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The Screening of Antimicrobial Bacteria with Diverse Novel Nonribosomal Peptide Synthetase (NRPS) Genes from South China Sea Sponges

机译:利用南海海绵的多种新型非核糖体肽合成酶(NRPS)基因筛选抗菌细菌

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摘要

Nonribosomal peptide synthetase (NRPS) adenylation (A) domain genes were investigated by polymerase chain reaction for 109 bacteria isolated from four South China Sea sponges, Stelletta tenuis, Halichondria rugosa, Dysidea avara, and Craniella australiensis. Meanwhile, the antimicrobial bioassay of bacteria with NRPS genes were carried out to confirm the screening of NRPS genes. Fifteen bacteria were found to contain NRPS genes and grouped into two phyla Firmicutes (13 of 15) and Proteobacteria (two of 15) according to 16S rDNA sequences. Based on the phylogenetic analysis of the conserved A domain amino acid sequences, most of the NRPS fragments (11 of 15) showed below 70% similarity to their closest relatives suggesting the novelty of these NRPS genes. All of the 15 bacteria with NRPS genes have antimicrobial activities, with most of them exhibiting activity against multiple indicators including fungi and gram-positive and gram-negative bacteria. The different antimicrobial spectra indicate the chemical diversity of biologically active metabolites of sponge-associated bacteria and the possible role of bacterial symbionts in the host's antimicrobial chemical defense. Phylogenetic analysis based on the representative NRPS genes shows high diversity of marine NRPS genes. The combined molecular technique and bioassay strategy will be useful to obtain sponge-associated bacteria with the potential to synthesize bioactive compounds.
机译:通过聚合酶链反应研究了从4种南海海绵,Stelletta tenuis,Halichondria rugosa,Dysidea avara和Craniella australiensis分离的109种细菌,研究了非核糖体肽合成酶(NRPS)腺苷酸化(A)域基因。同时,对具有NRPS基因的细菌进行了抗菌生物测定,以证实NRPS基因的筛选。发现有15个细菌含有NRPS基因,并根据16S rDNA序列分为两个门类(15个中的13个)和变形杆菌(15个中的两个)。根据保守的A结构域氨基酸序列的系统发育分析,大多数NRPS片段(15个中的11个)显示出与其最接近的亲戚相似度低于70%,表明这些NRPS基因具有新颖性。 15种具有NRPS基因的细菌均具有抗菌活性,其中大多数对多种指标均具有活性,包括真菌,革兰氏阳性和革兰氏阴性细菌。不同的抗菌谱表明海绵相关细菌的生物活性代谢物的化学多样性以及细菌共生体在宿主抗菌化学防御中的可能作用。基于代表性的NRPS基因的系统发育分析显示海洋NRPS基因的高度多样性。结合的分子技术和生物测定策略将对获得海绵相关细菌具有合成生物活性化合物的潜力很有用。

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