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在将遗传工程菌株释放到环境中的预试验期间,丁香假单胞菌的空气散布和附生生存。

Aerial Dispersal and Epiphytic Survival of Pseudomonas syringae during a Pretest for the Release of Genetically Engineered Strains into the Environment.

机构信息

Department of Plant Pathology, University of California, Berkeley, California 94720.

出版信息

Appl Environ Microbiol. 1988 Jun;54(6):1557-63. doi: 10.1128/aem.54.6.1557-1563.1988.

Abstract

Prospective experimental field evaluation of genetically engineered microorganisms, such as microbial pest control agents, raises issues of how to properly ascertain their fate and survival in the environment. Field trials with recombinant organisms must reflect requirements for sampling and monitoring. Field trials were conducted at Tulelake, Calif., to monitor the numbers of viable cells of a nonrecombinant strain of Pseudomonas syringae that entered the atmosphere and landed on plants and soil during and after an aerosol spray application. An exponential decrease in numbers of viable cells deposited at increasing distances from three sprayed plots was observed. The relative rate of survival of cells sprayed directly on plants was more than 10 times higher than that of cells dispersed through the air to similar adjacent plants. Results are being used to gain experience with the characteristics of a release site that influence containment or dispersal and to develop appropriate sampling methodologies for evaluating survival and dispersal characteristics of genetically engineered bacteria released into the environment. The ability to make predictions about microbial dispersal and survival will reduce the uncertainties associated with environmental releases of recombinant organisms.

摘要

对经过基因改造的微生物(如微生物害虫防治剂)进行前瞻性的现场实验评估时,会产生如何正确确定其在环境中的命运和生存能力的问题。具有重组生物体的现场试验必须反映出抽样和监测的要求。曾在加利福尼亚州图莱里湖进行过现场试验,以监测在气溶胶喷雾施用过程中和之后,进入大气并降落在植物和土壤上的非重组型丁香假单胞菌活菌数量。观察到从三个喷洒区域的距离增加时,活菌数量呈指数下降。直接喷洒在植物上的细胞的相对存活率比通过空气分散到类似的相邻植物上的细胞的存活率高 10 多倍。正在利用这些结果获得对影响控制或分散的释放地点特征的经验,并开发出评估释放到环境中的基因工程细菌的生存和分散特征的适当抽样方法。对微生物分散和生存能力进行预测的能力将减少与重组生物体的环境释放相关的不确定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3302/202695/887364501e32/aem00111-0256-a.jpg

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