...
首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Unraveling Trichoderma species in the attine ant environment: description of three new taxa
【24h】

Unraveling Trichoderma species in the attine ant environment: description of three new taxa

机译:在正常蚂蚁环境中揭示木霉属物种:三种新分类单元的描述

获取原文
获取原文并翻译 | 示例
           

摘要

Fungus-growing "attine" ants forage diverse substrates to grow fungi for food. In addition to the mutualistic fungal partner, the colonies of these insects harbor a rich microbiome composed of bacteria, filamentous fungi and yeasts. Previous work reported some Trichoderma species in the fungus gardens of leafcutter ants. However, no studies systematically addressed the putative association of Trichoderma with attine ants, especially in non-leafcutter ants. Here, a total of 62 strains of Trichoderma were analyzed using three molecular markers (ITS, tef1 and rpb2). In addition, 30 out of 62 strains were also morphologically examined. The strains studied correspond to the largest sampling carried out so far for Trichoderma in the attine ant environment. Our results revealed the richness of Trichoderma in this environment, since we found 20 Trichoderma species, including three new taxa described in the present work (Trichoderma attinorum, Trichoderma texanum and Trichoderma longifialidicum spp. nov.) as well as a new phylogenetic taxon (LESF 545). Moreover, we show that all 62 strains grouped within different clades across the Trichoderma phylogeny, which are identical or closely related to strains derived from several other environments. This evidence supports the transient nature of the genus Trichoderma in the attine ant colonies. The discovery of three new species suggests that the dynamic foraging behavior of these insects might be responsible for accumulation of transient fungi into their colonies, which might hold additional fungal taxa still unknown to science.
机译:真菌生长的“ attine”蚂蚁觅食各种基质,以生长用于食品的真菌。除了互惠的真菌伴侣外,这些昆虫的菌落还含有由细菌,丝状真菌和酵母菌组成的丰富的微生物组。先前的工作报道了切叶蚁的真菌花园中的某些木霉属物种。然而,没有研究系统地解决木霉菌与定型蚂蚁,特别是非叶蝉类蚂蚁的推定联系。在这里,使用三个分子标记(ITS,tef1和rpb2)分析了总共62个木霉菌株。另外,还对62个菌株中的30个进行了形态学检查。所研究的菌株对应于迄今为止在常规蚂蚁环境中对木霉进行的最大取样。我们的结果揭示了木霉菌在这种环境中的丰富性,因为我们发现了20种木霉菌,包括本研究中描述的三种新分类群(Trichoderma attinorum,Trichoderma texanum和Trichoderma longifialidicum spp。nov。)以及一种新的系统发生分类群(LESF)。 545)。此外,我们显示,所有62个菌株在木霉属系统发育的不同进化枝中分组,这些菌株与衍生自其他几种环境的菌株相同或密切相关。该证据支持木霉属在正常蚂蚁菌落中的瞬时性质。三个新物种的发现表明,这些昆虫的动态觅食行为可能是暂时性真菌向其菌落中积累的原因,这可能会使其他真菌类群仍为科学所未知。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号