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Pulsed-field gel electrophoresis analysis of the genome of amino acid producing corynebacteria: chromosome sizes and diversity of restriction patterns

机译:氨基酸基因组的脉冲场凝胶电泳分析棒状菌:染色体尺寸和限制模式的多样性

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A large number of species of corynebacteria are known to be amino acid producers, including members of the genera Corynebacterium and Brevibacterium. Pulsed-field gel electrophoresis (PFGE) of DNA fragments obtained by using endonucleases which recognize AT-rich hexanucleotide or octanucleotide sequences produces a discrete pattern of bands useful for fingerprinting and physical mapping of the chromosome. Using Pacl and Swal endonucleases the genome of Brevibacterium lactofermentum ATCC 13869 (genome size 3052 kb) was consistently cut into 26 and 20 bands, respectively, and the genome of Corynebacterium glutamicum ATCC 13032 (2987 kb) yielded 27 and 26 fragments, respectively. The pattern of restriction fragments was identical for related strains (B. lactofermentum ATCC 13869, B. lactofermentum BLO, B. lactofermentum R31) but different from the pattern of fragments of other soil isolates of the same species (B. lactofermentum DSM 20412) or from closely related organisms such as C. glutamicum; the different pattern of restriction fragments may be used to differentiate taxonomically related species. Brevibacterium linens showed a different behaviour, due to its high G + C content; its genome (3105 kb) was resolved into 8 or 15 fragments, respectively, by digestion with the hexanucleotide-recognizing endonucleases Dral and Asel. PFGE of DNA fragments obtained using these enzymes is a powerful technique for quick resolution of the corynebacteria genome into a small number of large fragments.
机译:已知大量种类的棒状细菌是氨基酸生产者,包括属棒状杆菌和流动的成员。通过使用识别富含己核苷酸或辛核苷酸序列的内切核酸酶获得的DNA片段的脉冲场凝胶电泳(PFGE)产生可用于指纹识别和染色体的物理映射的分立带的离散模式。使用PACL和Swal内切核酸酶,分别将乳酸乳酸杆菌ATCC 13869(基因组大小3052kb)的基因组分别切入26和20条带,分别产生27和26个碎片的棒状杆菌ATCC 13032(2987kb)的基因组。相关菌株的限制性片段的模式(B.Lactofermentum ATC13869,B.Lactofermentum Blo,B.Lactofermentum R31),但不同于相同物种的其他土壤分离株的片段(B.Lactofermentum DSM 20412)或从密切相关的生物如C.谷氨酰胺;可以使用不同的限制片段模式来区分分类学相关的物种。由于其高G + C含量,亚麻杆菌表现出不同的行为;通过用己核苷酸识别的内切核酸酶研发和asel消化,将其基因组(3105kb)分别分别分别分别析出8或15片段。使用这些酶获得的DNA片段的PFGE是一种强大的技术,用于快速分离棒状基因组成少数大片段。

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