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一株球形链霉菌通过细胞间接触杀死铜绿微囊藻。

A Streptomyces globisporus strain kills Microcystis aeruginosa via cell-to-cell contact.

机构信息

Chongqing Key Laboratory of Bio-resource development for Bioenergy, College of Resources and Environment, Southwest University, Chongqing 400715, China.

Canadian Museum of Nature, 240 McLeod Street, Ottawa, Ontario K1P 6P4, Canada.

出版信息

Sci Total Environ. 2021 May 15;769:144489. doi: 10.1016/j.scitotenv.2020.144489. Epub 2021 Jan 14.

Abstract

Cyanobacterial harmful algal blooms (CyanoHABs) bring economic loss, damage aquatic ecosystems, and produce cyanobacterial toxins that threaten human health. Algicidal bacteria as pathogens can expediate the decline of CyanoHABs. In this study, a Streptomyces globisporus strain (designated G9), isolated from soil near a eutrophic pond, showed high algicidal activity against Microcystis aeruginosa. Experimental results show that G9 preyed on Microcystis through cell-to-cell contact: (1) the hyphae of G9 killed cyanobacterial cells by twining around them, while cells beyond the reach of G9 hyphae were in normal shapes; (2) No algicides were detectable in the supernatant of G9 cultures or G9-Microcystis cocultures. The algicidal ratio of G9 to M. aeruginosa reached 96.7% after 6 days. G9 selectively killed the tested cyanobacterial strains, while it had only minor impacts on the growth of tested Chlorophyceae. Differential gene expression studies show that G9 affected the expression of key genes of M. aeruginosa involved in photosynthesis, microcystin synthesis and cellular emergency responses. Further, the microcystin-LR content decreased gradually with G9 treatment. As the first reported Streptomyces sp. with algicidal (predation) activity requiring cell-to-cell contact with target prey, G9 is a good candidate for the exploration of additional cyanobacteria-bacteria interactions and the development of novel strategies to control CyanoHABs.

摘要

蓝藻有害藻华(CyanoHABs)会带来经济损失、破坏水生生态系统,并产生威胁人类健康的蓝藻毒素。作为病原体的杀藻细菌可以加速 CyanoHABs 的衰退。在这项研究中,从富营养化池塘附近的土壤中分离到的一株链霉菌(命名为 G9)对铜绿微囊藻表现出很高的杀藻活性。实验结果表明,G9 通过细胞间接触捕食微囊藻:(1)G9 的菌丝通过缠绕杀死蓝藻细胞,而 G9 菌丝无法到达的细胞则保持正常形状;(2)在 G9 培养物或 G9-微囊藻共培养物的上清液中未检测到杀藻剂。G9 对铜绿微囊藻的杀藻率在 6 天后达到 96.7%。G9 选择性地杀死了测试的蓝藻菌株,而对测试的绿藻的生长只有较小的影响。差异基因表达研究表明,G9 影响了铜绿微囊藻参与光合作用、微囊藻毒素合成和细胞应急反应的关键基因的表达。此外,随着 G9 的处理,微囊藻毒素-LR 的含量逐渐降低。作为第一个报道的具有与靶标猎物细胞间接触要求的杀藻(捕食)活性的链霉菌属,G9 是探索更多的蓝藻-细菌相互作用和开发控制 CyanoHABs 的新策略的良好候选者。

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