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无论优势树种的菌根关联如何,细根和菌根真菌都会加速北方阔叶林凋落物的分解。

Fine roots and mycorrhizal fungi accelerate leaf litter decomposition in a northern hardwood forest regardless of dominant tree mycorrhizal associations.

作者信息

Lang Ashley K, Jevon Fiona V, Vietorisz Corinne R, Ayres Matthew P, Hatala Matthes Jaclyn

机构信息

Department of Biology, Indiana University, Bloomington, IN, 47405, USA.

Yale School of the Environment, Yale University, New Haven, CT, 06511, USA.

出版信息

New Phytol. 2021 Apr;230(1):316-326. doi: 10.1111/nph.17155. Epub 2021 Feb 1.

Abstract

●Fine roots and mycorrhizal fungi may either stimulate leaf litter decomposition by providing free-living decomposers with root-derived carbon, or may slow decomposition through nutrient competition between mycorrhizal and saprotrophic fungi. ●We reduced the presence of fine roots and their associated mycorrhizal fungi in a northern hardwood forest in New Hampshire, USA by soil trenching. Plots spanned a mycorrhizal gradient from 96% arbuscular mycorrhizal (AM) associations to 100% ectomycorrhizal (ECM)-associated tree basal area. We incubated four species of leaf litter within these plots in areas with reduced access to roots and mycorrhizal fungi and in adjacent areas with intact roots and mycorrhizal fungi. ●Over a period of 608 d, we found that litter decayed more rapidly in the presence of fine roots and mycorrhizal hyphae regardless of the dominant tree mycorrhizal association. Root and mycorrhizal exclusion reduced the activity of acid phosphatase on decomposing litter. ●Our results indicate that both AM- and ECM-associated fine roots stimulate litter decomposition in this system. These findings suggest that the effect of fine roots and mycorrhizal fungi on litter decay in a particular ecosystem likely depends on whether interactions between mycorrhizal roots and saprotrophic fungi are antagonistic or facilitative.

摘要

●细根和菌根真菌可能通过为自由生活的分解者提供源自根系的碳来刺激凋落物分解,也可能通过菌根真菌和腐生真菌之间的养分竞争减缓分解。●我们通过土壤开沟减少了美国新罕布什尔州北部硬木森林中细根及其相关菌根真菌的存在。样地跨越了从96%丛枝菌根(AM)关联到100%外生菌根(ECM)关联的树木基部面积的菌根梯度。我们在这些样地内根系和菌根真菌接触减少的区域以及相邻根系和菌根真菌完整的区域中培养了四种凋落物。●在608天的时间里,我们发现无论优势树种的菌根关联如何,在有细根和菌根菌丝存在的情况下,凋落物分解得更快。去除根系和菌根降低了分解凋落物时酸性磷酸酶的活性。●我们的结果表明,与AM和ECM相关的细根都能刺激该系统中的凋落物分解。这些发现表明,细根和菌根真菌对特定生态系统中凋落物腐烂的影响可能取决于菌根根与腐生真菌之间的相互作用是拮抗还是促进。

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