Guan J, Spencer J L, Sampath M, Devenish J
Ottawa Laboratory-Fallowfield, Canadian Food Inspection Agency, Ottawa, Canada.
Can J Microbiol. 2004 Jun;50(6):415-21. doi: 10.1139/w04-030.
The fate of the genetically modified (GM) Pseudomonas chlororaphis strain 3732 RN-L11 and its transgene (lacZ insert) during composting of chicken manure was studied using plate count and nested polymerase chain reaction (PCR) methods. The detection sensitivity of the nested PCR method was 165 copies of the modified gene per gram of moist compost or soil. Compost microcosms consisted of a 100-g mixture of chicken manure and peat, whereas soil microcosms were 100-g samples of sandy clay loam. Each microcosm was inoculated with 4 x 1010 CFU of P. chlororaphis RN-L11. In controlled temperature studies, neither P. chlororaphis RN-L11 nor its transgene could be detected in compost microcosms after incubation temperature was elevated to 45 degrees C or above for one or more days. In contrast, in the compost microcosms incubated at 23 degrees C, the target organism was not detected by the plate count method after 6 days, but its transgene was detectable for at least 45 days. In compost bins, the target organism was not recovered from compost microcosms or soil microcosms at different levels in the bins for 29 days. However, the transgene was detected in 8 of the 9 soil microcosms and in only 1 of the 9 compost microcosms. The compost microcosm in which transgene was detected was at the lower level of the bin where temperatures remained below 45 degrees C. The findings indicated that composting of organic wastes could be used to reduce or degrade heat sensitive GM microorganisms and their transgenes.
采用平板计数法和巢式聚合酶链反应(PCR)方法,研究了转基因绿针假单胞菌3732 RN-L11菌株及其转基因(lacZ插入片段)在鸡粪堆肥过程中的命运。巢式PCR方法的检测灵敏度为每克湿堆肥或土壤中165个修饰基因拷贝。堆肥微观系统由100克鸡粪和泥炭的混合物组成,而土壤微观系统是100克砂质粘壤土样品。每个微观系统接种4×10¹⁰CFU的绿针假单胞菌RN-L11。在控温研究中,当培养温度升高到45℃或更高温度持续一天或多天后,在堆肥微观系统中既检测不到绿针假单胞菌RN-L11,也检测不到其转基因。相比之下,在23℃下培养的堆肥微观系统中,6天后平板计数法未检测到目标生物体,但其转基因至少45天内可检测到。在堆肥箱中,29天内未从堆肥箱不同层面的堆肥微观系统或土壤微观系统中回收目标生物体。然而,在9个土壤微观系统中有8个检测到了转基因,而在9个堆肥微观系统中只有1个检测到了转基因。检测到转基因的堆肥微观系统位于堆肥箱温度保持在45℃以下的较低层面。研究结果表明,有机废物堆肥可用于减少或降解对热敏感的转基因微生物及其转基因。