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通过S位点糖蛋白(SLG)基因和S位点受体激酶(SRK)基因的PCR-RFLP技术鉴定和分类萝卜中的S单倍型

Identification and classification of S haplotypes in Raphanus sativus by PCR-RFLP of the S locus glycoprotein (SLG) gene and the S locus receptor kinase (SRK) gene.

作者信息

Lim S.-H., Cho J., Lee J., Cho Y.-H., Kim B.-D.

机构信息

School of Plant Sciences, College of Agriculture and Life Sciences, and Center for Plant Molecular Genetics and Breeding Research, Seoul National University, 103 Seodoon-dong, Suwon 441-744, Korea.

出版信息

Theor Appl Genet. 2002 Jun;104(8):1253-1262. doi: 10.1007/s00122-001-0828-6. Epub 2002 Apr 23.

Abstract

Polymorphism of the S-locus glycoprotein (SLG) and S-locus receptor kinase (SRK) genes in Raphanus sativus was analyzed by PCR-RFLP using SLG- and SRK-specific primers. Twenty four inbred lines of R. sativus could be grouped into nine S haplotypes. DNA fragments of SLG alleles specifically amplified from five S haplotypes by PCR with Class-I SLG-specific primers showed different profiles upon polyacrylamide-gel electrophoresis after digestion with restriction endonucleases. The five R. sativus SLG alleles were determined for their nucleotide sequences of DNA fragments. Comparison of the amino-acid sequences with a reported Brassica SLG (S(6)) showed 77-84% homology. Deduced amino-acid sequences showed 12-conserved cystein residues and three hypervariable regions which are characteristic of Brassicsa SLG. A DNA fragment was also amplified by PCR from two of each S haplotype with Class-II SLG-specific primers, and showed polymorphism when cleaved with restriction endonucleases. The nucleotide sequences of amplified DNA fragments of the Class-II SLG revealed about 60% similarity with those of the Class-I SLG. It is concluded that there exist both Class I and Class II S alleles in R. sativus, as in Brassica campestris and Brassica oleracea. PCR using SRK-specific primers amplified a DNA fragment of about 1.0 kb from seven of each S haplotype out of 24 tested. These DNA fragments showed high polymorphism in polyacrylamide-gel electrophoresis after digestion with restriction endonucleases. Nucleotide sequences of the DNA fragments amplified from the seven S haplotypes showed that the fourth and the fifth exons of SRK are highly conserved, and that there is high variation in the fifth intron, the sixth intron and seventh exon of the SRK which may be responsible for the polymorphic band patterns in PCR-RFLP analysis. The PCR-RFLP method has proven useful for the identification of S alleles in inbred lines and for listing S haplotypes in R. sativus. Phylogenic analysis of the SLG and SRK sequences from Raphanus and Brassica revealed that the Raphanus SLGs and SRKs did not form an independent cluster, but were dispersed in the tree, clustering together with Brassica SLGs and SRKs. Furthermore, SLGs and SRKs from Raphanus were both grouped into Class-I or Class-II S haplotypes. Therefore, these results suggest that the diversification of the SLG and SRK alleles occurred prior to the differentiation of the two genera Brassica and Raphanus.

摘要

利用SLG和SRK特异性引物,通过PCR-RFLP分析了萝卜中S-位点糖蛋白(SLG)基因和S-位点受体激酶(SRK)基因的多态性。24个萝卜自交系可分为9种S单倍型。用I类SLG特异性引物通过PCR从5种S单倍型中特异性扩增出的SLG等位基因的DNA片段,在用限制性内切酶消化后,经聚丙烯酰胺凝胶电泳显示出不同的图谱。测定了5个萝卜SLG等位基因DNA片段的核苷酸序列。将其氨基酸序列与已报道的芸苔属SLG(S(6))进行比较,同源性为77%-84%。推导的氨基酸序列显示有12个保守的半胱氨酸残基和3个高变区,这是芸苔属SLG的特征。还用II类SLG特异性引物从每种S单倍型中的两个中通过PCR扩增出一个DNA片段,在用限制性内切酶切割时显示出多态性。II类SLG扩增的DNA片段的核苷酸序列与I类SLG的核苷酸序列相似性约为60%。得出结论,与油菜和甘蓝一样,萝卜中同时存在I类和II类S等位基因。用SRK特异性引物进行PCR,从24个测试的自交系中每种S单倍型的7个中扩增出一个约1.0 kb的DNA片段。这些DNA片段在用限制性内切酶消化后,经聚丙烯酰胺凝胶电泳显示出高度多态性。从7种S单倍型扩增出的DNA片段的核苷酸序列表明,SRK的第4和第5外显子高度保守,而SRK的第5内含子、第6内含子和第7外显子存在高度变异,这可能是PCR-RFLP分析中多态性条带模式的原因。PCR-RFLP方法已被证明可用于鉴定自交系中的S等位基因和列出萝卜中的S单倍型。对萝卜和芸苔属的SLG和SRK序列进行系统发育分析表明,萝卜的SLG和SRK没有形成一个独立的聚类,而是分散在树中,与芸苔属的SLG和SRK聚类在一起。此外,萝卜的SLG和SRK都被归入I类或II类S单倍型。因此,这些结果表明,SLG和SRK等位基因的多样化发生在芸苔属和萝卜属两个属分化之前。

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