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从[具体来源]分离得到的可培养内生菌多样性及其生物活性的遗传基础。 (注:原文中“from”后面缺少具体内容)

Culturable Endophytes Diversity Isolated from and the Genetic Basis for Their Bioactivity.

作者信息

Yang Rui-Xian, Zhang Shao-Wen, Xue Dong, Xuan Jun-Hao, Zhang Yuan-Bo, Peng Biao-Biao

机构信息

Department of Environmental Engineering and Chemistry, Luoyang Institute of Science and Technology , Luoyang , P.R.China.

出版信息

Pol J Microbiol. 2018;67(4):441-454. doi: 10.21307/pjm-2018-052.

Abstract

Paeonia ostii is known for its excellent medicinal values as Chinese traditional plant. To date, the diversity of culturable endophytes associated with P. ostii is in its initial phase of exploration. In this study, 56 endophytic bacteria and 51 endophytic fungi were isolated from P. ostii roots in China. Subsequent characterization of 56 bacterial strains by 16S rDNA gene sequence analysis revealed that nine families and 13 different genera were represented. All the fungal strains were classed into six families and 12 genera based on ITS gene sequence. The biosynthetic potential of all the endophytes was further investigated by the detection of putative polyketide synthase (PKS) and nonribosomal peptide synthetase (NRPS) genes. The PCR screens were successful in targeting thirteen bacterial PKS, five bacterial NRPS, ten fungal PKS and nine fungal NRPS gene fragments. Bioinformatic analysis of these detected endophyte gene fragments facilitated inference of the potential bioactivity of endophyte bioactive products, suggesting that the isolated endophytes are capable of producing a plethora of secondary metabolites. These results suggest that endophytes isolated from P. ostii had abundant population diversity and biosynthetic potential, which further proved that endophytes are valuable reservoirs of novel bioactive compounds. is known for its excellent medicinal values as Chinese traditional plant. To date, the diversity of culturable endophytes associated with is in its initial phase of exploration. In this study, 56 endophytic bacteria and 51 endophytic fungi were isolated from roots in China. Subsequent characterization of 56 bacterial strains by 16S rDNA gene sequence analysis revealed that nine families and 13 different genera were represented. All the fungal strains were classed into six families and 12 genera based on ITS gene sequence. The biosynthetic potential of all the endophytes was further investigated by the detection of putative polyketide synthase (PKS) and nonribosomal peptide synthetase (NRPS) genes. The PCR screens were successful in targeting thirteen bacterial PKS, five bacterial NRPS, ten fungal PKS and nine fungal NRPS gene fragments. Bioinformatic analysis of these detected endophyte gene fragments facilitated inference of the potential bioactivity of endophyte bioactive products, suggesting that the isolated endophytes are capable of producing a plethora of secondary metabolites. These results suggest that endophytes isolated from had abundant population diversity and biosynthetic potential, which further proved that endophytes are valuable reservoirs of novel bioactive compounds.

摘要

作为中国传统植物,芍药(Paeonia ostii)以其卓越的药用价值而闻名。迄今为止,与芍药相关的可培养内生菌的多样性研究尚处于初步探索阶段。在本研究中,从中国的芍药根部分离出56株内生细菌和51株内生真菌。随后通过16S rDNA基因序列分析对56株细菌菌株进行表征,结果显示它们分属于9个科和13个不同的属。基于ITS基因序列,所有真菌菌株被归类为6个科和12个属。通过检测假定的聚酮合酶(PKS)和非核糖体肽合成酶(NRPS)基因,进一步研究了所有内生菌的生物合成潜力。PCR筛选成功靶向了13个细菌PKS、5个细菌NRPS、10个真菌PKS和9个真菌NRPS基因片段。对这些检测到的内生菌基因片段进行生物信息学分析,有助于推断内生菌生物活性产物的潜在生物活性,表明分离出的内生菌能够产生大量次生代谢产物。这些结果表明,从芍药中分离出的内生菌具有丰富的种群多样性和生物合成潜力,进一步证明内生菌是新型生物活性化合物的宝贵来源。作为中国传统植物,芍药(Paeonia ostii)以其卓越的药用价值而闻名。迄今为止,与芍药相关的可培养内生菌的多样性研究尚处于初步探索阶段。在本研究中,从中国的芍药根部分离出56株内生细菌和51株内生真菌。随后通过16S rDNA基因序列分析对56株细菌菌株进行表征,结果显示它们分属于9个科和13个不同的属。基于ITS基因序列,所有真菌菌株被归类为6个科和12个属。通过检测假定的聚酮合酶(PKS)和非核糖体肽合成酶(NRPS)基因,进一步研究了所有内生菌的生物合成潜力。PCR筛选成功靶向了13个细菌PKS、5个细菌NRPS、10个真菌PKS和9个真菌NRPS基因片段。对这些检测到的内生菌基因片段进行生物信息学分析,有助于推断内生菌生物活性产物的潜在生物活性,表明分离出的内生菌能够产生大量次生代谢产物。这些结果表明,从芍药中分离出的内生菌具有丰富的种群多样性和生物合成潜力,进一步证明内生菌是新型生物活性化合物的宝贵来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc8a/7256872/437e3fbb33c7/pjm-67-4-441-g001.jpg

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