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Evolving gene clusters in soil bacteria

机译:在土壤细菌中发展基因簇

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Soil is heterogeneous in nearly all respects and contains a huge diversity of microorganisms. The availability of carbon and other energy sources, mineral nutrients and water varies considerably over space and time, as does temperature. Adaptations to nutrient poverty including oligotrophy and zymogeny (upsurge in growth when nutrients are available) are common. The water films essential for microbial life in soil are discontinuous, and only clay particles have the necessary charges to hold water against the pull of gravity. Clay-coated soil particles cluster together to form aggregates, and these aggregates or clusters of aggregates with their adjacent water form the micro-habitats in which bacteria function (Stotzky, 1997). The result of the discrete microhabitats in soil is that microbial population dynamics and interactions are very different from those in well-mixed substrates such as some aquatic environments. Soil is also a reservoir for pesticides and other chemical and microbiological inputs from slurry application, all of which will have a selective impact on the indigenous bacteria.
机译:土壤在几乎所有方面都是异质的,并且含有巨大的微生物多样性。碳和其他能源的可用性,矿物营养素和水在空间和时间内各不相同,如温度一样。适应营养贫困,包括寡糖和酶原(当营养物质可获得的增长时)是常见的。土壤中微生物寿命是必不可少的水膜是不连续的,并且只有粘土颗粒具有必要的电荷,以将水抵抗引力。粘土涂覆的土壤颗粒聚集在一起形成聚集体,与其相邻水的这些聚集体或聚集簇形成细菌功能的微栖息地(Stotzky,1997)。土壤中离散微藻的结果是微生物种群动态和相互作用与诸如一些水生环境的良好混合基材中的相互作用非常不同。土壤也是泥浆应用的农药和其他化学和微生物投入的储层,所有这些都将对土着细菌具有选择性影响。

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