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真菌的重要性超出了实验性早期演替溪流中凋落物分解的范畴。

Fungal importance extends beyond litter decomposition in experimental early-successional streams.

机构信息

Department of Aquatic Ecology, Eawag: Swiss Federal Institute of Aquatic Science and Technology, Überlandstrasse 133, 8600, Dübendorf, Switzerland.

出版信息

Environ Microbiol. 2012 Nov;14(11):2971-83. doi: 10.1111/j.1462-2920.2012.02865.x. Epub 2012 Sep 7.

Abstract

Fungi are important decomposers of leaf litter in streams and may have knock-on effects on other microbes and carbon cycling. To elucidate such potential effects, we designed an experiment in outdoor experimental channels simulating sand-bottom streams in an early-successional state. We hypothesized that the presence of fungi would enhance overall microbial activity, accompanied by shifts in the microbial communities associated not only with leaf litter but also with sediments. Fifteen experimental channels received sterile sandy sediment, minimal amounts of leaf litter, and one of four inocula containing either (i) fungi and bacteria, or (ii) bacteria only, or (iii) no microorganisms, or (iv) killed microorganisms. Subsequently, we let water from an early-successional catchment circulate through the channels for 5 weeks. Whole-stream metabolism and microbial respiration associated with leaf litter were higher in the channels inoculated with fungi, reflecting higher fungal activity on leaves. Bacterial communities on leaves were also significantly affected. Similarly, increases in net primary production, sediment microbial respiration and chlorophyll a content on the sediment surface were greatest in the channels receiving a fungal inoculum. These results point to a major role of fungal communities in stream ecosystems beyond the well-established direct involvement in leaf litter decomposition.

摘要

真菌是溪流落叶层的重要分解者,可能对其他微生物和碳循环产生连锁效应。为了阐明这种潜在的影响,我们设计了一个在模拟早期演替状态沙底溪流的户外实验渠道中进行的实验。我们假设真菌的存在会增强整体微生物活性,并伴随着与落叶层相关的微生物群落的变化,不仅与落叶层有关,还与沉积物有关。十五个实验渠道接收无菌的沙质沉积物、少量的落叶和四种接种物中的一种,其中包含(i)真菌和细菌,或(ii)仅细菌,或(iii)无微生物,或(iv)杀死的微生物。随后,我们让来自早期演替集水区的水在渠道中循环 5 周。在接种真菌的渠道中,与落叶相关的全流代谢和微生物呼吸更高,反映了真菌在叶片上的更高活性。叶片上的细菌群落也受到显著影响。同样,在接收真菌接种物的渠道中,净初级生产力、沉积物微生物呼吸和沉积物表面叶绿素 a 含量的增加最大。这些结果表明,真菌群落在溪流生态系统中扮演着重要的角色,而不仅仅是在落叶分解中所扮演的已确立的直接作用。

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