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Endophytes from the pharmaceutical plant, Annona squamosa: isolation, bioactivity, identification and diversity of its polyketide synthase gene

机译:制药厂Annona squamosa的内生菌:其聚酮化合物合酶基因的分离,生物活性,鉴定和多样性

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摘要

Endophytic fungi were isolated from the pharmaceutical plant Annona squamosa during different seasons and 131 strains were isolated. Fermentation extracts of each strain was assayed using six different screening programs for bioactive compounds. Sixty-three of the strains producing bioactive compounds were identified by ITS rDNA sequence data. The diversity of the polyketide synthase (PKS) genes of these 63 strains was investigated using three pairs of primers, LC1-LC2c, LC3-LC5c and KS3-KS4c. Phylogenetic analysis showed that these fungi are distributed in 10 orders, in 19 genera, mostly in the orders Diapothales and Hypocreales. The groups with the highest bioactivity were from Diapothales, Clavicipitales and Xylariales. The relationship between the taxa producing bioactive compounds and the PKS genes indicates that 11 out of the 63 strains analysed contained all three KS domains. Eight of these belonged to the order Diapothales. Twenty mostly hypocrealean and phyllachoralean strains lacked a single KS domain in all three pairs of primers amplified. Two important conclusions can be drawn from this investigation. The endophytic fungi of A. squamosa contain a community with a high degree of bioactivity: Secondly, compared with other fungi, those taxa from the order Diapothales have a rich species diversity and rich PKS gene domains. These findings suggest that they have a high potential as producers of natural bioactive compounds.
机译:在不同季节从药用植物番荔枝番荔枝中分离出内生真菌,并分离出131个菌株。使用六种不同的生物活性化合物筛选程序来分析每种菌株的发酵提取物。通过ITS rDNA序列数据鉴定了63种产生生物活性化合物的菌株。使用三对引物LC1-LC2c,LC3-LC5c和KS3-KS4c研究了这63个菌株的聚酮化合物合酶(PKS)基因的多样性。系统发育分析表明,这些真菌在19个属中以10个顺序分布,主要分布在双足纲和垂足纲中。具有最高生物活性的组来自摆布,锁骨和木糖虫。产生分类单元的生物活性化合物与PKS基因之间的关系表明,在所分析的63个菌株中,有11个包含所有三个KS结构域。其中八个属于Diapothales秩序。在扩增的所有三对引物中,二十种主要为杂胰和叶菌的菌株缺乏单个KS结构域。从这项调查中可以得出两个重要的结论。鳞球菌的内生真菌包含一个具有高度生物活性的群落:其次,与其他真菌相比,来自Diapothales顺序的那些分类群具有丰富的物种多样性和丰富的PKS基因结构域。这些发现表明它们作为天然生物活性化合物的生产者具有很高的潜力。

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