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棕色固氮菌algGXLVIFA基因的转录组织:algF突变体的特征分析

Transcriptional organization of the Azotobacter vinelandii algGXLVIFA genes: characterization of algF mutants.

作者信息

Vazquez A, Moreno S, Guzmán J, Alvarado A, Espín G

机构信息

Departamento de Microbiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Apartado Postal 510-3, Cuernavaca, 62250 Morelos, Mexico.

出版信息

Gene. 1999 May 31;232(2):217-22. doi: 10.1016/s0378-1119(99)00119-5.

Abstract

Azotobacter vinelandii forms desiccation-resistant cysts which contain a high proportion of the exopolysaccharide alginate in their envelope. We have previously shown that the A. vinelandii alginate biosynthetic genes algA and algL are transcribed from a promoter located somewhere upstream of algL. In this study we sequenced the A. vinelandii algX, algL, algV, algI and algF genes located between algG and algA. We carried out primer extension analysis of the algG, algX and algL genes and detected transcription start sites upstream algG but not upstream algX or algL, implying that algG and algX form part of the previously identified algL-A operon. A promoter upstream algA was also detected; however, transcription of algA exclusively from this promoter is not sufficient for the AlgA levels required for alginate production. An algF mutant (AJ34) was constructed by insertion of the Omega-tetracycline cassette in the non-polar orientation. As expected, AJ34 produced unacetylated alginate. Viability of 35day old cysts formed by strain AJ34, but not of those formed by the wild type, was reduced, indicating that acetylation of alginate plays a role in cyst resistance to desiccation.

摘要

棕色固氮菌形成抗干燥的孢囊,其包膜中含有高比例的胞外多糖藻酸盐。我们之前已表明,棕色固氮菌的藻酸盐生物合成基因algA和algL是从位于algL上游某处的启动子转录而来。在本研究中,我们对位于algG和algA之间的棕色固氮菌algX、algL、algV、algI和algF基因进行了测序。我们对algG、algX和algL基因进行了引物延伸分析,检测到algG上游有转录起始位点,但algX或algL上游没有,这意味着algG和algX是先前鉴定的algL - A操纵子的一部分。还检测到algA上游有一个启动子;然而,仅从该启动子转录algA不足以产生藻酸盐所需的AlgA水平。通过以非极性方向插入Ω - 四环素盒构建了一个algF突变体(AJ34)。正如预期的那样,AJ34产生了未乙酰化的藻酸盐。由AJ34菌株形成的35日龄孢囊的活力降低,但野生型形成的孢囊则不然,这表明藻酸盐的乙酰化在孢囊抗干燥中起作用。

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