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两种水生真菌之间的竞争相互作用与凋落物分解增加

Competitive interaction between two aquatic hyphomycete species and increase in leaf litter breakdown.

作者信息

Treton C, Chauvet E, Charcosset J Y

机构信息

Laboratoire Dynamique de la Biodiversité, UMR 5172 CNRS-UPS, 29 rue Jeanne-Marvig, 31055, Toulouse cedex, France.

出版信息

Microb Ecol. 2004 Oct;48(3):439-46. doi: 10.1007/s00248-003-0195-8. Epub 2004 Sep 23.

Abstract

Aquatic hyphomycete species produce large numbers of conidia which rapidly colonize the leaf litter that falls into rivers during autumn. Our objective was to understand how a species which produces many fewer conidia than another in laboratory conditions can nevertheless be codominant in a natural setting. In microcosm studies with two pioneer dominant species, Flagellospora curvula and Tetrachaetum elegans, inoculated on alder leaves, we first verified that the ratio of the conidium production of both species (6 to 7:1) was inverse to that of individual conidial masses (1:7) as previously described. Calculating the percentage of leaf mass loss that corresponds to 1A mg of conidial mass produced, the combination of the two species produced 2.9-fold more loss than the mean of each species. By contrast, the reproductive biomasses of F. curvula and T. elegans were 5.2- and 2.6-fold lower, respectively. As a result, the conidium production of F. curvula in the combination was only 3.2-fold that of T. elegans instead of 6- to 7-fold in pure culture. In a mixed culture of the two species, T. elegans conidia had a high germination potential (>90%) whereas the proportion of germinated F. curvula conidia was only 50%. Moreover, T. elegans reduced the area on which F. curvula could grow on poor and rich solid media. These results indicate that the dominance of F. curvula conidia in the river may be partly controlled by T. elegans and suggest that a negative interaction between microfungi may have a positive effect on the ecosystem functioning.

摘要

水生真菌物种会产生大量分生孢子,这些分生孢子会迅速定殖在秋季落入河流的落叶上。我们的目标是了解在实验室条件下分生孢子产量比另一种少得多的物种,如何在自然环境中仍能成为共优势种。在对两种先锋优势物种弯孢鞭毛菌和优美四毛菌接种在桤木叶上进行的微观研究中,我们首先验证了这两种物种的分生孢子产量比(6比7:1)与单个分生孢子团的产量比(1:7)相反,这与之前描述的一致。计算对应于1毫克分生孢子团产生的叶片质量损失百分比,两种物种的组合产生的损失比每种物种的平均值多2.9倍。相比之下,弯孢鞭毛菌和优美四毛菌的繁殖生物量分别低5.2倍和2.6倍。结果,组合中弯孢鞭毛菌的分生孢子产量仅是优美四毛菌的3.2倍,而不是纯培养中的6至7倍。在两种物种的混合培养中,优美四毛菌的分生孢子具有很高的萌发潜力(>90%),而弯孢鞭毛菌分生孢子的萌发比例仅为50%。此外,优美四毛菌减少了弯孢鞭毛菌在贫瘠和丰富固体培养基上的生长面积。这些结果表明,弯孢鞭毛菌分生孢子在河流中的优势可能部分受优美四毛菌控制,并表明微真菌之间的负相互作用可能对生态系统功能产生积极影响。

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