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菌根网络抵消了树冠树木对幼苗存活的竞争效应。

Mycorrhizal networks counteract competitive effects of canopy trees on seedling survival.

机构信息

Institute of Arctic Biology, University of Alaska, P.O. Box 757000, Fairbanks, Alaska 99775, USA.

出版信息

Ecology. 2010 Aug;91(8):2294-302. doi: 10.1890/09-1139.1.

Abstract

The dynamics of forest ecosystems depend largely on the survival of seedlings in their understories, but seedling survival is known to be limited by preemption of light and soil resources by overstory trees. It has been hypothesized that "common mycorrhizal networks," wherein roots of seedlings are linked to overstory trees by symbiotic mycorrhizal fungi, offset some or all of the negative effects of trees on seedlings. Here we report the results of an unambiguous experimental test of this hypothesis in a monodominant Pinus radiata forest. We also tested the hypothesis that adaptive differentiation among plant populations causes local plant genotypes to respond more positively to mycorrhizal networks than nonlocal plant genotypes. Our results demonstrate large positive effects of overstory mycorrhizal networks on seedling survival, along with simultaneous negative effects of tree roots, regardless of whether plant genotypes were locally derived. Physiological and leaf-chemistry measurements suggest that seedlings connected to common mycorrhizal networks benefited from increased access to soil water. The similar magnitude of the positive and negative overstory effects on seedlings and the ubiquity of mycorrhizal networks in forests suggest that mycorrhizal networks fundamentally influence the demographic and community dynamics of forest trees.

摘要

森林生态系统的动态在很大程度上取决于其林下幼苗的存活,但已知幼苗的存活受到上层树木对光和土壤资源的抢占的限制。有人假设,“常见的菌根网络”,即幼苗的根通过共生菌根真菌与上层树木相连,会抵消树木对幼苗的一些或全部负面影响。在这里,我们报告了在单优辐射松林中对这一假设进行明确实验测试的结果。我们还测试了这样一个假设,即植物种群的适应性分化导致当地植物基因型比非本地植物基因型对菌根网络有更积极的反应。我们的结果表明,上层菌根网络对幼苗存活有很大的积极影响,同时也有树根的负面影响,而不管植物基因型是本地衍生的还是非本地衍生的。生理和叶片化学测量表明,与常见菌根网络相连的幼苗受益于对土壤水分的更多获取。上层树木对幼苗的积极和消极影响的相似程度以及菌根网络在森林中的普遍性表明,菌根网络从根本上影响了森林树木的种群和群落动态。

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