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Enhanced Utilization of Phosphonate and Phosphite by Klebsiella aerogenes

机译:产气克雷伯菌提高了膦酸酯和亚磷酸酯的利用

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Klebsiella aerogenes ATCC 9621 was able to utilize phosphonates (Pn), including aminoethylphosphonate, ethylphosphonate, methylphosphonate (MPn), and phosphonoacetate, and inorganic phosphite (Pt) as sole sources of phosphorus (P). The products of the phn gene cluster were absolutely required for Pn breakdown and Pt oxidation to inorganic phosphate (Pi) in this organism. To determine if K. aerogenes ATCC 9621 could be engineered to enhance the utilization of Pn and Pt, a multicopy plasmid, pBI05, which carried the entirephn gene cluster, was introduced into this strain. Despite the increased dosage of the phn genes, K. aerogenes ATCC 9621(pBI05) could utilize only up to 1.1-fold more Pn and Pt than did the control strain with the parent vector alone. These results suggested that Pi, which was generated from Pn and Pt, might limit further utilization of these P compounds. Consequently, to convert the resulting Pi to polyphosphate (polyP), the plasmid pKP28, which carried the K. aerogenes ppk gene (which encodes polyP kinase), was introduced into K. aerogenes ATCC 9621(pBI05). Overexpression of the ppk gene in K. aerogenes ATCC 9621(pBI05, pKP28) resulted in a 2.5-fold increase in Pt utilization over that of the control strain. This recombinant strain also accumulated approximately sixfold more P than did the control strain when the cells were grown with MPnas a sole source of P.
机译:产气克雷伯菌ATCC 9621能够利用膦酸酯(Pn),包括氨基乙基膦酸酯,乙基膦酸酯,甲基膦酸酯(MPn)和膦酰乙酸酯,以及无机亚磷酸酯(Pt)作为唯一的磷(P)来源。在该生物体中,Pn分解和Pt氧化为无机磷酸盐(Pi)绝对需要phn基因簇的产物。为了确定是否可以工程改造产气假单胞菌ATCC 9621以提高Pn和Pt的利用率,将携带完整phn基因簇的多拷贝质粒pBI05引入该菌株。尽管增加了phn基因的剂量,但产气假单胞菌ATCC 9621(pBI05)所利用的Pn和Pt最多比单独使用亲本载体的对照菌株高1.1倍。这些结果表明,由Pn和Pt生成的Pi可能会限制这些P化合物的进一步利用。因此,为了将所得的Pi转化为多磷酸盐(polyP),将携带有产气假单胞菌ppk基因(编码polyP激酶)的质粒pKP28引入到产气假单胞菌ATCC 9621(pBI05)中。在产气假单胞菌ATCC 9621(pBI05,pKP28)中过表达ppk基因导致Pt利用率比对照菌株高2.5倍。当细胞以MPnas作为唯一的P来源生长时,该重组菌株还比对照菌株积累了大约六倍的P。

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