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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Molecular Markers for Rapidly Identifying Candidate Genes in Chlamydomonas reinhardtii: ERY1 and ERY2 Encode Chloroplast Ribosomal Proteins
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Molecular Markers for Rapidly Identifying Candidate Genes in Chlamydomonas reinhardtii: ERY1 and ERY2 Encode Chloroplast Ribosomal Proteins

机译:用于快速鉴定衣原体Reinhardtii中候选基因的分子标记:Ery1和Ery2编码叶绿体核糖体蛋白

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摘要

To take advantage of available expressed sequence tags and genomic sequence, we have developed 64 PCR-based molecular markers in Chlamydomonas reinhardtii that map to the 17 linkage groups. These markers will allow the rapid association of a candidate gene sequence with previously identified mutations. As proof of principle, we have identified the genes encoded by the ERY1 and ERY2 loci. Mendelian mutations that confer resistance to erythromycin define three unlinked nuclear loci in C. reinhardtii . Candidate genes ribosomal protein L4 (RPL4) and L22 (RPL22) are tightly linked to the ERY1 locus and ERY2 locus, respectively. Genomic DNA for RPL4 from wild type and five mutant ery1 alleles was amplified and sequenced and three different point mutations were found. Two different glycine residues (G102 and G112) are replaced by aspartic acid and both are in the unstructured region of RPL4 that lines the peptide exit tunnel of the chloroplast ribosome. The other two alleles change a splice site acceptor site. Genomic DNA for RPL22 from wild type and three mutant ery2 alleles was amplified and sequenced and revealed three different point mutations. Two alleles have premature stop codons and one allele changes a splice site acceptor site.
机译:为了利用可用的表达的序列标签和基因组序列,我们在Chllamydomonas Reinhardtii中开发了64个基于PCR的分子标记,该曲线将其映射到17个连杆基团。这些标志物将允许具有先前鉴定的突变的候选基因序列的快速关联。作为原理的证据,我们已经确定了ERY1和ERY2基因座编码的基因。赋予红霉素抗性的孟德尔突变在C. Reinhardtii中定义了三个未链接的核基因座。候选基因核糖体蛋白L4(RPL4)和L22(RPL22)分别与Aery1基因座和酸甲基座紧密地连接。来自野生型的RPL4的基因组DNA和5个突变体IRY1等位基因进行扩增和测序,并发现三种不同的点突变。两种不同的甘氨酸残基(G102和G112)由天冬氨酸代替,两者都在RPL4的非结构化区域中,该区域叶绿体核糖体的肽出口隧道线。另外两个等位基因改变了拼接站点受体网站。来自野生型的RPL22的基因组DNA和三个突变体ERY2等位基因并揭示了三种不同的点突变。两位等位基因有过早的止损密码子,一个等位基因改变了拼接网站受体网站。

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