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切叶蚁的花园酵母与微真菌花园病原体之间的拮抗相互作用。

Antagonistic interactions between garden yeasts and microfungal garden pathogens of leaf-cutting ants.

作者信息

Rodrigues Andre, Cable Rachel N, Mueller Ulrich G, Bacci Maurício, Pagnocca Fernando C

机构信息

Section of Integrative Biology, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Antonie Van Leeuwenhoek. 2009 Oct;96(3):331-42. doi: 10.1007/s10482-009-9350-7. Epub 2009 May 18.

Abstract

We investigate the diversity of yeasts isolated in gardens of the leafcutter ant Atta texana. Repeated sampling of gardens from four nests over a 1-year time period showed that gardens contain a diverse assemblage of yeasts. The yeast community in gardens consisted mostly of yeasts associated with plants or soil, but community composition changed between sampling periods. In order to understand the potential disease-suppressing roles of the garden yeasts, we screened isolates for antagonistic effects against known microfungal garden contaminants. In vitro assays revealed that yeasts inhibited the mycelial growth of two strains of Escovopsis (a specialized attine garden parasite), Syncephalastrum racemosum (a fungus often growing in gardens of leafcutter lab nests), and the insect pathogen Beauveria bassiana. These garden yeasts add to the growing list of disease-suppressing microbes in attine nests that may contribute synergistically, together with actinomycetes and Burkholderia bacteria, to protect the gardens and the ants against diseases. Additionally, we suggest that garden immunity against problem fungi may therefore derive not only from the presence of disease-suppressing Pseudonocardia actinomycetes, but from an enrichment of multiple disease-suppressing microorganisms in the garden matrix.

摘要

我们研究了在德州切叶蚁(Atta texana)蚁巢菌圃中分离出的酵母的多样性。在一年的时间里,对来自四个蚁巢的菌圃进行重复采样,结果表明菌圃中含有多种酵母。菌圃中的酵母群落主要由与植物或土壤相关的酵母组成,但群落组成在采样期间发生了变化。为了了解菌圃酵母潜在的疾病抑制作用,我们筛选了分离菌株对已知的菌圃微真菌污染物的拮抗作用。体外试验表明,酵母抑制了两种埃斯科夫酵母(Escovopsis,一种专门寄生在切叶蚁蚁巢菌圃中的寄生虫)、总状共头霉(Syncephalastrum racemosum,一种常在切叶蚁实验室蚁巢菌圃中生长的真菌)以及昆虫病原体球孢白僵菌(Beauveria bassiana)的菌丝生长。这些菌圃酵母增加了切叶蚁蚁巢中疾病抑制微生物的种类,这些微生物可能与放线菌和伯克霍尔德氏菌协同作用,保护菌圃和蚂蚁免受疾病侵害。此外,我们认为菌圃对问题真菌的免疫力可能不仅源于疾病抑制性假诺卡氏放线菌的存在,还源于菌圃基质中多种疾病抑制微生物的富集。

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