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Elucidation of the life cycle of the endophytic genus Muscodor and its transfer to Induratia in Induratiaceae fam. nov., based on a polyphasic taxonomic approach

机译:阐明内生生命周期的生命周期及其在靛蓝群FAM中的抗肌肤转移。 11月。,基于多水分类方法

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Molecular phylogenetic studies of cultures derived from some specimens of plant-inhabiting Sordariomycetes using ITS, LSU, rpb2 and tub2 DNA sequence data revealed close affinities to strains of Muscodor. The taxonomy of this biotechnologically important genus, which exclusively consists of endophytes with sterile mycelia that produce antibiotic volatile secondary metabolites, was based on a rather tentative taxonomic concept. Even though it was accommodated in Xylariaceae, its phylogenetic position had so far remained obscure. Our phylogeny shows that Muscodor species have affinities to the xylarialean genera Emarcea and Induratia, which is corroborated by the fact that their sexual states produce characteristic apiospores. These data allow for the integration of Muscodor in Induratia, i.e. the genus that was historically described first. The multi-locus phylogenetic tree clearly revealed that a clade comprising Emarcea and Induratia forms a monophylum separate from representatives of Xylariaceae, for which we propose the new family Induratiaceae. Divergence time estimations revealed that Induratiaceae has been diverged from the Xylariaceae + Clypeosphaeriaceae clade at 93 (69-119) million years ago (Mya) with the crown age of 61 (39-85) Mya during the Cretaceous period. The ascospore-derived cultures were studied for the production of volatile metabolites, using both, dual cultures for assessment of antimicrobial effects and extensive analyses using gas chromatography coupled with mass spectrometry (GC-MS). The antimicrobial effects observed were significant, but not as strong as in the case of the previous reports on Muscodor species. The GC-MS results give rise to some doubt on the validity of the previous identification of certain volatiles. Many peaks in the GC-MS chromatograms could not be safely identified by database searches and may represent new natural products. The isolation of these compounds by preparative chromatography and their subsequent characterisation by nuclear magnetic resonance (NMR) spectroscopy or total synthesis will allow for a more concise identification of these volatiles, and they should also be checked for their individual contribution to the observed antibiotic effects. This will be an important prerequisite for the development of biocontrol strains.
机译:使用其,LSU,RPB2和TUB2 DNA序列数据揭示了来自植物孤岛肌瘤的某些标本的培养物的分子系统发育研究揭示了对Muscodor菌株的紧密亲和力。这种生物技术上重要的属性的分类,它专门由具有产生抗生素挥发性二次代谢物的无菌菌丝体组成的内心菌群,是基于相当试点的分类概念。尽管它被容纳在Xylariaceae中,但它的系统发育地位仍然是难以模糊的。我们的系统发育表明,Muscodor物种对Xylarialean Firla Emarcea和迷恋的关联,这被他们的性态产生了特征性吸血剂的事实得到了证实。这些数据允许在幻象中集成Muscodor,即首先历史上描述的属。多基因座的系统发育树清楚地表明,包含emarcea和蝶的思科与XyliaCeae的代表分开的单声道,为此,我们提出了新的家庭肌属植物。发散时间估计表明,在白垩纪期间,在93(69-119)百万年前(MYA)的冠状病+甘露藻藻岩患者患有近古氏菌+ Clypehaeriaceae散落。研究了Ascospore衍生的培养物,用于使用两种培养物用于生产挥发性代谢物,用于评估抗微生物效应和使用气相色谱偶联与质谱(GC-MS)进行广泛的分析。观察到的抗微生物效应是显着的,但不如以前关于Muscodor物种的报告的情况那么强烈。 GC-MS结果引起了一些关于某些挥发物鉴定的有效性的疑问。数据库搜索无法安全地识别GC-MS色谱图中的许多峰,并且可以代表新的天然产品。通过制备色谱法分离这些化合物及其随后的核磁共振(NMR)光谱或总合成的表征将允许这些挥发物的更简洁的鉴定,并且还应检查它们对观察到的抗生素作用的个体贡献。这将是生物控制菌株发展的重要前提。

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