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用于检验土壤中铜绿假单胞菌(lacZY)生存能力的微宇宙验证。

Validation of Microcosms for Examining the Survival of Pseudomonas aureofaciens (lacZY) in Soil.

出版信息

Appl Environ Microbiol. 1995 Aug;61(8):2835-9. doi: 10.1128/aem.61.8.2835-2839.1995.

Abstract

Evaluating the safety and efficacy of a recombinant bacterium prior to its release into the terrestrial environment requires that risk assessment data be collected in the laboratory. Much of this information is obtained with the use of microcosms. The design of the microcosm significantly affects the ability of the recombinant microorganism to survive in soil and, thus, complicates the risk assessment process. To standardize microcosms for future use, we evaluated the survival of Pseudomonas aureofaciens 3732 RN-L11 (lacZY Rif(supr) Nal(supr)) in intact soil cores (5.0 by 15 cm; polyvinyl chloride core) and disturbed soil microcosms (50 g of fresh, sieved soil). Survival data were compared with those obtained during a field release. The intact soil core microcosm was shown to closely simulate results obtained in the field. The intact soil core microcosm closely predicts survival in bulk soil and in the rhizosphere of wheat. Data obtained with the microcosm were also similar when evaluated in separate studies in two different years. In 1993, P. aureofaciens survived for approximately 63 days in bulk soil and 96 days in the rhizosphere. The disturbed soil microcosm exhibited a much more rapid decline in population size (34 days to zero) than the intact core microcosm. We speculate that drying and sieving of soil for the disturbed soil microcosm affected the ability of the soil to support the survival of P. aureofaciens. These results demonstrate that a small, inexpensive, and simple intact soil core microcosm may be appropriate for risk assessment.

摘要

在将重组细菌释放到陆地环境之前,需要评估其安全性和功效,这就需要在实验室中收集风险评估数据。其中大部分信息是使用微宇宙获得的。微宇宙的设计极大地影响了重组微生物在土壤中的生存能力,从而使风险评估过程复杂化。为了标准化未来的微宇宙,我们评估了假单胞菌 3732RN-L11(lacZYRif(supr)Nal(supr))在完整土壤芯(5.0×15cm;聚氯乙烯芯)和扰动土壤微宇宙(50g 新鲜过筛土壤)中的存活情况。将存活数据与田间释放时获得的数据进行了比较。完整土壤芯微宇宙被证明可以很好地模拟田间结果。完整土壤芯微宇宙可很好地预测在土壤本体和小麦根际中的存活情况。在两年中的两个单独研究中评估时,微宇宙获得的数据也相似。1993 年,假单胞菌在土壤本体中存活了大约 63 天,在根际中存活了 96 天。扰动土壤微宇宙的种群数量下降速度(34 天到零)比完整芯微宇宙快得多。我们推测,土壤的干燥和过筛处理会影响土壤维持假单胞菌生存的能力。这些结果表明,一个小型、廉价且简单的完整土壤芯微宇宙可能适合风险评估。

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