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首页> 外文期刊>Infection and immunity >Transformation of Streptococcus mutans with chromosomal and shuttle plasmid (pYA629) DNAs.
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Transformation of Streptococcus mutans with chromosomal and shuttle plasmid (pYA629) DNAs.

机译:用染色体和梭子质粒(PYA629)DNA的链球菌转化。

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Transformation (i.e., DNase-sensitive genetic transfer) of strains of Streptococcus mutans representing serotypes c and e was accomplished by using chromosomal DNA from a Rifr Strr Spcr isolate of strain GS5 (UAB525) and a chimeric plasmid, pYA629. Shuttle plasmid pYA629 comprises the S. mutans plasmid pVA318, an inducible erythromycin resistance determinant originally isolated from a group A streptococcal strain, the tetracycline resistance gene and replication region of the Escherichia coli plasmid pBR322, and the promoter region of the S. mutans gene for aspartate beta-semialdehyde dehydrogenase. The strains examined for recipient ability included those known to lack a cryptic plasmid (GS5, UA130, UA159, and MT8148) and those known to contain a widely disseminated 5.8-kilobase cryptic plasmid (LM7, V318, UA101, UA174, and 3098791). The transformation frequencies in GS5 for GS5 chromosomal antibiotic resistance markers were comparable to those reported by others, but UA101, UA130, UA159 and UA174 were transformed with both chromosomal and plasmid markers at much higher efficiencies. In a larger strain survey, strains containing the 5.8-kilobase cryptic plasmid were more frequently transformable with both chromosomal and pYA629 DNAs than were strains lacking this cryptic plasmid. All plasmid-containing strains except LM7 lost their resident cryptic plasmids when transformed with pYA629. LM7 transformed with pYA629 retained pLM7. There are therefore at least two incompatibility groups among S. mutans cryptic plasmids. yPA629 DNA isolated from either E. coli or S. mutans transformed S. mutans with equal efficiency. pYA629 DNA isolated from S. mutans transformed both restriction-deficient and restriction-proficient E. coli recipients. Therefore, the strains of S. mutans used lack a restriction-modification system for pYA629 DNA sequences. S. mutans strains that are readily transformable, display maximal cariogenicity in gnotobiotic rats, and give high scores for in vitro measures of important virulence attributes have been identified to facilitate studies on the genetic basis and control of virulence.
机译:通过使用来自菌株GS5(UAB525)的RIFR STRR SPCR分离物和嵌合质粒,PYA629的RIFR STRR SPCR分离物的染色体DNA来完成转化(即DNA酶敏感遗传转移)。梭子质粒pya629包含S.Ulans质粒pVA318,诱导型红霉素抗性决定簇最初从群体中分离出的链球菌菌株,四环抗性基因和大肠杆菌质粒PBR322的促进基因和S. mutans基因的启动子区天冬氨酸β-半醛脱氢酶。检测受体能力的菌株包括已知缺乏隐蔽质粒(GS5,UA130,UA159和MT8148)的菌株,并且已知含有广泛散发的5.8-千碱基隐蔽质粒(LM7,V318,UA101,UA174和3098791)的那些。 GS5对于GS5染色体抗生素抗性标记的转化频率与其他GS5的转化频率相当,但是在染色体和质粒标志物中转化了UA101,UA130,UA159和UA174的效率。在更大的应变调查中,含有5.8千碱基碱性质粒的菌株与染色体和pyA629DNA更常见,而不是缺乏这种隐蔽质粒的菌株。除LM7外,含有质粒的菌株在用PYA629转化时丢失了它们的驻留隐秘质粒。 LM7用PYA629被保留的PLM7转换。因此,S.ulans隐秘质粒中的至少有两种不相容性。 ypa629从大肠杆菌或s. mutans中分离的DNA转化为同等效率的调味瘤。从S. mutans分离的PyA629 DNA转化了限制性和限制性大肠杆菌受体。因此,S.Ulants的菌株使用缺乏用于PyA629 DNA序列的限制性修饰系统。 S. mutans菌株易于变化,在胎虫大鼠中显示出最大致癌性,并识别出重要的毒力属性的体外测量的高分性,以促进遗传基础和毒力的控制。

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