钠盐古菌J7-2基因操作系统的建立及其营养突变体的分离与分子鉴定

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2015-05-21 eCollection Date: 2015-01-01 DOI:10.1155/2015/483194
Jie Lv, Shuai Wang, Yuchen Wang, Yuping Huang, Xiangdong Chen
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引用次数: 8

摘要

由于缺乏可用的遗传工具,我们对Natrinema属的了解目前有限。营养不良标记已被广泛用于构建细菌、真核生物和一些古细菌物种的遗传系统。本研究采用1-甲基-3-硝基-1-亚硝基-鸟嘌呤诱变方法分离了4个营养不良突变体,分别命名为J7-2-1、J7-2-22、J7-2-26和J7-2-52。突变体表型为亮氨酸(J7-2-1)、精氨酸(J7-2-22和J7-2-52)和赖氨酸(J7-2-26)营养不良。J7-2的全基因组分析和氨基酸合成途径分析表明,3个突变体的营养不良表型是由leuB (J7-2-1)、dapD (J7-2-26)和argC (J7-2-52)基因突变引起的。利用这些营养不良表型作为选择标记建立转化方法。转化效率测定为每µg DNA约10(3)个转化子。将菌株J7-2-1和J7-2-26转化为具有野生型基因组DNA、扩增相应基因片段或携带相应基因的整合质粒的原生营养菌株。此外,外源基因bgaH或amyH在J7-2-1中成功表达。因此,我们建立了一套以分离的营养不良突变体Natrinema sp. J7-2为基础的遗传操作系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Isolation and Molecular Identification of Auxotrophic Mutants to Develop a Genetic Manipulation System for the Haloarchaeon Natrinema sp. J7-2.

Isolation and Molecular Identification of Auxotrophic Mutants to Develop a Genetic Manipulation System for the Haloarchaeon Natrinema sp. J7-2.

Isolation and Molecular Identification of Auxotrophic Mutants to Develop a Genetic Manipulation System for the Haloarchaeon Natrinema sp. J7-2.

Isolation and Molecular Identification of Auxotrophic Mutants to Develop a Genetic Manipulation System for the Haloarchaeon Natrinema sp. J7-2.

Our understanding of the genus Natrinema is presently limited due to the lack of available genetic tools. Auxotrophic markers have been widely used to construct genetic systems in bacteria and eukaryotes and in some archaeal species. Here, we isolated four auxotrophic mutants of Natrinema sp. J7-2, via 1-methyl-3-nitro-1-nitroso-guanidin mutagenesis, and designated them as J7-2-1, J7-2-22, J7-2-26, and J7-2-52, respectively. The mutant phenotypes were determined to be auxotrophic for leucine (J7-2-1), arginine (J7-2-22 and J7-2-52), and lysine (J7-2-26). The complete genome and the biosynthetic pathways of amino acids in J7-2 identified that the auxotrophic phenotype of three mutants was due to gene mutations in leuB (J7-2-1), dapD (J7-2-26), and argC (J7-2-52). These auxotrophic phenotypes were employed as selectable makers to establish a transformation method. The transformation efficiencies were determined to be approximately 10(3) transformants per µg DNA. And strains J7-2-1 and J7-2-26 were transformed into prototrophic strains with the wild type genomic DNA, amplified fragments of the corresponding genes, or the integrative plasmids carrying the corresponding genes. Additionally, exogenous genes, bgaH or amyH gene, were expressed successfully in J7-2-1. Thus, we have developed a genetic manipulation system for the Natrinema genus based on the isolated auxotrophic mutants of Natrinema sp. J7-2.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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