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探索放线菌在真菌生长白蚁中作为防御共生体的潜力。

Exploring the potential for actinobacteria as defensive symbionts in fungus-growing termites.

机构信息

Laboratory of Genetics, Wageningen University, Wageningen, The Netherlands.

出版信息

Microb Ecol. 2012 May;63(4):975-85. doi: 10.1007/s00248-011-9987-4. Epub 2011 Dec 16.

Abstract

In fungus-growing termites, fungi of the subgenus Pseudoxylaria threaten colony health through substrate competition with the termite fungus (Termitomyces). The potential mechanisms with which termites suppress Pseudoxylaria have remained unknown. Here we explore if Actinobacteria potentially play a role as defensive symbionts against Pseudoxylaria in fungus-growing termites. We sampled for Actinobacteria from 30 fungus-growing termite colonies, spanning the three main termite genera and two geographically distant sites. Our isolations yielded 360 Actinobacteria, from which we selected subsets for morphological (288 isolates, grouped in 44 morphotypes) and for 16S rRNA (35 isolates, spanning the majority of morphotypes) characterisation. Actinobacteria were found throughout all sampled nests and colony parts and, phylogenetically, they are interspersed with Actinobacteria from origins other than fungus-growing termites, indicating lack of specificity. Antibiotic-activity screening of 288 isolates against the fungal cultivar and competitor revealed that most of the Actinobacteria-produced molecules with antifungal activity. A more detailed bioassay on 53 isolates, to test the specificity of antibiotics, showed that many Actinobacteria inhibit both Pseudoxylaria and Termitomyces, and that the cultivar fungus generally is more susceptible to inhibition than the competitor. This suggests that either defensive symbionts are not present in the system or that they, if present, represent a subset of the community isolated. If so, the antibiotics must be used in a targeted fashion, being applied to specific areas by the termites. We describe the first discovery of an assembly of antibiotic-producing Actinobacteria occurring in fungus-growing termite nests. However, due to the diversity found, and the lack of both phylogenetic and bioactivity specificity, further work is necessary for a better understanding of the putative role of antibiotic-producing bacteria in the fungus-growing termite mutualistic system.

摘要

在真菌养殖白蚁中,假黑木层孔菌亚属的真菌通过与白蚁真菌(拟蜡蘑)竞争基质而威胁到蚁群的健康。白蚁抑制假黑木层孔菌的潜在机制尚不清楚。在这里,我们探索放线菌是否可能作为防御共生菌在真菌养殖白蚁中发挥作用,以对抗假黑木层孔菌。我们从 30 个真菌养殖白蚁群体中采样放线菌,这些群体跨越了三个主要的白蚁属和两个地理位置遥远的地点。我们的分离物产生了 360 株放线菌,从中我们选择了形态学(288 株分离物,分为 44 个形态型)和 16S rRNA(35 株分离物,涵盖了大多数形态型)特征的亚组。放线菌在所有取样的巢穴和蚁群部分中都有发现,从系统发育上看,它们与来自真菌养殖白蚁以外的起源的放线菌交织在一起,表明没有特异性。对 288 株分离物针对真菌培养物和竞争者的抗真菌活性筛选表明,大多数放线菌产生的分子具有抗真菌活性。对 53 株分离物进行更详细的生物测定,以测试抗生素的特异性,结果表明,许多放线菌抑制假黑木层孔菌和拟蜡蘑,并且培养物真菌通常比竞争者更容易受到抑制。这表明防御共生菌不存在于该系统中,或者如果存在的话,它们只是群落的一个子集。如果是这样,抗生素必须以有针对性的方式使用,由白蚁将其应用于特定区域。我们描述了在真菌养殖白蚁巢穴中首次发现的一组产生抗生素的放线菌。然而,由于发现的多样性,以及缺乏系统发育和生物活性特异性,需要进一步的工作来更好地理解产生抗生素的细菌在真菌养殖白蚁共生系统中的潜在作用。

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