Coleman C E, Kao T
Department of Molecular and Cell Biology, Pennsylvania State University, University Park 16802.
Plant Mol Biol. 1992 Feb;18(4):725-37. doi: 10.1007/BF00020014.
Genomic clones representing S1 and S3 alleles of the self-incompatibility locus (S locus) in Petunia inflata have been isolated and characterized. Extensive lengths of the flanking regions as well as the coding regions contained in both clones have been sequenced. Both alleles have a single, relatively short intron located within a region of high interallelic variability. Transcription start sites of both alleles have been determined by S1 nuclease mapping, and putative TATA boxes have been identified. Nucleotide sequence comparison of the two alleles shows a high level of diversity in the regions immediately flanking the coding region. Southern analysis demonstrates that this sequence diversity extends beyond the regions which have been sequenced, such that the two clones appear to be completely heterogeneous except for conserved sites within the coding regions of the two alleles. These analyses also reveal the presence of repetitive sequences which are very closely associated with the coding regions of both alleles. The influence of these characteristics on genetic recombination and the maintenance of allelic independence, as well as the organization of the S locus, are discussed.
已经分离并鉴定了代表矮牵牛自交不亲和位点(S位点)S1和S3等位基因的基因组克隆。两个克隆中包含的侧翼区域以及编码区域的大片段已被测序。两个等位基因都有一个相对较短的单一内含子,位于等位基因间高变异性区域内。通过S1核酸酶图谱确定了两个等位基因的转录起始位点,并鉴定了推定的TATA框。两个等位基因的核苷酸序列比较表明,在编码区域紧邻的区域存在高度多样性。Southern分析表明,这种序列多样性延伸到已测序的区域之外,因此除了两个等位基因编码区域内的保守位点外,两个克隆似乎完全不同。这些分析还揭示了与两个等位基因编码区域密切相关的重复序列的存在。讨论了这些特征对遗传重组和等位基因独立性维持的影响,以及S位点的组织。