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Changes in the Microbiome of Mariculture Feed Organisms after Treatment with a Potentially Probiotic Strain of Phaeobacter inhibens

机译:用潜在益生菌抑制治疗后洗车饲料生物微生物的变化

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The Phaeobacter genus has been explored as probiotics in mariculture as a sustainable strategy for the prevention of bacterial infections. Its antagonistic effect against common fish pathogens is predominantly due to the production of the antibacterial compound tropodithietic acid (TDA), and TDA-producing strains have repeatedly been isolated from mariculture environments. Despite many in vitro trials targeting pathogens, little is known about its impact on host-associated microbiomes in mariculture. Hence, the purpose of this study was to investigate how the addition of a TDA-producing Phaeobacter inhibens strain affects the microbiomes of live feed organisms and fish larvae. We used 16S rRNA gene sequencing to characterize the bacterial diversity associated with live feed microalgae ( Tetraselmis suecica ), live feed copepod nauplii ( Acartia tonsa ), and turbot ( Scophthalmus maximus ) eggs/larvae. The microbial communities were unique to the three organisms investigated, and the addition of the probiotic bacterium had various effects on the diversity and richness of the microbiomes. The structure of the live feed microbiomes was significantly changed, while no effect was seen on the community structure associated with turbot larvae. The changes were seen primarily in particular taxa. The Rhodobacterales order was indigenous to all three microbiomes and decreased in relative abundance when P. inhibens was introduced in the copepod and turbot microbiomes, while it was unaffected in the microalgal microbiome. Altogether, the study demonstrates that the addition of P. inhibens in higher concentrations, as part of a probiotic regime, does not appear to cause major imbalances in the microbiome, but the effects were specific to closely related taxa.IMPORTANCE This work is an essential part of the risk assessment of the application of roseobacters as probiotics in mariculture. It provides insights into the impact of TDA-producing Phaeobacter inhibens on the commensal bacteria related to mariculture live feed and fish larvae. Also, the study provides a sequencing-based characterization of the microbiomes related to mariculture-relevant microalga, copepods, and turbot larvae.
机译:Phaeobaction Genus已被探索为海水养殖,作为预防细菌感染的可持续战略。其对常见鱼类病原体的拮抗作用主要是由于产生抗菌化合物的荧光化合物(TDA),并且TDA产生的菌株已经反复从海水养环境中分离。尽管有许多靶向病原体的体外试验,但对其对海水养殖中的宿主相关的微生物体的影响很少。因此,本研究的目的是调查如何添加TDA的Phaeobacter抑制菌株的添加影响活饲料生物和鱼类幼虫的微生物。我们使用了16S RRNA基因测序,以表征与活饲料微藻(Tetraselmis Suecica)相关的细菌多样性,活饲料Copepod Nauplii(Acartia Tonsa)和Turbot(Scophthalmus Maximus)卵/幼虫。微生物群落是研究的三种生物是独一无二的,益生菌细菌的添加对微生物体的多样性和丰富性具有各种影响。活饲料微生物体的结构显着改变,而与涡轮机幼虫相关的社区结构没有看到任何效果。这些变化主要是特别特别的分类群。当P.抑制在CopePod和涡轮发电机微生物体中引入抑制时,乳蛋白顺序对所有三个微生物酶均是本发明的,并且在相对丰度下降,而在微生物微生物组中不受影响。同时,该研究表明,作为益生菌政权的一部分,添加P.抑制剂的添加较高浓度,并未在微生物组中引起重大不平衡,但是特定于密切相关的分类效果。这项工作是必不可少的Riorobacters在海水养殖中血清族应用的一部分风险评估。它提供了对TDA产生的Phaeobacter抑制对与海水养殖活饲料和鱼类幼虫有关的共生细菌的影响的洞察。此外,该研究提供了与水疗养学相关的微藻,桡足类和涡轮机幼虫有关的微生物的序列表征。

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