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Spatial heterogeneity of cellulolytic activity and fungal communities within individual decomposing Quercus petraea leaves

机译:单个分解栎叶中纤维素分解活性和真菌群落的空间异质性

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摘要

Heterogeneity within forest topsoils including litter has been described at different scales, but rarely at the small scale. Here we asked whether the spatial heterogeneity of enzymatic activity can be linked to fungal community composition at the scale of a single Quercus petraea leaf. The activity of cellobiohydrolase (exocellulase) was measured over the surface of leaves at different stages of decomposition, and fungal communities from parts with high and low enzyme activity were characterized. Cellobiohydrolase activity increased with time and varied considerably across leaf surfaces. Highly diverse communities of fungi, specific for each stage of decomposition were observed within leaf sections of 1 cm(2). In still attached, but senescent leaves, where cellulose hydrolysis occurred only locally, parts of leaves with the highest cellulolytic activity were inhabited by a specific community of fungi, enriched in cellulolytic taxa and different from nonactive parts of the same leaves. In older litter, fungal communities in active and nonactive parts of leaves did not differ significantly. (C) 2016 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:包括凋落物在内的森林表层土壤的异质性在不同尺度上都有描述,但很少在小尺度上描述。在这里,我们询问了酶活性的空间异质性是否可以与单个栎叶尺度上的真菌群落组成相关联。在不同分解阶段的叶片表面测定了纤维二水解酶(胞外化素酶)的活性,并表征了酶活性高和低部分的真菌群落。纤维生物水解酶活性随时间增加,并且在叶片表面差异很大。在 1 cm(2) 的叶片中观察到高度多样化的真菌群落,特异于每个分解阶段。在仍然附着但衰老的叶子中,纤维素水解仅发生在局部,具有最高纤维素分解活性的叶子部分栖息着特定的真菌群落,这些真菌富含纤维素分解分类群,并且与同一叶子的非活性部分不同。在较老的凋落物中,叶片活性部分和非活性部分的真菌群落差异不显著。(C) 2016年爱思唯尔有限公司和英国真菌学会。保留所有权利。

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