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首页> 外文期刊>Microbial Ecology: An International Journal >Phylogenetically Diverse Cultivable Fungal Community and Polyketide Synthase (PKS), Non-ribosomal Peptide Synthase (NRPS) Genes Associated with the South China Sea Sponges
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Phylogenetically Diverse Cultivable Fungal Community and Polyketide Synthase (PKS), Non-ribosomal Peptide Synthase (NRPS) Genes Associated with the South China Sea Sponges

机译:与南海海绵相关的系统发育多样的真菌群落和聚酮合酶(PKS),非核糖体肽合酶(NRPS)基因

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摘要

Compared with sponge-associated bacteria, the phylogenetic diversity of fungi in sponge and the association of sponge fungi remain largely unknown. Meanwhile, no detection of polyketide synthase (PKS) or non-ribosomal peptide synthase (NRPS) genes in sponge-associated fungi has been attempted. In this study, diverse and novel cultivable fungi including 10 genera (Aspergillus, Ascomycete, Fusarium, Isaria, Penicillium, Plectosphaerella, Pseudonectria, Simplicillium, Trichoderma, and Volutella) in four orders (Eurotiales, Hypocreales, Microascales, and Phyllachorales) of phylum Ascomycota were isolated from 10 species marine sponges in the South China Sea. Eurotiales and Hypocreales fungi were suggested as sponge generalists. The predominant isolates were Penicillium and Aspergillus in Eurotiales followed by Volutella in Hypocreales. Based on the conserved Beta-ketosynthase of PKS and A domain of NRPS, 15 polyketide synthases, and four non-ribosomal peptides synthesis genes, including non-reducing and reducing PKSs and hybrid PKS-NRPS, were detected in these fungal isolates. A lateral gene transfer event was indicated in the comparison between the phylogenetic diversity of 18S rRNA genes and beta-ketoacyl synthase domain sequences. Some fungi, especially those with PKS or NRPS genes, showed antimicrobial activity against P. fluorescens, S. aureus and B. subtilis. It was the first time to investigate PKS and NRPS genes in sponge-associated fungi. Based on the detected antibiotics biosynthesis-related PKS and NRPS genes and antimicrobial activity, the potential ecological role of sponge-associated fungi in the chemical defense for sponge host was suggested. This study extended our knowledge of sponge-associated fungal phylogenetic diversity and their potential roles in the chemical defense.
机译:与海绵相关细菌相比,海绵中真菌的系统发育多样性和海绵真菌的相关性仍然未知。同时,尚未尝试检测海绵相关真菌中的聚酮化合物合酶(PKS)或非核糖体肽合酶(NRPS)基因。在这项研究中,包括10个属(曲霉菌,子囊菌,镰刀菌,Isaria,青霉菌,嗜粉菌,Pseudonectria,Simplicillium,木霉菌和Volutella)的四个属(欧洲菌,次生菌,小鳞菌和毛囊菌)的新颖新颖的可培养真菌。分离自南中国海的10种海洋海绵。有人建议将Eurotiales和Hypocreales真菌用作海绵类专家。主要分离株是Eurotiales中的青霉和曲霉,其次是Hypocreales中的Volutella。根据保守的PKSβ-酮基合酶和NRPS的A结构域,在这些真菌分离物中检测到15个聚酮化合物合酶和4个非核糖体肽合成基因,包括非还原性和还原性PKSs和杂合PKS-NRPS。 18S rRNA基因的系统发育多样性与β-酮酰基合酶结构域序列之间的比较表明了横向基因转移事件。一些真菌,特别是具有PKS或NRPS基因的真菌,对荧光假单胞菌,金黄色葡萄球菌和枯草芽孢杆菌具有抗菌活性。这是首次研究海绵相关真菌中的PKS和NRPS基因。根据检测到的抗生素生物合成相关的PKS和NRPS基因以及抗菌活性,提出了海绵相关真菌在海绵宿主化学防御中的潜在生态作用。这项研究扩展了我们对海绵相关真菌系统发生多样性的了解,以及它们在化学防御中的潜在作用。

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