I. S. Kovtun, M. Filonova, A. Borisova, A. Sazonov
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Experimental work, which is carried out using the biological material collected and stored during large-scale studies (also involving the capabilities of citizen science), allows not only identifying the parameters characteristic of animal physiology features, but also discovering new types of biotechnologically promising microorganisms. The approach to the sampling process requires special attention, since the quality of the selected biological material is crucial in the research process. Moreover, the methods and approaches of citizen science can significantly expand the territorial and geographical coverage of sampling sites, which will enable to increase the reliability of the scientific data obtained. The biobank acts as a link connecting professional studies and \"citizen science\", organizes and coordinates the process of their interaction. The paper presents the experience of organizing the biobank of Tomsk State University which is aimed to store the samples of metabolic by-products of agriculturally significant animals (manure, droppings, compost, and samples of fermented dairy products). In addition, the strains of agriculturally significant microorganisms isolated while studying the collected biological material are stored in the biobank. The biobank acts as a unique structure of its kind, a \"universal tool\" created for implementation of large-scale research projects. When implementing major biological research projects which involve conducting large-scale studies (for example, the projects as part of the federal scientific and technical program for the development of genetic technologies for 2019-2027 approved by the Russian Federation Government Decree No 1930 as of December 28, 2019), there arises an urgent issue of obtaining biological material for the studies. As part of the project under implementation, The TSU Biobank of Agriculturally Significant Microorganisms (TSU Biobank of ASM), a bioresource collection of the samples of metabolic by-products of agriculturally significant animals and strains of agriculturally significant microorganisms isolated while studying the collected biological material was created. The biobank was created in order to ensure proper storage conditions for the samples, cultures of ASM, and genomic DNA collected during the project implementation, and provide information about the sources of samples and biological material, and their use in biotechnology. The biobank regulations – a document regulating the biobank activities – was designed, and a list of documents which guide the biobank in its activities was presented. General provisions, including general requirements for organization of the biobank's activities, its functions and powers, and the rules for reception/storage/distribution of biological material and associated information were also provided. The biobank acts as a unique link between professional science and citizen science. It is the context of biobanking where the works of professional scientists can be combined with the contribution of \"citizen scientists\". 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Experimental work, which is carried out using the biological material collected and stored during large-scale studies (also involving the capabilities of citizen science), allows not only identifying the parameters characteristic of animal physiology features, but also discovering new types of biotechnologically promising microorganisms. The approach to the sampling process requires special attention, since the quality of the selected biological material is crucial in the research process. Moreover, the methods and approaches of citizen science can significantly expand the territorial and geographical coverage of sampling sites, which will enable to increase the reliability of the scientific data obtained. The biobank acts as a link connecting professional studies and \\\"citizen science\\\", organizes and coordinates the process of their interaction. The paper presents the experience of organizing the biobank of Tomsk State University which is aimed to store the samples of metabolic by-products of agriculturally significant animals (manure, droppings, compost, and samples of fermented dairy products). In addition, the strains of agriculturally significant microorganisms isolated while studying the collected biological material are stored in the biobank. The biobank acts as a unique structure of its kind, a \\\"universal tool\\\" created for implementation of large-scale research projects. When implementing major biological research projects which involve conducting large-scale studies (for example, the projects as part of the federal scientific and technical program for the development of genetic technologies for 2019-2027 approved by the Russian Federation Government Decree No 1930 as of December 28, 2019), there arises an urgent issue of obtaining biological material for the studies. 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引用次数: 0
摘要
生物库是进行所有类型研究的宝贵资源,因为它们是包含可获取和定义的各种类型生物样本和相关数据的基本结构。生物银行包括样品的收集、处理、储存和分发,并允许使用大量样品进行广泛的生物医学研究,从而确保结果的质量并符合标准的实验室方法。文献检索证实,与人类生物银行相比,动物生物银行部门的活动微不足道。此外,收集与农场牲畜有关的样本具有相当大的科学和实际意义。实验工作是利用在大规模研究期间收集和储存的生物材料(也涉及公民科学的能力)进行的,不仅可以确定动物生理特征的参数特征,还可以发现生物技术上有前景的新型微生物。采样过程的方法需要特别注意,因为所选生物材料的质量在研究过程中至关重要。此外,公民科学的方法和途径可以显著扩大采样点的地域和地理覆盖范围,从而提高所获得的科学数据的可靠性。生物库作为专业研究和“公民科学”之间的纽带,组织和协调他们相互作用的过程。本文介绍了组织托木斯克国立大学生物库的经验,该生物库旨在存储农业重要动物(粪便,粪便,堆肥和发酵乳制品样品)的代谢副产物样本。此外,在研究收集的生物材料时分离出的具有农业意义的微生物菌株被储存在生物库中。生物库是同类中独一无二的结构,是为实施大规模研究项目而创建的“通用工具”。在实施涉及大规模研究的重大生物研究项目时(例如,2019年12月28日俄罗斯联邦政府第1930号法令批准的2019-2027年遗传技术发展联邦科学技术计划的一部分项目),出现了获取研究生物材料的紧急问题。作为正在实施的项目的一部分,TSU农业重要微生物生物样本库(TSU bioobank of agricultural Significant microbes,简称TSU bioobank of ASM)建立了一个生物资源库,收集了在研究收集的生物材料时分离的农业重要动物的代谢副产物样本和农业重要微生物菌株。生物库的建立是为了确保在项目实施过程中收集的样品、ASM培养物和基因组DNA的适当储存条件,并提供有关样品和生物材料来源及其在生物技术中的使用的信息。设计了生物银行条例- -一份规范生物银行活动的文件- -并提出了指导生物银行活动的文件清单。还提供了一般规定,包括组织生物库活动的一般要求、其职能和权力以及接收/储存/分发生物材料和相关信息的规则。生物库是专业科学与公民科学之间的独特纽带。在生物银行的背景下,专业科学家的工作可以与“公民科学家”的贡献相结合。在这种情况下,生物样本库作为一个控制环节,是评估进入生物样本库的生物材料质量的标准和方法的来源,因为收到的生物材料的质量可能会因收集样本的人员的专业程度而有很大差异。本文包含2张图,22篇参考文献。
The Study of Metabolic By-Products of Farm Livestock: Prospects for the Creation of a Biobank
Biobanks are a valuable resource for conducting all types of studies, since they are fundamental structures which contain accessible and defined biological samples of various types and related data. Biobanking includes collection, treatment, storage and distribution of samples and allows conducting a wide range of biomedical research with a significant number of samples, thus ensuring the quality of results and compliance with standard laboratory methods. The literature search confirmed an insignificant activity in the animal biobanking sector when compared to that of human biobanking. In addition, the collection of samples associated with farm livestock is of considerable scientific and practical interest. Experimental work, which is carried out using the biological material collected and stored during large-scale studies (also involving the capabilities of citizen science), allows not only identifying the parameters characteristic of animal physiology features, but also discovering new types of biotechnologically promising microorganisms. The approach to the sampling process requires special attention, since the quality of the selected biological material is crucial in the research process. Moreover, the methods and approaches of citizen science can significantly expand the territorial and geographical coverage of sampling sites, which will enable to increase the reliability of the scientific data obtained. The biobank acts as a link connecting professional studies and "citizen science", organizes and coordinates the process of their interaction. The paper presents the experience of organizing the biobank of Tomsk State University which is aimed to store the samples of metabolic by-products of agriculturally significant animals (manure, droppings, compost, and samples of fermented dairy products). In addition, the strains of agriculturally significant microorganisms isolated while studying the collected biological material are stored in the biobank. The biobank acts as a unique structure of its kind, a "universal tool" created for implementation of large-scale research projects. When implementing major biological research projects which involve conducting large-scale studies (for example, the projects as part of the federal scientific and technical program for the development of genetic technologies for 2019-2027 approved by the Russian Federation Government Decree No 1930 as of December 28, 2019), there arises an urgent issue of obtaining biological material for the studies. As part of the project under implementation, The TSU Biobank of Agriculturally Significant Microorganisms (TSU Biobank of ASM), a bioresource collection of the samples of metabolic by-products of agriculturally significant animals and strains of agriculturally significant microorganisms isolated while studying the collected biological material was created. The biobank was created in order to ensure proper storage conditions for the samples, cultures of ASM, and genomic DNA collected during the project implementation, and provide information about the sources of samples and biological material, and their use in biotechnology. The biobank regulations – a document regulating the biobank activities – was designed, and a list of documents which guide the biobank in its activities was presented. General provisions, including general requirements for organization of the biobank's activities, its functions and powers, and the rules for reception/storage/distribution of biological material and associated information were also provided. The biobank acts as a unique link between professional science and citizen science. It is the context of biobanking where the works of professional scientists can be combined with the contribution of "citizen scientists". In this case, the biobank acts as a controlling link, a source of criteria and methods for assessing the quality of biological material entering the biobank, since the quality of the received biological material may differ significantly depending on the degree of professionalism of a person who collects samples.The article contains 2 Figures, 22 References.