Host-microbiome interaction in fish and shellfish: An overview

A.D. Diwan , Sanjay N Harke , Archana N Panche
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引用次数: 3

Abstract

The importance of the gut microbiome in the management of various physiological activities including healthy growth and performance of fish and shellfish is now widely considered and being studied in detail for potential applications in aquaculture farming and the future growth of the fish industry. The gut microbiome in all animals including fish is associated with a number of beneficial functions for the host, such as stimulating optimal gastrointestinal development, producing and supplying vitamins to the host, and improving the host's nutrient uptake by providing additional enzymatic activities. Besides nutrient uptake, the gut microbiome is involved in strengthening the immune system and maintaining mucosal tolerance, enhancing the host's resilience against infectious diseases, and the production of anticarcinogenic and anti-inflammatory compounds. Because of its significant role, the gut microbiome is very often considered an “extra organ,” as it plays a key role in intestinal development and regulation of other physiological functions. Recent studies suggest that the gut microbiome is involved in energy homeostasis by regulating feeding, digestive and metabolic processes, as well as the immune response. Consequently, deciphering gut microbiome dynamics in cultured fish and shellfish species will play an indispensable role in promoting animal health and aquaculture productivity. It is mentioned that the microbiome community available in the gut tract, particularly in the intestine acts as an innovative source of natural product discovery. The microbial communities that are associated with several marine organisms are the source of natural products with a diverse array of biological activities and as of today, more than 1000 new compounds have been reported from such microbial species. Exploration of such new ingredients from microbial species would create more opportunities for the development of the bio-pharma/aquaculture industries. Considering the important role of the microbiome in the whole life span of fish and shellfish, it is necessary to understand the interaction process between the host and microbial community. However, information pertaining to host-microbiome interaction, particularly at the cellular level, gene expression, metabolic pathways, and immunomodulation mechanisms, the available literature is scanty. It has been reported that there are three ways of interaction involving the host-microbe-environment operates to maintain homeostasis in the fish and shellfish gut i.e. host intrinsic factors, the environment that shapes the gut microbiome composition, and the core microbial community present in the gut system itself has equal influence on the host biology. In the present review, efforts have been made to collect comprehensive information on various aspects of host-microbiome interaction, particularly on the immune system and health maintenance, management of diseases, nutrient uptake, digestion and absorption, gene expression, and metabolism in fish and shellfish.

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鱼类和贝类宿主-微生物组相互作用综述
肠道微生物组在管理各种生理活动(包括鱼类和贝类的健康生长和性能)中的重要性现在得到了广泛的考虑,并正在进行详细的研究,以在水产养殖和鱼类行业的未来发展中获得潜在应用。包括鱼类在内的所有动物的肠道微生物组都与宿主的许多有益功能有关,如刺激最佳胃肠道发育、为宿主生产和供应维生素,以及通过提供额外的酶活性来提高宿主的营养吸收。除了营养吸收外,肠道微生物组还参与增强免疫系统和维持粘膜耐受性,增强宿主对传染病的抵抗力,以及产生抗癌和抗炎化合物。由于其重要作用,肠道微生物组通常被认为是一个“额外的器官”,因为它在肠道发育和其他生理功能的调节中发挥着关键作用。最近的研究表明,肠道微生物组通过调节进食、消化和代谢过程以及免疫反应参与能量稳态。因此,解读养殖鱼类和贝类的肠道微生物组动态将在促进动物健康和水产养殖生产力方面发挥不可或缺的作用。有人提到,肠道中,特别是肠道中的微生物组群落是发现天然产物的创新来源。与几种海洋生物相关的微生物群落是具有多种生物活性的天然产物的来源,截至目前,已有1000多种新化合物从这些微生物物种中被报道。从微生物物种中探索这种新成分将为生物制药/水产养殖业的发展创造更多机会。考虑到微生物组在鱼类和贝类的整个寿命中的重要作用,有必要了解宿主和微生物群落之间的相互作用过程。然而,关于宿主-微生物组相互作用的信息,特别是在细胞水平、基因表达、代谢途径和免疫调节机制方面,现有文献很少。据报道,有三种相互作用方式涉及宿主微生物环境,以维持鱼类和贝类肠道的稳态,即宿主内在因素、塑造肠道微生物组组成的环境以及肠道系统中存在的核心微生物群落本身对宿主生物学具有同等影响。在本综述中,已努力收集有关宿主-微生物组相互作用各个方面的全面信息,特别是有关鱼类和贝类的免疫系统和健康维护、疾病管理、营养吸收、消化和吸收、基因表达和代谢的信息。
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2.60
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12 weeks
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