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在巴塔哥尼亚的常绿-落叶林中,树苗对光和土壤养分都有反应。

Tree seedlings respond to both light and soil nutrients in a Patagonian evergreen-deciduous forest.

机构信息

Department of Silviculture and Nature Conservancy, University of Chile, Santiago, Chile.

Independent Researcher, Lincoln, New Zealand.

出版信息

PLoS One. 2017 Nov 30;12(11):e0188686. doi: 10.1371/journal.pone.0188686. eCollection 2017.

Abstract

Seedlings of co-occurring species vary in their response to resource availability and this has implications for the conservation and management of forests. Differential shade-tolerance is thought to influence seedling performance in mixed Nothofagus betuloides-Nothofagus pumilio forests of Patagonia. However, these species also vary in their soil nutrient requirements. To determine the effects of light and soil nutrient resources on small seedlings we examined responses to an experimental reduction in canopy tree root competition through root trenching and restricting soil nutrient depletion through the addition of fertilizer. To understand the effect of light these treatments were undertaken in small canopy gaps and nearby beneath undisturbed canopy with lower light levels. Seedling diameter growth was greater for N. pumilio and height growth was greater for N. betuloides. Overall, diameter and height growth were greater in canopy gaps than beneath undisturbed canopy. Such growths were also greater with fertilizer and root trenching treatments, even beneath undisturbed canopy. Seedling survival was lower under such treatments, potentially reflecting thinning facilitated by resource induced growth. Finally, above-ground biomass did not vary among species although the less shade tolerant N. pumilio had higher below-ground biomass and root to shoot biomass ratio than the more shade tolerant N. betuloides. Above- and below-ground biomass were higher in canopy gaps so that the root to shoot biomass ratio was similar to that beneath undisturbed canopy. Above-ground biomass was also higher with fertilizer and root trenching treatments and that lowered the root to shoot biomass ratio. Restricting soil nutrient depletion allowed seedlings of both species to focus their responses above-ground. Our results support a view that soil nutrient resources, as well as the more commonly studied light resources, are important to seedlings of Nothofagus species occurring on infertile soils.

摘要

共生种的幼苗对资源可用性的反应存在差异,这对森林的保护和管理具有重要意义。在巴塔哥尼亚的混交 Nothofagus betuloides-Nothofagus pumilio 森林中,人们认为不同的遮荫耐受性会影响幼苗的表现。然而,这些物种在土壤养分需求上也存在差异。为了确定光照和土壤养分资源对小幼苗的影响,我们通过根系挖掘来减少树冠树根系竞争,并通过添加肥料来限制土壤养分的消耗,从而研究了它们对实验性减少的反应。为了了解光照的影响,这些处理在小树冠空隙中进行,并在附近未受干扰的树冠下进行,那里的光照水平较低。N. pumilio 的幼苗直径生长较大,而 N. betuloides 的幼苗高度生长较大。总的来说,树冠空隙中的幼苗直径和高度生长大于未受干扰树冠下的生长。即使在未受干扰的树冠下,使用肥料和根系挖掘处理也会增加幼苗的生长。在这些处理下,幼苗的存活率较低,这可能反映了资源诱导生长导致的稀疏。最后,尽管较不耐荫的 N. pumilio 的地上生物量没有变化,但它的地下生物量和根冠比高于较耐荫的 N. betuloides。在树冠空隙中,地上和地下生物量较高,因此根冠比与未受干扰树冠下的相似。在树冠空隙中,地上生物量也较高,并且肥料和根系挖掘处理会增加地上生物量,降低根冠比。限制土壤养分消耗使两种树种的幼苗都能将其反应集中在地上。我们的研究结果支持这样一种观点,即土壤养分资源,以及更常研究的光照资源,对在贫瘠土壤上生长的 Nothofagus 物种的幼苗很重要。

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