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共生益生菌菌株对卤虫中华哲水蚤和小球藻生长的影响及其对弧菌属的潜在保护作用。

Influence of Symbiotic Probiont Strains on the Growth of Amphora and Chlorella and Its Potential Protections Against Vibrio spp. in Artemia.

作者信息

Rosland Natasya-Ain, Ikhsan Natrah, Min Chong C, Yusoff Fatimah M, Karim Murni

机构信息

Laboratory of Aquatic Animal Health and Therapeutics, Institute of Bioscience, Universiti Putra Malaysia, 43400, Serdang, Selangor, Malaysia.

Department of Aquaculture, Faculty of Agriculture, Universiti Putra Malaysia, 43400, Serdang, Selangor, Malaysia.

出版信息

Curr Microbiol. 2021 Nov;78(11):3901-3912. doi: 10.1007/s00284-021-02642-2. Epub 2021 Sep 14.

Abstract

The emerging aquaculture industry is in need of non-antibiotic-based disease control approaches to minimize the risk of antibiotic-resistant bacteria. Bacterial infections mainly caused by Vibrio spp. have caused mass mortalities of fish especially during the larval stages. The objectives of this study were to verify the potential of symbiotic probiont strains, isolated from microalgae (Amphora, Chlorella, and Spirulina) for suppressing the growth of Vibrio spp. and at the same time ascertain their abilities to enhance microalgal biomass by mutualistic interactions through microalgae-bacteria symbiosis. In addition, in vivo studies on Artemia bioencapsulated with probiont strains (single strain and mix strains) and microalgae were evaluated. The selected potential probionts were identified as Lysinibacillus fusiformis strain A-1 (LFA-1), Bacillus sp. strain A-2 (BA-2), Lysinibacillus fusiformis strain Cl-3 (LFCl-3), and Bacillus pocheonensis strain S-2 (BPS-2) using 16s rRNA. The cell densities of Amphora culture supplemented with BA-2 and Chlorella culture supplemented with LFCl-3 were higher than those of the controls. Artemia bioencapsulated with mix strains (LFA-1 + BA-2 + LFCl-3 + BPS-2) and Amphora demonstrated the highest survival rate compared to the controls, after being challenged with V. harveyi (60 ± 4%) and V. parahaemolyticus (78 ± 2%). Our study postulated that BA-2 and LFCl-3 were found to be good promoting bacteria for microalgal growth and microalgae serve as a vector to transport probiotic into Artemia. Moreover, mixture of potential probionts is beneficial for Artemia supplementation in conferring protection to Artemia nauplii against pathogenic Vibrios.

摘要

新兴的水产养殖业需要基于非抗生素的疾病控制方法,以尽量降低抗生素耐药菌的风险。主要由弧菌属引起的细菌感染已导致鱼类大量死亡,尤其是在幼体阶段。本研究的目的是验证从微藻(双眉藻、小球藻和螺旋藻)中分离出的共生益生菌菌株抑制弧菌属生长的潜力,同时确定它们通过微藻-细菌共生的互利相互作用提高微藻生物量的能力。此外,还评估了用益生菌菌株(单菌株和混合菌株)和微藻进行生物包囊的卤虫的体内研究。使用16s rRNA将选定的潜在益生菌鉴定为梭状赖氨酸芽孢杆菌菌株A-1(LFA-1)、芽孢杆菌属菌株A-2(BA-2)、梭状赖氨酸芽孢杆菌菌株Cl-3(LFCl-3)和抱川芽孢杆菌菌株S-2(BPS-2)。添加BA-2的双眉藻培养物和添加LFCl-3的小球藻培养物的细胞密度高于对照。在用哈维氏弧菌(60±4%)和副溶血性弧菌(78±2%)攻击后,用混合菌株(LFA-1+BA-2+LFCl-3+BPS-2)和双眉藻进行生物包囊的卤虫显示出与对照相比最高的存活率。我们的研究推测,发现BA-2和LFCl-3是微藻生长的良好促进细菌,微藻作为载体将益生菌转运到卤虫中。此外,潜在益生菌的混合物有利于卤虫补充,为卤虫无节幼体提供针对致病性弧菌的保护。

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