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Diverse Bacteria Inhabit Living Hyphae of Phylogenetically Diverse Fungal Endophytes

机译:多种细菌居住在系统发育的各种真菌内生菌的活菌丝上

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Both the establishment and outcomes of plant-fungus symbioses can be influenced by abiotic factors, the interplay of fungal and plant genotypes, and additional microbes associated with fungal mycelia. Recently bacterial endosymbionts were documented in soilborne Glomeromycota and Mucoromycotina and in at least one species each of mycorrhizal Basidiomycota and Ascomycota. Here we show for the first time that phylogenetically diverse endohyphal bacteria occur in living hyphae of diverse foliar endophytes, including representatives of four classes of Ascomycota. We examined 414 isolates of endophytic fungi, isolated from photosynthetic tissues of six species of cupressaceous trees in five biogeographic provinces, for endohyphal bacteria using microscopy and molecular techniques. Viable bacteria were observed within living hyphae of endophytic Pezizomycetes, Dothideomycetes, Eurotiomycetes, and Sordariomycetes from all tree species and biotic regions surveyed. A focus on 29 fungus/bacterium associations revealed that bacterial and fungal phylogenies were incongruent with each other and with taxonomic relationships of host plants. Overall, eight families and 15 distinct genotypes of endohyphal bacteria were recovered; most were members of the Proteobacteria , but a small number of Bacillaceae also were found, including one that appears to occur as an endophyte of plants. Frequent loss of bacteria following subculturing suggests a facultative association. Our study recovered distinct lineages of endohyphal bacteria relative to previous studies, is the first to document their occurrence in foliar endophytes representing four of the most species-rich classes of fungi, and highlights for the first time their diversity and phylogenetic relationships with regard both to the endophytes they inhabit and the plants in which these endophyte-bacterium symbiota occur.
机译:植物-真菌共生的建立和结果都可能受到非生物因素,真菌和植物基因型的相互作用以及与真菌菌丝体相关的其他微生物的影响。最近,在土壤传播的球菌和毛霉菌以及菌根的担子菌和子囊菌的至少一种物种中都记录了细菌共生菌。在这里,我们首次表明,系统发育上多样的内生菌在各种叶片内生菌的活菌丝中出现,包括四种子囊菌的代表。我们使用显微镜和分子技术检查了从五个生物地理省的六种植物的光合作用组织中分离出的414种内生真菌的内生细菌。在所调查的所有树木物种和生物区中,内生的拟南芥属,十二生菌纲,欧洲菌纲和Sordariomycetes的活菌丝内均观察到了活菌。对29种真菌/细菌协会的关注表明,细菌和真菌的系统发育彼此之间并与宿主植物的分类学关系不一致。总体上,回收了8个家族和15种不同基因型的内吞菌。多数是变形杆菌的成员,但也发现了少量的杆菌科,其中一种似乎是植物的内生菌。继代培养后细菌的频繁流失表明兼职联系。与先前的研究相比,我们的研究恢复了内生菌种的独特谱系,它是第一个记载它们在代表植物中最丰富物种的四种真菌的叶内生菌中发生的研究,并且首次强调了它们在两种细菌中的多样性和系统发育关系。他们居住的内生菌和这些内生菌共生菌所在的植物。

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