Mo Sai-Jun, Song Ping, Luo Da-Ji, Peng Mao-Yu, Zhang Liang, Yao Hai-Lan, Zhou Wei, Zhang Jing-Nan, Pan Yun-Feng, Zheng Shu-Ming
Key Laboratory of the Ministry of Education for Developmental Biology, College of Life Science, Wuhan University, Wuhan 430072, China.
Yi Chuan Xue Bao. 2004 Jun;31(6):582-90.
High length and nucleotide polymorphisms in intron2 of GH I gene were detected in 162 individuals,which were from seven wild crucian carp colonies, two goldfish colonies and one Fangzheng crucian carp colony. Using denaturating polyareylamide gel electrophoresis (DPAGE) and single-strand conformation polymorphism (SSCP), seven length variants and 15 haplotypes were identified in these fishes. The length types and haplotypes diversity was 4.32% and 9.26%, respectively. Sequence analysis of the 15 haplotypes indicated the following results: (1) The size of intron2 varied from 243 to 263 bp. In the 15 haplotypes,the average percentages of the four bases (A,T,G and C) were 34.13%, 37.36%, 15.13% and 13.38%, respectively; the frequency of G + C(28.51%) was much lower than that of A + T (71.49%). The GT/AG domain was found in exon-intron junctions,which was the 5' and 3' splice donor and acceptor sites in higher eukaryotic gene introns. The similarity sequence of GTAAGTA was located on the junction between exon2 and intron2. And there existed a richer pyrimidine region (TTTGCCTTTTGTTATC) near the 3' end of intron2. (2) The seven length variants (A, B, C, D, E, F and G) were determined to be 189, 196, 204, 205, 206, 207 and 209 bp, respectively. The polymorphism resulted from the variable repeat number of T (N = 0, 8, 9, 10, 11 and 13) and the difference in one or two motifs deletions of TGAAAAC, TT and GAGTG. (3) Compared the sequences of the 15 haplotypes, 17 substitution sites were observed, of which two were of transversion sites and 15 were of transition sites. Obviously, the transition mutations (88.24%) were more frequent than transversion mutations (11.76%). Analysis of the distributions of the length types, haplotypes and composite genotypes suggested that genetic diversity was varied in different colonies. In the goldfish colonies, only one length type (A), two haplotypes (A1 and A2) and one composite genotype (A1A2) were observed. Two length types (C and D), four haplotypes (C1, C2, D2 and D5) and one composite genotype (C1C2D2D5) presented in the Fangzheng crucian carp colonies. The highest level of genetic diversity was exhibited in the seven wild crucian carp colonies: seven length types (A, B, C, D, E, F and G), 14 haplotypes (A1, A2, A3, B, C1, C2, D1, D2, D3, D4, E1, E2, F and G) and 14 composite genotypes (A1A2A3, A1A2A3B, A1C1C2D1D2D3, A1C1C2D2, A1C1C2D2D3, A1C1C2D3E2, BC1C2D2, BC1C2D3D4, C1C2D2, C1C2D2D3, C1C2D3D4, C1C2D3D4F, C1C2D4, D2E1G) were shared by the seven wild colonies. The numbers of observed length types, haplotypes and genotypes within the wild colonies ranged from 3 to 6, 6 to 10 and 2 to 6, respectively. Whether the length and nucleotide polymorphisms in the intron2 of crucian carp GH I gene were associated with gene expression and gene regulation remained unsolved and required further investigations.
在来自7个野生鲫鱼群体、2个金鱼群体和1个方正鲫群体的162个个体中,检测到生长激素I(GH I)基因内含子2存在高度的长度和核苷酸多态性。利用变性聚丙烯酰胺凝胶电泳(DPAGE)和单链构象多态性(SSCP)技术,在这些鱼类中鉴定出7种长度变异体和15种单倍型。长度类型和单倍型多样性分别为4.32%和9.26%。对15种单倍型的序列分析结果如下:(1)内含子2的大小在243至263 bp之间变化。在15种单倍型中,四种碱基(A、T、G和C)的平均百分比分别为34.13%、37.36%、15.13%和13.38%;G + C(28.51%)的频率远低于A + T(71.49%)。在exon - intron连接处发现了GT/AG结构域,这是高等真核生物基因内含子中的5'和3'剪接供体和受体位点。GTAAGTA的相似序列位于exon2和内含子2之间的连接处。并且在内含子2的3'端附近存在一个更丰富的嘧啶区域(TTTGCCTTTTGTTATC)。(2)7种长度变异体(A、B、C、D、E、F和G)分别被确定为189、196、204、205、206、207和209 bp。这种多态性是由T的可变重复次数(N = 0、8、9、10、11和13)以及TGAAAAC、TT和GAGTG一个或两个基序缺失的差异导致的。(3)比较15种单倍型的序列,观察到17个替换位点,其中2个是颠换位点,15个是转换位点。显然,转换突变(88.24%)比颠换突变(11.76%)更频繁。对长度类型、单倍型和复合基因型分布的分析表明,不同群体的遗传多样性存在差异。在金鱼群体中,仅观察到一种长度类型(A)、两种单倍型(A1和A2)和一种复合基因型(A1A2)。方正鲫群体中呈现两种长度类型(C和D)、四种单倍型(C1、C2、D2和D5)和一种复合基因型(C1C2D2D5)。7个野生鲫鱼群体表现出最高水平的遗传多样性:7种长度类型(A、B、C、D、E、F和G)、14种单倍型(A1、A2、A3、B、C1、C2、D1、D2、Dt、D4、E1、E2、F和G)以及14种复合基因型(A1A2A3、A1A2A3B、A1C1C2D1D2D3、A1C1C2D2、A1C1C2D2D3、A1C1C2D3E2、BC1C2D2、BC1C2D3D4、C1C2D2、C1C2D2D3、C1C2D3D4、C1C2D3D4F、C1C2D4、D2E1G)被7个野生群体共享。野生群体中观察到的长度类型、单倍型和基因型数量分别在3至6、6至10和2至6之间。鲫鱼GH I基因内含子2中的长度和核苷酸多态性是否与基因表达和基因调控相关仍未解决,需要进一步研究。