均匀度调节热带溪流中稀有物种凋落物对真菌分解者的影响

IF 1.9 3区 环境科学与生态学 Q3 ECOLOGY
Raiane S. Rabelo , Alan M. Tonin , Adriana Oliveira Medeiros , Luz Boyero , José F. Gonçalves Júnior
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引用次数: 0

摘要

虽然大多数评估植物物种多样性对溪流真菌分解者影响的研究都集中在优势物种上,但我们的研究模拟了不同的稀有物种灭绝场景。我们在两个实验中评估了这些物种的损失是否改变了真菌生物量和水生菌丝孢子形成、多样性和分类组成:甚至实验,我们对所有物种使用相同的生物量(即,甚至垃圾混合物);以及自然比例实验,我们保持了溪流落叶中植物物种的比例(即天然落叶混合物)。我们发现,稀有植物物种的枯枝落叶减少了真菌生物量,而天然枯枝落叶混合物的减少幅度更大,这表明均匀度可能通过资源差异调节了多样性对真菌生物量的影响。我们的研究结果揭示了稀有植物物种的枯枝落叶以及热带河岸森林中自然物种比例的维持与溪流生态系统功能的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evenness modulates effects of the loss of plant litter from rare species on fungal decomposers in tropical streams

While most studies evaluating plant species diversity effects on in-stream fungal decomposers have focused on dominant species, our study simulated different rare species extinction scenarios. We assessed whether the loss of these species altered the fungal biomass and aquatic hyphomycete sporulation, diversity and taxonomic composition in two experiments: even experiment, where we used the same biomass for all species (i.e., even litter mixtures); and natural proportion experiment, where we kept proportions of plant species as found in stream leaf litter (i.e., natural litter mixtures). We found that the loss of litter from rare plant species reduced fungal biomass and the reduction was greater for natural litter mixtures, indicating that evenness modulated the effect of diversity on fungal biomass, possibly through resource dissimilarity. Our findings reveal the relevance of litter from rare plant species and of the maintenance of natural species proportions in tropical riparian forests for the functioning of stream ecosystems.

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来源期刊
Fungal Ecology
Fungal Ecology 环境科学-生态学
CiteScore
5.80
自引率
3.40%
发文量
51
审稿时长
3 months
期刊介绍: Fungal Ecology publishes investigations into all aspects of fungal ecology, including the following (not exclusive): population dynamics; adaptation; evolution; role in ecosystem functioning, nutrient cycling, decomposition, carbon allocation; ecophysiology; intra- and inter-specific mycelial interactions, fungus-plant (pathogens, mycorrhizas, lichens, endophytes), fungus-invertebrate and fungus-microbe interaction; genomics and (evolutionary) genetics; conservation and biodiversity; remote sensing; bioremediation and biodegradation; quantitative and computational aspects - modelling, indicators, complexity, informatics. The usual prerequisites for publication will be originality, clarity, and significance as relevant to a better understanding of the ecology of fungi.
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