Antagonistic actions of Paucibacter aquatile B51 and its lasso peptide paucinodin toward cyanobacterial bloom-forming Microcystis aeruginosa PCC7806

IF 2.8 3区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Journal of Phycology Pub Date : 2023-12-10 DOI:10.1111/jpy.13412
Yeji Cha, Wonjae Kim, Yerim Park, Minkyung Kim, Yongjun Son, Woojun Park
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Abstract

Superior antagonistic activity against axenic Microcystis aeruginosa PCC7806 was observed with Paucibacter sp. B51 isolated from cyanobacterial bloom samples among 43 tested freshwater bacterial species. Complete genome sequencing, analyzing average nucleotide identity and digital DNA–DNA hybridization, designated the B51 strain as Paucibacter aquatile. Electron and fluorescence microscopic image analyses revealed the presence of the B51 strain in the vicinity of M. aeruginosa cells, which might provoke direct inhibition of the photosynthetic activity of the PCC7806 cells, leading to perturbation of cellular metabolisms and consequent cell death. Our speculation was supported by the findings that growth failure of the PCC7806 cells led to low pH conditions with fewer chlorophylls and down-regulation of photosystem genes (e.g., psbD and psaB) during their 48-h co-culture condition. Interestingly, the concentrated ethyl acetate extracts obtained from B51-grown supernatant exhibited a growth-inhibitory effect on PCC7806. The physical separation of both strains by a filter system led to no inhibitory activity of the B51 cells, suggesting that contact-mediated anti-cyanobacterial compounds might also be responsible for hampering the growth of the PCC7806 cells. Bioinformatic tools identified 12 gene clusters that possibly produce secondary metabolites, including a class II lasso peptide in the B51 genome. Further chemical analysis demonstrated anti-cyanobacterial activity from fractionated samples having a rubrivinodin-like lasso peptide, named paucinodin. Taken together, both contact-mediated inhibition of photosynthesis and the lasso peptide secretion of the B51 strain are responsible for the anti-cyanobacterial activity of P. aquatile B51.

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挥发性贫杆菌 B51 及其套索肽 paucinodin 对蓝藻藻华形成微囊藻 PCC7806 的拮抗作用
在 43 种受测淡水细菌中,从蓝藻水华样本中分离出的鲍氏杆菌 B51 对轴生铜绿微囊藻 PCC7806 具有极强的拮抗活性。通过完整的基因组测序,分析平均核苷酸同一性和数字 DNA-DNA 杂交,确定 B51 菌株为水华型 Paucibacter。电子显微镜和荧光显微镜图像分析表明,B51 菌株存在于铜绿微囊藻细胞附近,可能会直接抑制 PCC7806 细胞的光合作用,导致细胞代谢紊乱,进而导致细胞死亡。我们的推测得到了以下研究结果的支持:在共培养 48 小时期间,PCC7806 细胞生长失败导致低 pH 值条件下叶绿素减少,光系统基因(如 psbD 和 psaB)下调。有趣的是,从 B51 生长的上清液中提取的浓缩乙酸乙酯对 PCC7806 有抑制生长的作用。用过滤系统将两种菌株物理分离后,B51 细胞没有抑制活性,这表明接触介导的抗蓝藻化合物可能也是阻碍 PCC7806 细胞生长的原因。生物信息学工具在 B51 基因组中发现了 12 个可能产生次级代谢物的基因簇,其中包括一种二类拉索肽。进一步的化学分析表明,分馏样品中具有一种类似于 rubrivinodin 的拉索肽(名为 paucinodin),具有抗蓝藻细菌的活性。综上所述,B51 菌株通过接触传染抑制光合作用和分泌拉索肽,是造成水华柱孢菌 B51 具有抗yanobacterial 活性的原因。
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来源期刊
Journal of Phycology
Journal of Phycology 生物-海洋与淡水生物学
CiteScore
6.50
自引率
3.40%
发文量
69
审稿时长
2 months
期刊介绍: The Journal of Phycology was founded in 1965 by the Phycological Society of America. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, taxonomist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems. All aspects of basic and applied research on algae are included to provide a common medium for the ecologist, physiologist, cell biologist, molecular biologist, morphologist, oceanographer, acquaculturist, systematist, geneticist, and biochemist. The Journal also welcomes research that emphasizes algal interactions with other organisms and the roles of algae as components of natural ecosystems.
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