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Cultivating the uncultured: growing the recalcitrant cluster-2 Frankia strains

机译:耕种未耕种:生长顽固的簇2 Frankia菌株

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摘要

The repeated failures reported in cultivating some microbial lineages are a major challenge in microbial ecology and probably linked, in the case of Frankia microsymbionts to atypical patterns of auxotrophy. Comparative genomics of the so far uncultured cluster-2 Candidatus Frankia datiscae Dg1, with cultivated Frankiae has revealed genome reduction, but no obvious physiological impairments. A direct physiological assay on nodule tissues from Coriaria myrtifolia infected with a closely-related strain permitted the identification of a requirement for alkaline conditions. A high pH growth medium permitted the recovery of a slow-growing actinobacterium. The strain obtained, called BMG5.1, has short hyphae, produced diazovesicles in nitrogen-free media, and fulfilled Koch's postulates by inducing effective nodules on axenically grown Coriaria spp. and Datisca glomerata. Analysis of the draft genome confirmed its close proximity to the Candidatus Frankia datiscae Dg1 genome with the absence of 38 genes (trehalose synthase, fumarylacetoacetase, etc) in BMG5.1 and the presence of 77 other genes (CRISPR, lanthionine synthase, glutathione synthetase, catalase, Na+/H+ antiporter, etc) not found in Dg1. A multi-gene phylogeny placed the two cluster-2 strains together at the root of the Frankia radiation.
机译:据报道,在培养某些微生物谱系方面反复失败是微生物生态学的一项重大挑战,在Frankia微共生菌与营养缺陷型的非典型模式有关的情况下,这可能是一个重大挑战。到目前为止,未培养的簇2 Candidatus Frankia datiscae Dg1与培养的Franciae的比较基因组学已显示出基因组减少,但没有明显的生理损伤。对感染了密切相关菌株的黑夜蛾的根瘤组织进行直接生理测定,可以确定对碱性条件的需求。高pH生长培养基可以恢复生长缓慢的放线菌。获得的称为BMG5.1的菌株,菌丝短,在无氮培养基中产生重氮小泡,并通过在未成年生长的Coriaria spp上诱导有效结节来满足Koch的假设。和Datisca glomerata。对草稿基因组的分析证实,它与Candidatus Frankia datiscae Dg1基因组非常接近,BMG5.1中不存在38个基因(海藻糖合酶,富马酰乙酰乙酸酶等),而其他77个基因(CRISPR,羊毛硫氨酸合酶,谷胱甘肽合成酶, Dg1中找不到过氧化氢酶,Na + / H +反转运蛋白等)。多基因系统发育将两个簇2菌株放置在Frankia辐射的根部。

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