1School of Plant Sciences, University of Arizona, Tucson, AZ 85721, USA.
2Joint Genome Institute, Walnut Creek, CA, USA.
Microb Genom. 2017 Feb 28;3(2):e000101. doi: 10.1099/mgen.0.000101. eCollection 2017 Feb.
Fungi interact closely with bacteria, both on the surfaces of the hyphae and within their living tissues (i.e. endohyphal bacteria, EHB). These EHB can be obligate or facultative symbionts and can mediate diverse phenotypic traits in their hosts. Although EHB have been observed in many lineages of fungi, it remains unclear how widespread and general these associations are, and whether there are unifying ecological and genomic features can be found across EHB strains as a whole. We cultured 11 bacterial strains after they emerged from the hyphae of diverse Ascomycota that were isolated as foliar endophytes of cupressaceous trees, and generated nearly complete genome sequences for all. Unlike the genomes of largely obligate EHB, the genomes of these facultative EHB resembled those of closely related strains isolated from environmental sources. Although all analysed genomes encoded structures that could be used to interact with eukaryotic hosts, pathways previously implicated in maintenance and establishment of EHB symbiosis were not universally present across all strains. Independent isolation of two nearly identical pairs of strains from different classes of fungi, coupled with recent experimental evidence, suggests horizontal transfer of EHB across endophytic hosts. Given the potential for EHB to influence fungal phenotypes, these genomes could shed light on the mechanisms of plant growth promotion or stress mitigation by fungal endophytes during the symbiotic phase, as well as degradation of plant material during the saprotrophic phase. As such, these findings contribute to the illumination of a new dimension of functional biodiversity in fungi.
真菌与细菌密切相互作用,无论是在菌丝表面还是在其活体组织内(即内生菌,EHB)。这些 EHB 可以是专性或兼性共生体,并可以在其宿主中介导多种表型特征。尽管在许多真菌谱系中都观察到了 EHB,但尚不清楚这些关联的广泛程度和普遍性,以及是否可以在整个 EHB 菌株中找到统一的生态和基因组特征。我们从作为柏科树木叶内共生体分离出的各种子囊菌的菌丝中培养了 11 种细菌菌株,并为所有菌株生成了近乎完整的基因组序列。与主要是专性 EHB 的基因组不同,这些兼性 EHB 的基因组与从环境来源分离出的密切相关的菌株的基因组相似。尽管所有分析的基因组都编码了可以与真核宿主相互作用的结构,但以前与 EHB 共生关系的维持和建立相关的途径并不普遍存在于所有菌株中。从不同真菌类群中独立分离出两对几乎相同的菌株,加上最近的实验证据,表明 EHB 在内生宿主中发生了水平转移。鉴于 EHB 有可能影响真菌表型,这些基因组可以阐明真菌内生菌在共生阶段促进植物生长或减轻压力的机制,以及在腐生阶段降解植物材料的机制。因此,这些发现有助于阐明真菌功能生物多样性的一个新维度。