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衣藻叶绿体转化研究:外源DNA可稳定存在于染色体中。

Studies on Chlamydomonas chloroplast transformation: foreign DNA can be stably maintained in the chromosome.

作者信息

Blowers A D, Bogorad L, Shark K B, Sanford J C

机构信息

Biological Laboratories, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Plant Cell. 1989 Jan;1(1):123-32. doi: 10.1105/tpc.1.1.123.

Abstract

As shown originally by Boynton and co-workers (Boynton, J.E., Gillham, N.W., Harris, E.H., Hosler, J.P., Johnson, A.M., Jones, A.R., Randolph-Anderson, B.L., Robertson, D., Klein, T.M., Shark, K.B., and Sanford, J.C. [1988]. Science 240, 1534-1538), a nonphotosynthetic, acetate-requiring mutant strain of Chlamydomonas reinhardtii with a 2.5-kilobase pair deletion in the chloroplast Bam 10 restriction fragment region that removes the 3' half of the atpB gene and a portion of one inverted repeat can be transformed to photosynthetic competency following bombardment with microprojectiles coated with wild-type Bam 10 DNA. We have found that assorted other circular plasmids, single-strand DNA circles, or linear, duplex DNA molecules containing the wild-type atpB gene can also complement the same mutant. DNA gel blot hybridization analysis of all such transformants indicates that the complementing DNA has integrated into the chromosome at the atpB locus and suggests that a copy-correction mechanism operating between the inverted repeats maintains sequence identity in this region. Sequences from the intact inverted repeat may be recruited to restore the incomplete copy when exogenous DNA with only a portion of the deleted sequence is introduced. Furthermore, a foreign, unselected-for, chimeric gene flanked by chloroplast DNA sequences can be integrated and maintained stably in the chloroplast chromosome. The bacterial neomycin phosphotransferase structural gene fused to the maize chloroplast promoter for the large subunit gene of ribulose-1,5-biphosphate carboxylase (rbcL) has been integrated into the inverted repeat region of the Bam10 restriction fragment. RNA transcripts that hybridize to the introduced foreign gene have been identified.

摘要

正如博因顿及其同事最初所展示的那样(博因顿,J.E.,吉尔哈姆,N.W.,哈里斯,E.H.,霍斯勒,J.P.,约翰逊,A.M.,琼斯,A.R.,伦道夫 - 安德森,B.L.,罗伯逊,D.,克莱因,T.M.,沙克,K.B.,以及桑福德,J.C. [1988]。《科学》240,1534 - 1538),莱茵衣藻的一种非光合、需要乙酸盐的突变菌株,其叶绿体Bam 10限制片段区域有一个2.5千碱基对的缺失,该缺失去除了atpB基因的3' 端一半和一个反向重复序列的一部分,在用涂有野生型Bam 10 DNA的微粒轰击后可转化为光合能力。我们发现,其他各种环状质粒、单链DNA环或含有野生型atpB基因的线性双链DNA分子也能互补同一突变体。对所有这些转化体的DNA凝胶印迹杂交分析表明,互补DNA已整合到atpB基因座的染色体中,并表明在反向重复序列之间起作用的拷贝校正机制维持了该区域的序列同一性。当引入仅具有部分缺失序列的外源DNA时,完整反向重复序列的序列可能被招募来恢复不完整的拷贝。此外,一个两侧带有叶绿体DNA序列的外源、未被选择的嵌合基因可以整合并稳定地维持在叶绿体染色体中。与玉米叶绿体核酮糖 - 1,5 - 二磷酸羧化酶(rbcL)大亚基基因启动子融合的细菌新霉素磷酸转移酶结构基因已整合到Bam10限制片段的反向重复区域。已鉴定出与引入的外源基因杂交的RNA转录本。

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