真菌Syncephalastrum对切叶蚁巢穴的有限影响

IF 1.9 3区 环境科学与生态学 Q3 ECOLOGY
Keminy R. Bautz , Marcela C.S. Caixeta , Nathalia P. Del Puppo , André Rodrigues , Thiago G. Kloss , Simon L. Elliot
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引用次数: 0

摘要

切叶蚁与一系列拮抗微生物自然相互作用,其中包括土传真菌Syncephalastrum。在没有蚁后的研究中,这种真菌对切叶蚁的真菌品种具有拮抗作用。到目前为止,这种真菌对切叶蚁整个群落(queenright)的影响尚不清楚。我们评估了Syncephalastrum对Acrommyrmex subterraneus subterranus的无女王和女王菌落的影响。一般来说,异头病对叶片切割产生负面影响,但对中期产量或菌落重量没有影响。这种影响在没有女王的殖民地更大。尽管如此,它并没有危及任何殖民地的生存。这表明,这种真菌对切叶蚁群的毒力可能比以前报道的更现实。我们建议,未来的实验室研究也尽可能使用queenright群落,并考虑多种切叶蚁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Limited impacts of the fungus Syncephalastrum on nests of leaf-cutting ants

Leaf-cutting ants interact naturally with a range of antagonistic microorganisms, among them the soil-borne fungus Syncephalastrum. The antagonism of this fungus to the leaf-cutting ants’ fungal cultivar has been shown in studies without the ant queens. So far, the impacts of this fungus on whole colonies (queenright) of leaf-cutting ants are unknown. We assessed the impacts of Syncephalastrum on queenless and queenright colonies of Acromyrmex subterraneus subterraneus. In general, Syncephalastrum negatively impacted leaf cutting but not midden production or colony weight. This impact was greater in queenless colonies. Nevertheless, it did not compromise the survival of any colony. This indicates that the virulence of this fungus to leaf-cutting ant colonies may be limited in a more realistic set-up than previously reported. We propose that future laboratory studies also use queenright colonies where possible, and that the diverse species of leaf-cutting ants also be considered.

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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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