灰链霉菌
HpaII公司
转化(遗传学)
生物
转化效率
甲基转移酶
穿梭机载体
原生质体
甲基化
DNA
大肠杆菌
链霉菌
质粒
等裂体
限制性酶
遗传学
DNA甲基化
微生物学
基因
重组DNA
细菌
农杆菌
基因表达
载体(分子生物学)
出处
期刊:Fems Microbiology Letters
[Oxford University Press]
日期:2002-04-09
卷期号:209 (2): 243-248
被引量:3
标识
DOI:10.1016/s0378-1097(02)00512-8
摘要
Streptomyces griseus does not readily take up foreign DNA isolated from other Streptomyces species or Escherichia coli, presumably due to its unique restriction-modification systems that function as a barrier for interspecific DNA transfer. To efficiently transform S. griseus by avoiding the restriction barriers, we methylated incoming DNA in vivo and in vitro and treated protoplasts with heat prior to transformation. Whereas heat treatment of protoplasts or methylation of the E. coli-Streptomyces shuttle vectors (pXE4 and pKK1443) did not prominently improve the transformation efficiency, HpaII methylation of the vectors from any E. coli strains tested in this study highly increased the transformation efficiency. The highest transformation efficiency was observed when the shuttle vectors were isolated from the dam, hsd strain of E. coli (GM161) and methylated by AluI and HpaII methyltransferases, and the efficiency was approximately the same as that of the vectors from S. griseus. We identified several restriction-modification systems that decrease the transformation efficiency. This research also led us to understand methylation profiles and restriction-modification systems in S. griseus.
科研通智能强力驱动
Strongly Powered by AbleSci AI