓树)繁殖的影响。降雨减少并没有降低树木的繁殖力。然而,干旱影响了冬青栎和草莓树的资源分配,但对更耐旱的宽叶福桂树没有影响。与对照地块相比,降雨减少地块中冬青栎和草莓树更大的作物产量与生长量的更强下降有关,这表明这些物种能够通过将资源分配从生长转向繁殖来维持其繁殖力。我们的结果表明,在地中海型森林中,土壤湿度平均下降15%的情况下,树木繁殖力具有抗变化能力,这表明这些生态系统可能适应干旱条件的逐渐增加。然而,即使干旱对树木繁殖力没有直接的即时影响,特定物种生长量的减少可能会间接影响未来的繁殖力,并最终改变群落组成。

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