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海洋细菌对大型海藻疾病的跨宿主保护作用

Cross-Host Protection of Marine Bacteria Against Macroalgal Disease.

作者信息

Li Jiasui, Weinberger Florian, Saha Mahasweta, Majzoub Marwan E, Egan Suhelen

机构信息

Centre for Marine Science and Innovation, School of Biological, Earth and Environmental Sciences, Faculty of Science, The University of New South Wales, Kensington, NSW, 2052, Australia.

Marine Ecology Division, GEOMAR Helmholtz Centre for Ocean Research Kiel, Düsternbrooker Weg 20, 24105, Kiel, Germany.

出版信息

Microb Ecol. 2022 Nov;84(4):1288-1293. doi: 10.1007/s00248-021-01909-2. Epub 2021 Nov 3.

Abstract

Despite an increasing awareness of disease impacts on both cultivated and native seaweed populations, the development of marine probiotics has been limited and predominately focused on farmed animals. Bleaching (loss of thallus pigmentation) is one of the most prevalent diseases observed in marine macroalgae. Endemic probiotic bacteria have been characterized to prevent bleaching disease in red macroalgae Agarophyton vermiculophyllum and Delisea pulchra; however, the extent to which probiotic strains provide cross-protection to non-endemic hosts and the influence of native microbiota remain unknown. Using A. vermiculophyllum as a model, we demonstrate that co-inoculation with the pathogen Pseudoalteromonas arctica G-MAN6 and D. pulchra probiotic strain Phaeobacter sp. BS52 or Pseudoalteromonas sp. PB2-1 reduced the disease risks compared to the pathogen only treatment. Moreover, non-endemic probiotics outperformed the endemic probiotic strain Ralstonia sp. G-NY6 in the presence of the host natural microbiota. This study highlights how the native microbiota can impact the effectiveness of marine probiotics and illustrates the potential of harnessing probiotics that can function across different hosts to mitigate the impact of emerging marine diseases.

摘要

尽管人们越来越意识到疾病对养殖和本地海藻种群的影响,但海洋益生菌的发展仍然有限,并且主要集中在养殖动物上。白化(藻体色素沉着丧失)是在大型海藻中观察到的最普遍的疾病之一。已鉴定出地方性益生菌可预防红藻Agarophyton vermiculophyllum和Delisea pulchra中的白化病;然而,益生菌菌株对非地方性宿主提供交叉保护的程度以及本地微生物群的影响仍然未知。以A. vermiculophyllum为模型,我们证明与病原体北极假交替单胞菌G-MAN6和D. pulchra益生菌菌株Phaeobacter sp. BS52或假交替单胞菌sp. PB2-1共同接种,与仅用病原体处理相比,降低了疾病风险。此外,在宿主自然微生物群存在的情况下,非地方性益生菌的表现优于地方性益生菌菌株Ralstonia sp. G-NY6。这项研究突出了本地微生物群如何影响海洋益生菌的有效性,并说明了利用可在不同宿主中发挥作用的益生菌来减轻新出现的海洋疾病影响的潜力。

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