Laboratory of Plant Molecular Biology, The Rockefeller University, 1230 York Avenue, New York, NY 10021-6399, USA.
EMBO J. 1985 Dec 1;4(12):3063-8. doi: 10.1002/j.1460-2075.1985.tb04046.x.
A 2.4-kb pea genomic fragment, containing a member (rbcS-E9) of the multigene family encoding the small subunit (rbcS) of ribulose-1,5-bisphosphate carboxylase, was inserted into a non-oncogenic, Ti-plasmid vector and introduced into the genomes of Petunia hybrida (Mitchell) and Nicotiana tabacum (SR1) plants by in vitro transformation. Petunia and tobacco plants containing the introduced pea rbcS-E9 gene were regenerated from protoplasts. In these transgenic plants the rbcS-E9 gene is transcribed accurately using its own promoter and its expression is light-induced and organ-specific. A deletion mutant with 352 bp of 5'-upstream sequence still retains photoinducibility and leaf-specific expression. Clonal analysis of independent transgenic petunia plants revealed that chromosomal positions in the recipient plant genome affect the quantitative but not qualitative aspects of rbcS-E9 expression.
一个 2.4kb 的豌豆基因组片段,包含一个多基因家族的成员(rbcS-E9),该家族编码核酮糖-1,5-二磷酸羧化酶的小亚基(rbcS),被插入到一个非致癌的 Ti 质粒载体中,并通过体外转化引入到矮牵牛(Mitchell)和烟草(SR1)植物的基因组中。含有导入的豌豆 rbcS-E9 基因的矮牵牛和烟草植物从原生质体中再生。在这些转基因植物中,rbcS-E9 基因使用其自身的启动子准确转录,其表达受光诱导和器官特异性调控。一个带有 352bp 5'-上游序列的缺失突变体仍然保留光诱导性和叶特异性表达。对独立的转基因矮牵牛植物的克隆分析表明,受体植物基因组中的染色体位置影响 rbcS-E9 表达的定量方面,但不影响定性方面。