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A Novel Biocontainment Strategy Makes Bacterial Growth and Survival Dependent on Phosphite

机译:一种新型的生物控制策略使细菌的生长和生存依赖于亚磷酸盐

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摘要

There is a growing demand to develop biocontainment strategies that prevent unintended proliferation of genetically modified organisms in the open environment. We found that the hypophosphite (H3PO2, HPt) transporter HtxBCDE from Pseudomonas stutzeri WM88 was also capable of transporting phosphite (H3PO3, Pt) but not phosphate (H3PO4, Pi), suggesting the potential for engineering a Pt/HPt-dependent bacterial strain as a biocontainment strategy. We disrupted all Pi and organic Pi transporters in an Escherichia coli strain expressing HtxABCDE and a Pt dehydrogenase, leaving Pt/HPt uptake and oxidation as the only means to obtain Pi. Challenge on non-permissive growth medium revealed that no escape mutants appeared for at least 21 days with a detection limit of 1.94 × 10−13 per colony forming unit. This represents, to the best of our knowledge, the lowest escape frequency among reported strategies. Since Pt/HPt are ecologically rare and not available in amounts sufficient for the growth of the Pt/HPt-dependent bacteria, this strategy offers a reliable and practical method for biocontainment.
机译:越来越需要开发生物遏制策略,以防止转基因生物在开放环境中意外繁殖。我们发现斯图氏假单胞菌WM88的次磷酸盐(H3PO2,HPt)转运蛋白HtxBCDE也能够转运亚磷酸盐(H3PO3,Pt)但不能转运磷酸盐(H3PO4,Pi),暗示了工程化Pt / HPt依赖性细菌菌株的潜力生物遏制策略。我们破坏了表达HtxABCDE和Pt脱氢酶的大肠杆菌菌株中的所有Pi和有机Pi转运蛋白,而Pt / HPt的吸收和氧化是获得Pi的唯一方法。在非允许生长培养基上的攻击表明,至少21天没有出现逃逸突变体,每个菌落形成单位的检出限为1.94××10 10 sup-13 。据我们所知,这代表了所报告策略中最低的逃生频率。由于Pt / HPt在生态学上是稀有的,并且其数量不足以依赖Pt / HPt的细菌生长,因此该策略提供了一种可靠且实用的生物遏制方法。

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