Ware V C, Tague B W, Clark C G, Gourse R L, Brand R C, Gerbi S A
Nucleic Acids Res. 1983 Nov 25;11(22):7795-817. doi: 10.1093/nar/11.22.7795.
We have determined the complete nucleotide sequence of Xenopus laevis 28S rDNA (4110 bp). In order to locate evolutionarily conserved regions within rDNA, we compared the Xenopus 28S sequence to homologous rDNA sequences from yeast, Physarum, and E. coli. Numerous regions of sequence homology are dispersed throughout the entire length of rDNA from all four organisms. These conserved regions have a higher A + T base composition than the remainder of the rDNA. The Xenopus 28S rDNA has nine major areas of sequence inserted when compared to E. coli 23S rDNA. The total base composition of these inserts in Xenopus is 83% G + C, and is generally responsible for the high (66%) G + C content of Xenopus 28S rDNA as a whole. Although the length of the inserted sequences varies, the inserts are found in the same relative positions in yeast 26S, Physarum 26S, and Xenopus 28S rDNAs. In one insert there are 25 bases completely conserved between the various eukaryotes, suggesting that this area is important for eukaryotic ribosomes. The other inserts differ in sequence between species and may or may not play a functional role.
我们已经确定了非洲爪蟾28S rDNA的完整核苷酸序列(4110 bp)。为了定位rDNA内进化上保守的区域,我们将非洲爪蟾的28S序列与来自酵母、黏菌和大肠杆菌的同源rDNA序列进行了比较。在所有这四种生物的rDNA全长中分散着许多序列同源区域。这些保守区域的A + T碱基组成比rDNA的其余部分更高。与大肠杆菌23S rDNA相比,非洲爪蟾28S rDNA有九个主要的序列插入区域。非洲爪蟾中这些插入片段的总碱基组成是83% G + C,总体上是造成非洲爪蟾28S rDNA整体高(66%)G + C含量的原因。尽管插入序列的长度各不相同,但在酵母26S、黏菌26S和非洲爪蟾28S rDNA中,插入片段位于相同的相对位置。在一个插入片段中,各种真核生物之间有25个碱基完全保守,这表明该区域对真核生物核糖体很重要。其他插入片段在物种间序列不同,可能发挥功能作用,也可能不发挥。