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一个赋予莱茵衣藻壮观霉素抗性的真细菌基因:整合到核基因组及基因表达

A eubacterial gene conferring spectinomycin resistance on Chlamydomonas reinhardtii: integration into the nuclear genome and gene expression.

作者信息

Cerutti H, Johnson A M, Gillham N W, Boynton J E

机构信息

Department of Botany, Duke University, Durham, North Carolina 27708, USA.

出版信息

Genetics. 1997 Jan;145(1):97-110. doi: 10.1093/genetics/145.1.97.

Abstract

We have constructed a dominant selectable marker for nuclear transformation of C. reinhardtii, composed of the coding sequence of the eubacterial aadA gene (conferring spectinomycin resistance) fused to the 5' and 3' untranslated regions of the endogenous RbcS2 gene. Spectinomycin-resistant transformants isolated by direct selection (1) contain the chimeric gene(s) stably integrated into the nuclear genome, (2) show cosegregation of the resistance phenotype with the introduced DNA, and (3) synthesize the expected mRNA and protein. Small linearized plasmids appeared to be inserted into the nuclear genome preferentially through their ends, with relatively few large deletions and/or rearrangements. Multiple copy transformants often integrated concatemers of transforming DNA. Our detailed analysis of the complex integration patterns of plasmid DNA in C. reinhardtii nuclear transformants should be useful for improving the technique of insertional mutagenesis. We also found that the spectinomycin-resistance phenotype was unstable in about half of the transformants. When maintained under nonselective conditions, neither the aadA mRNA nor the AadA protein were detected in these subclones. Moreover, since the integrated transforming DNA was not altered or lost expression of the RbcS2::aadA::RbcS2 gene(s) appears to be repressed. Measurements of transcriptional activity, mRNA accumulation, and mRNA stability suggest that expression of this chimeric gene(s) may also be affected by rapid RNA degradation, presumably due to defects in mRNA processing and, or nuclear export. Thus, both gene silencing and transcript instability, rather than biased codon usage, may explain the difficulties encountered in the expression of foreign genes in the nuclear genome of Chlamydomonas.

摘要

我们构建了一种用于莱茵衣藻核转化的显性选择标记,它由真细菌aadA基因的编码序列(赋予壮观霉素抗性)与内源性RbcS2基因的5'和3'非翻译区融合而成。通过直接选择分离得到的壮观霉素抗性转化体:(1)含有稳定整合到核基因组中的嵌合基因;(2)抗性表型与导入的DNA共分离;(3)合成预期的mRNA和蛋白质。小的线性化质粒似乎优先通过其末端插入核基因组,只有相对较少的大的缺失和/或重排。多拷贝转化体常常整合转化DNA的串联体。我们对莱茵衣藻核转化体中质粒DNA复杂整合模式的详细分析,对于改进插入诱变技术应该是有用的。我们还发现,壮观霉素抗性表型在大约一半的转化体中不稳定。在非选择条件下培养时,在这些亚克隆中既检测不到aadA mRNA,也检测不到AadA蛋白。此外,由于整合的转化DNA没有改变或丢失,RbcS2::aadA::RbcS2基因的表达似乎受到了抑制。转录活性、mRNA积累和mRNA稳定性的测量表明,这种嵌合基因的表达也可能受到快速RNA降解的影响,推测这是由于mRNA加工和/或核输出存在缺陷所致。因此,基因沉默和转录本不稳定性,而不是密码子使用偏好,可能解释了在衣藻核基因组中表达外源基因时遇到的困难。

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