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探讨益生菌联合体与其珊瑚宿主相互作用的潜在分子机制。

Exploring the Potential Molecular Mechanisms of Interactions between a Probiotic Consortium and Its Coral Host.

机构信息

Red Sea Research Centre, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

Biological and Environmental Science and Engineering Division, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

mSystems. 2023 Feb 23;8(1):e0092122. doi: 10.1128/msystems.00921-22. Epub 2023 Jan 23.

Abstract

Beneficial microorganisms for corals (BMCs) have been demonstrated to be effective probiotics to alleviate bleaching and mitigate coral mortality . The selection of putative BMCs is traditionally performed manually, using an array of biochemical and molecular tests for putative BMC traits. We present a comprehensive genetic survey of BMC traits using a genome-based framework for the identification of alternative mechanisms that can be used for future selection of BMC strains. We identify exclusive BMC traits associated with specific strains and propose new BMC mechanisms, such as the synthesis of glycine betaine and ectoines. Our roadmap facilitates the selection of BMC strains while increasing the array of genetic targets that can be included in the selection of putative BMC strains to be tested as coral probiotics. Probiotics are currently the main hope as a potential medicine for corals, organisms that are considered the marine "canaries of the coal mine" and that are threatened with extinction. Our experiments have proved the concept that probiotics mitigate coral bleaching and can also prevent coral mortality. Here, we present a comprehensive genetic survey of probiotic traits using a genome-based framework. The main outcomes are a roadmap that facilitates the selection of coral probiotic strains while increasing the array of mechanisms that can be included in the selection of coral probiotics.

摘要

有益珊瑚微生物(BMCs)已被证明是有效的益生菌,可以缓解珊瑚白化并减轻珊瑚死亡率。传统上,通过一系列生化和分子测试来手动选择潜在的 BMC 特性。我们使用基于基因组的框架对 BMC 特性进行了全面的遗传调查,以确定可以用于未来选择 BMC 菌株的替代机制。我们确定了与特定菌株相关的独特 BMC 特性,并提出了新的 BMC 机制,例如甘氨酸甜菜碱和外切酶的合成。我们的路线图有助于选择 BMC 菌株,同时增加可以包括在潜在 BMC 菌株选择中的遗传靶标数量,以作为珊瑚益生菌进行测试。益生菌目前是珊瑚的主要希望,因为它们被认为是海洋“煤矿中的金丝雀”,而且正面临灭绝的威胁。我们的实验已经证明了益生菌可以减轻珊瑚白化并预防珊瑚死亡的概念。在这里,我们使用基于基因组的框架对益生菌特性进行了全面的遗传调查。主要结果是提供了一个路线图,有助于选择珊瑚益生菌菌株,同时增加可以包括在珊瑚益生菌选择中的机制数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7257/9948713/c84789e3f323/msystems.00921-22-f001.jpg

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