Ruiz I R, Brison O
Genética, Instituto Butantan, São Paulo, Brazil.
Chromosoma. 1989 Aug;98(2):86-92. doi: 10.1007/BF00291042.
Odontophyrynus americanus (Amphibia, Anura) genomic DNA from diploid and tetraploid specimens was treated with restriction enzymes sensitive to cytosine and adenine methylation (5 meC and 6 meA). In both diploids and tetraploids a high proportion of the total DNA was not cleaved by 5 meC-sensitive enzymes as observed on agarose gels stained with ethidium bromide. The DNAs were transferred to nitrocellulose filters and hybridized with cloned fragments containing sequences of Xenopus laevis 28S and 18S ribosomal DNA (rDNA). A high level of methylation of the ribosomal repeat units was revealed by 5 meC-sensitive enzymes in blood, liver, kidney and testis tissues. Adenine was methylated to a lesser degree and similarly in the rDNA from both germinative and somatic tissues. Comparison of the results obtained with DNA of diploids and tetraploids showed that methylation of ribosomal genes was increased in tetraploid genomes of adult frogs, but exact quantitative determinations could not be performed by this methodology. Cloning of the 28S region of the rDNA repeat unit was performed in the lambda gtWES lambda C vector. Restriction patterns obtained with methylation-sensitive enzymes using diploid and tetraploid derived clones confirmed the high level of methylation of the corresponding region of the ribosomal repeat unit in genomic DNAs. The implications of these results in the regulation of expression of the ribosomal genes in diploids and tetraploids are discussed.
对美洲齿蟾(两栖纲,无尾目)二倍体和四倍体标本的基因组DNA用对胞嘧啶和腺嘌呤甲基化(5-甲基胞嘧啶和6-甲基腺嘌呤)敏感的限制性内切酶进行处理。在二倍体和四倍体中,如用溴化乙锭染色的琼脂糖凝胶上所观察到的,大部分总DNA不能被对5-甲基胞嘧啶敏感的酶切割。将DNA转移到硝酸纤维素滤膜上,并用含有非洲爪蟾28S和18S核糖体DNA(rDNA)序列的克隆片段进行杂交。5-甲基胞嘧啶敏感的酶揭示了血液、肝脏、肾脏和睾丸组织中核糖体重复单元的高度甲基化。腺嘌呤甲基化程度较低,且在生殖组织和体细胞组织的rDNA中情况相似。对二倍体和四倍体DNA所得结果的比较表明,成年青蛙四倍体基因组中核糖体基因的甲基化增加,但用这种方法无法进行精确的定量测定。rDNA重复单元28S区域的克隆是在λgtWESλC载体中进行的。使用二倍体和四倍体来源的克隆,用对甲基化敏感的酶获得的限制性图谱证实了基因组DNA中核糖体重复单元相应区域的高度甲基化。讨论了这些结果对二倍体和四倍体中核糖体基因表达调控的意义。