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用于植物转化的农杆菌双元载体的小型多功能pPZP载体家族。

The small, versatile pPZP family of Agrobacterium binary vectors for plant transformation.

作者信息

Hajdukiewicz P, Svab Z, Maliga P

机构信息

Waksman Institute, Rutgers, State University of New Jersey, Piscataway 08855.

出版信息

Plant Mol Biol. 1994 Sep;25(6):989-94. doi: 10.1007/BF00014672.

Abstract

The new pPZP Agrobacterium binary vectors are versatile, relatively small, stable and are fully sequenced. The vectors utilize the pTiT37 T-DNA border regions, the pBR322 bom site for mobilization from Escherichia coli to Agrobacterium, and the ColE1 and pVS1 plasmid origins for replication in E. coli and in Agrobacterium, respectively. Bacterial marker genes in the vectors confer resistance to chloramphenicol (pPZP100 series) or spectinomycin (pPZP200 series), allowing their use in Agrobacterium strains with different drug resistance markers. Plant marker genes in the binary vectors confer resistance to kanamycin or to gentamycin, and are adjacent to the left border (LB) of the transferred region. A lacZ alpha-peptide, with the pUC18 multiple cloning site (MCS), lies between the plant marker gene and the right border (RB). Since the RB is transferred first, drug resistance is obtained only if the passenger gene is present in the transgenic plants.

摘要

新型pPZP农杆菌双元载体用途广泛、相对较小、稳定性好且已完成全序列测定。这些载体利用pTiT37 T-DNA边界区域、用于从大肠杆菌转移至农杆菌的pBR322 bom位点以及分别用于在大肠杆菌和农杆菌中复制的ColE1和pVS1质粒复制起点。载体中的细菌标记基因赋予对氯霉素(pPZP100系列)或壮观霉素(pPZP200系列)的抗性,使其可用于具有不同耐药标记的农杆菌菌株。双元载体中的植物标记基因赋予对卡那霉素或庆大霉素的抗性,且与转移区域的左边界(LB)相邻。一个带有pUC18多克隆位点(MCS)的lacZα-肽位于植物标记基因和右边界(RB)之间。由于RB首先被转移,只有当目的基因存在于转基因植物中时才能获得耐药性。

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