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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Isolation, characterization, and plasmid pUPI126-mediated indole-3-acetic acid production in Acinetobacter strains from rhizosphere of wheat
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Isolation, characterization, and plasmid pUPI126-mediated indole-3-acetic acid production in Acinetobacter strains from rhizosphere of wheat

机译:小麦根际不动杆菌菌株的分离,鉴定及质粒pUPI126介导的吲哚-3-乙酸的生产

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Thirty-seven strains of Acinetobacter isolated and characterized from rhizosphere of wheat were screened for indole-3-acetic acid (IAA) production. Only eight Acinetobacter strains showed IAA production. The genus Acinetobacter was confirmed by chromosomal DNA transformation assay. Biotyping of eight strains was carried out and they were found to be genospecies of A. junii, A. baumannii, A. genospecies 3, and A. haemolyticus. Five of eight strains produced IAA at the early stationary phase: A. haemolyticus (A19), A. baumannii (A18, A16, A13), and Acinetobacter genospecies 3 (A15). A. junii A6 showed maximum IAA production at log phase and A. genospecies 3 and A. baumannii (A28, A30) at late stationary phase. IAA was extracted by ethyl acetate and purified by preparative thin-layer chromatography. Purified IAA was confirmed by H-1-nuclear magnetic resonance and infrared spectrum analysis. Pot experiments showed a significant increase in plant growth inoculated with eight Acinetobacter genospecies as compared to control plants. IAA production was found to be encoded by plasmid pUPI126. All eight strains of Acinetobacter contain a plasmid pUPI126 with a molecular weight of 40 kb. Plasmid pUPI126 was transformed into Escherichia coli HB101 at a frequency of 5 x 10(-5), and E. coli HB101 (pUPI126) transformants also showed IAA activity. PUPI126 also encoded resistance to selenium, tellurium, and lead. This is the first report of plasmid-encoded IAA production in the genus Acinetobacter. [References: 41]
机译:从小麦根际分离并鉴定了37株不动杆菌,筛选吲哚-3-乙酸(IAA)的产生。只有八株不动杆菌显示出IAA的产生。不动杆菌属通过染色体DNA转化测定法确认。进行了八种菌株的生物分型,发现它们是Jun。,ii.baumannii,A.genospecies 3和溶血曲霉的种。八种菌株中的五种在固定早期就产生了IAA:溶血曲霉(A19),鲍曼不动杆菌(A18,A16,A13)和不动杆菌属3(A15)。 jun。Aii junii A6在对数期显示最大IAA产量,而静止后期则有A. genospecies 3和A. baumannii(A28,A30)。用乙酸乙酯萃取IAA,并通过制备型薄层色谱法纯化。 H-1核磁共振和红外光谱分析证实了纯化的IAA。盆栽试验表明,与对照植物相比,接种了八种不动杆菌属的植物的植物生长显着增加。发现IAA产生是由质粒pUPI126编码的。所有八种不动杆菌菌株均含有分子量为40 kb的质粒pUPI126。质粒pUPI126以5 x 10(-5)的频率转化到大肠杆菌HB101中,而大肠杆菌HB101(pUPI126)转化子也显示出IAA活性。 PUPI126还编码了对硒,碲和铅的抗性。这是不动杆菌属中质粒编码的IAA产生的首次报道。 [参考:41]

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