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土壤微生物群落的主要分离与鉴定方法。

Principal methods for isolation and identification of soil microbial communities.

机构信息

Department of Food Science and Technology, Laboratory of Microbiology, Biotechnology and Hygiene, Democritus University of Thrace, 193 Pandazidou Str, 68200, Orestiada, Greece.

出版信息

Folia Microbiol (Praha). 2013 Jan;58(1):61-8. doi: 10.1007/s12223-012-0179-5. Epub 2012 Jul 12.

Abstract

Soil microbial populations play crucial role in soil properties and influence below-ground ecosystem processes. Microbial composition and functioning changes the soil quality through decomposition of organic matter, recycling of nutrients, and biological control of parasites of plants. Moreover, the discovery that soil microbes may translate into benefits for biotechnology, management of agricultural, forest, and natural ecosystems, biodegradation of pollutants, and waste treatment systems maximized the need of scientists for the isolation and their characterization. Operations such as the production of antibiotics and enzymic activities from microorganisms of soil constitute objectives of industry in her effort to cope with the increase of population of earth and disturbance of environment and may ameliorate the effects of global climate change. In the past decades, new biochemical and molecular techniques have been developed in our effort to identify and classify soil bacteria. The goal of measuring the soil microbial diversity is difficult because of the limited knowledge about bacteria species and classification through families and orders. Molecular techniques extend our knowledge about microbial diversity and help the taxonomy of species. Measuring and monitoring soil microbial communities can lead us to better understanding of their composition and function in many ecosystem processes.

摘要

土壤微生物群体在土壤特性中起着至关重要的作用,并影响地下生态系统过程。微生物组成和功能通过有机物分解、养分循环和植物寄生虫的生物控制来改变土壤质量。此外,发现土壤微生物可能转化为生物技术、农业、森林和自然生态系统管理、污染物生物降解和废物处理系统的优势,这极大地增加了科学家对其分离和特性描述的需求。土壤微生物生产抗生素和酶活性等操作构成了工业的目标,以应对地球人口的增加和环境的干扰,并可能减轻全球气候变化的影响。在过去的几十年中,我们开发了新的生化和分子技术,以努力识别和分类土壤细菌。由于对细菌种类和通过科和目进行分类的了解有限,因此衡量土壤微生物多样性的目标具有挑战性。分子技术扩展了我们对微生物多样性的认识,并有助于物种的分类学。测量和监测土壤微生物群落可以使我们更好地了解它们在许多生态系统过程中的组成和功能。

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