Metadata Analysis Approaches for Understanding and Improving the Functional Involvement of Rumen Microbial Consortium in Digestion and Metabolism of Plant Biomass.

Journal of Genomics Pub Date : 2019-04-02 eCollection Date: 2019-01-01 DOI:10.7150/jgen.32164
Ayyappa Kumar Sista Kameshwar, Luiz Pereira Ramos, Wensheng Qin
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引用次数: 12

Abstract

Rumen is one of the most complex gastro-intestinal system in ruminating animals. With bountiful of microorganisms supporting in breakdown and consumption of minerals and nutrients from the complex plant biomass. It is predicted that a table spoon of ruminal fluid can reside up to 150 billion microorganisms including various species of bacteria, fungi and protozoa. Several studies in the past have extensively explained about the structural and functional physiology of the rumen. Studies based on rumen and its microbiota has increased significantly in the last decade to understand and reveal applications of the rumen microbiota in food processing, pharmaceutical, biofuel and biorefining industries. Recent high-throughput meta-genomic and proteomic studies have revealed humongous information on rumen microbial diversity. In this study, we have extensively reviewed and reported present-day's progress in understanding the rumen microbial diversity. As of today, NCBI resides about 821,870 records based on rumen with approximately 889 genome sequencing studies. We have retrieved all the rumen-based records from NCBI and extensively catalogued the rumen microbial diversity and the corresponding genomic and proteomic studies respectively. Also, we have provided a brief inventory of metadata analysis software packages and reviewed the metadata analysis approaches for understanding the functional involvement of these microorganisms. Knowing and understanding the present progress on rumen microbiota and performing metadata analysis studies will significantly benefit the researchers in identifying the molecular mechanisms involved in plant biomass degradation. These studies are also necessary for developing highly efficient microorganisms and enzyme mixtures for enhancing the benefits of cattle-feedstock and biofuel industries.

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理解和改善瘤胃微生物群落在植物生物量消化和代谢中的功能参与的元数据分析方法。
瘤胃是反刍动物最复杂的胃肠系统之一。丰富的微生物支持从复杂的植物生物质中分解和消耗矿物质和营养物质。据预测,一汤匙瘤胃液可以容纳多达1500亿种微生物,包括各种细菌、真菌和原生动物。过去的几项研究对瘤胃的结构和功能生理学进行了广泛的解释。在过去的十年里,基于瘤胃及其微生物群的研究显著增加,以了解和揭示瘤胃微生物群在食品加工、制药、生物燃料和生物精炼行业中的应用。最近的高通量宏基因组和蛋白质组学研究揭示了瘤胃微生物多样性的大量信息。在这项研究中,我们广泛回顾和报道了目前在了解瘤胃微生物多样性方面的进展。截至目前,NCBI基于瘤胃的记录约为821870个,基因组测序研究约为889个。我们从NCBI中检索了所有基于瘤胃的记录,并分别对瘤胃微生物多样性和相应的基因组和蛋白质组学研究进行了广泛编目。此外,我们还提供了元数据分析软件包的简要清单,并回顾了用于理解这些微生物的功能参与的元数据分析方法。了解和理解瘤胃微生物群的最新进展,并进行元数据分析研究,将大大有助于研究人员确定植物生物量降解的分子机制。这些研究对于开发高效微生物和酶混合物以提高牛饲料和生物燃料工业的效益也是必要的。
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来源期刊
自引率
0.00%
发文量
11
审稿时长
12 weeks
期刊介绍: Journal of Genomics publishes papers of high quality in all areas of gene, genetics, genomics, proteomics, metabolomics, DNA/RNA, computational biology, bioinformatics, and other relevant areas of research and application. Articles published by the journal are rigorously peer-reviewed. Types of articles include: Research paper, Short research communication, Review or mini-reviews, Commentary, Database, Software.
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