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水分可利用性如何影响地中海针叶树的树皮分配?

How Does Water Availability Affect the Allocation to Bark in a Mediterranean Conifer?

作者信息

Martín-Sanz Ruth C, San-Martín Roberto, Poorter Hendrik, Vázquez Antonio, Climent José

机构信息

Sustainable Forest Management Research Institute (UVa-INIA), Palencia, Spain.

Escuela Técnica Superior de Ingenierías Agrarias, Universidad de Valladolid, Palencia, Spain.

出版信息

Front Plant Sci. 2019 May 21;10:607. doi: 10.3389/fpls.2019.00607. eCollection 2019.

Abstract

Bark thickness is a key structural feature in woody plants in the protection against fire. We used 19 provenances of , an obligate-seeder species, in a replicated common garden at two environments contrasting in water availability to assess the interacting effects of site environment and population in the relative allocation to bark, expecting lower allocation at the drier site. Secondly, given the average fire frequency, we analyzed whether trees reached the critical absolute thickness soon enough for population persistence via aerial seed bank. Our analyses indicated that trees at the moister site allocated a rather fixed quantity of resources independent of tree size, and almost all populations reached critical absolute bark thickness to eventually survive fire. In contrast, at the drier site allocation to bark reduced with tree size, and most populations did not reach the critical bark thickness. Populations from areas with higher fire frequency had thicker basal bark, while those from areas with severe droughts and short vegetative periods, had thinner bark. In conclusion, drought-stressed trees have a higher risk to die from fires before achieving reproduction and building a sufficient aerial seed bank.

摘要

树皮厚度是木本植物抵御火灾的关键结构特征。我们在两个水分可利用性不同的环境中的重复普通花园中,使用了19个种源的一种专性种子植物,来评估立地环境和种群在树皮相对分配上的交互作用,预计在较干燥的立地分配比例较低。其次,考虑到平均火灾频率,我们分析了树木是否能通过空中种子库足够快地达到关键绝对厚度以维持种群生存。我们的分析表明,在较湿润立地的树木分配了相当固定数量的资源,与树的大小无关,并且几乎所有种群都达到了关键绝对树皮厚度,最终在火灾中存活。相比之下,在较干燥立地,树皮分配随树的大小而减少,并且大多数种群未达到关键树皮厚度。来自火灾频率较高地区的种群基部树皮较厚,而来自严重干旱和营养期短地区的种群树皮较薄。总之,受干旱胁迫的树木在实现繁殖和建立足够的空中种子库之前,死于火灾的风险更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1ce/6536605/65e2184abf07/fpls-10-00607-g001.jpg

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