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用于测试基因工程微生物的水生微宇宙中的微生物营养相互作用:现场比较。

Microbial trophic interactions in aquatic microcosms designed for testing genetically engineered microorganisms: A field comparison.

机构信息

National Environmental Research Institute, Department of Marine Ecology and Microbiology, Frederiksborgvej 399, DK-4000, Roskilde, Denmark.

出版信息

Microb Ecol. 1992 Jun;23(2):143-57. doi: 10.1007/BF00172636.

Abstract

Microcosms may potentially be used as tools for evaluating the fate and effects of genetically engineered microorganisms released into the environment. Extrapolation of data to the field, however, requires that the correspondence between microcosm and field is known. Microbial trophic interactions within the microbial loop were compared quantitatively and qualitatively between field and microcosms containing estuarine water with and without intact sediment cores. The comparison showed that whereas proportions between trophic levels in microcosms were qualitatively similar to those in the field, rates of microbial processes were from 25 to 40% lower in microcosms. Nitrogen cycling was disrupted in microcosms incubated in the dark to eliminate primary production. Examination of the microbial parameters further suggests that sediment in microcosms may be an important factor regulating the bacterial trophic level. These results demonstrate that analysis of microbial trophic interactions is a sensitive method for the field comparison of aquatic microcosms and a potentially useful tool in the risk assessment of genetically engineered microorganisms.

摘要

微宇宙可能被用作评估环境中释放的基因工程微生物的命运和影响的工具。然而,要将数据外推到野外,就必须了解微宇宙与野外之间的对应关系。在含有港湾水和不含完整沉积物岩芯的微宇宙和野外中,定量和定性地比较了微生物环中的微生物营养相互作用。比较表明,虽然微宇宙中营养层次的比例与野外相似,但微宇宙中的微生物过程速率比野外低 25%至 40%。在黑暗中孵育的微宇宙中,氮循环被中断以消除初级生产。对微生物参数的进一步研究表明,微宇宙中的沉积物可能是调节细菌营养层次的重要因素。这些结果表明,微生物营养相互作用的分析是水生微宇宙野外比较的一种敏感方法,也是基因工程微生物风险评估的一种潜在有用工具。

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