Screening of microsatellite markers associated with cold tolerance of large yellow croaker (Pseudosciaena crocea R.)
Received date: 2009-07-09
Revised date: 2009-10-27
Online published: 2010-03-15
Cold tolerance is one of the major economic characters in fish. In order to discuss the cold tolerance of large yellow croaker (Pseudosciaena crocea R.), fifteen fluorescent dye-labeled microsatellite markers were applied to detect genetic differences between F1 offsprings of cold tolerance group and normal group of large yellow croaker by SSR-PCR. Each group contained 20 randomly and separately sampled individuals. As a result, marker LYC0002 five alleles (LYC0002104 bp, LYC0002106 bp, LYC0002108 bp, LYC0002110 bp, and LYC0002112 bp) were amplified with marker LYC0002 in both groups and 60% (12/20) of individuals had allele LYC0002112 bp in cold tolerance group exclusively, which indicated that this allele is probably sensitive to temperature and associated with gene for cold tolerance. In addition, four alleles (LYC0002106 bp, LYC0002108 bp, LYC0002110 bp, and LYC0002112 bp) were sequenced individually. Sequence alignments showed that LYC0002112 bp allele contains 10 (CA) repeats, the remaining three alleles lacked one (CA) one by one, corresponding to the stepwise mutation model (SMM) of microsatellite.
GAO Guo-Jiang, CHANG Yu-Mei, HAN Qi-Xia, CHE Bing-Jie, LI Meng-Yun, XUE Liang-Xi, LIANG Li-Qun . Screening of microsatellite markers associated with cold tolerance of large yellow croaker (Pseudosciaena crocea R.)[J]. Hereditas(Beijing), 2010 , 32(3) : 248 -253 . DOI: 10.3724/SP.J.1005.2010.00248
[1] 朱元鼎, 伍汉霖. 石首鱼科. 见: 朱元鼎主编. 福建鱼类志(下卷). 福州: 福建科技出版社, 1985, 101–136.
[2] 张祖兴, 李明云. 大黄鱼种质资源研究进展. 水产科学, 2006, 25(7): 376–378.
[3] 张彩兰, 刘家富, 李雅璀, 陈植. 福建省大黄鱼养殖现状分析与对策. 上海水产大学学报, 2002, 11(1): 79–83.
[4] 徐镇, 江锦坡, 陈寅儿. 不同品系大黄鱼致死低温的研究. 宁波大学学报, 2006, 19(4): 462–464.
[5] 邱芳, 伏健民, 金德敏, 王斌. 遗传多样性的分子检测. 生物多样性, 1998, 6(2): 143–150.
[6] Tautz D. Hypervariability of simple sequence as a general source for polymorphic DNA markers. Nucleic Acid Res, 1989, 17(16): 6463–6471.
[7] 杜长斌, 孙效文, 楼允东, 沈俊宝, 滕春波. 微卫星在水产动物种质资源研究方面的应用. 水产学杂志, 2000, 13(1): 68–73.
[8] Chang YM, Ding L,Wang WW, He JG, Liang LQ, Lei QQ. Isolation and characterization of 11 microsatellite markers for the large yellow croaker, Pseudosciaena crocea. Con-serv Genet, 2008a, DOI 10. 1007/s10592-008-9708-9.
[9] Guo W, Wang ZY, Wang YL, Zhang ZP, Gui JF. Isolation and characterization of six microsatellite markers in the large yellow croaker (Pseucosciaena crocea Richardson). Mol Ecol Notes, 2005, 5(2): 369–371.
[10] 许绍斌, 陶玉芬, 杨昭庆, 褚嘉祐. 简单快速的DNA银染和胶保存方法. 遗传, 2002, 24(3): 335–336.
[11] Sambrook J, Russell DW. 分子克隆实验指南. 第三版. 北京: 科学出版社, 2001, 426–429.
[12] 常玉梅, 孙效文, 梁利群. 鲤鱼耐寒性研究. 上海水产大学学报, 2003, 12(2): 102–105.
[13] 冯祖强, 王祖熊. 鲮鱼冷休克及其死亡的某些生化因素. 水生生物学集刊, 1984,8(3): 290–297.
[14] 吴力钊, 王祖熊. 鲮鱼和二代混精鲮鱼低温耐受能力的差异. 水生生物学报, 1993,17(3): 206–210.
[15] 沈俊宝, 刘明华. 荷包红鲤抗寒品系的筛选和培育. 淡水渔业, 1988, (3): 14–17.
[16] 梁利群, 高俊生, 李绍戊, 孙效文, 雷清泉. 与鲤鱼抗寒性状相关的RAPD分子标记的筛选及其克隆. 中国水产科学, 2006, 13(3): 360–364.
[17] 梁利群, 孙效文. 鲤耐寒性状分子标记在遗传连锁图上的定位. 大连水产学院学报, 2003, 18(4): 278–281.
[18] 潘贤, 梁利群, 雷清泉. 筛选与鲤鱼抗寒性状相关的微卫星标记. 哈尔滨工业大学学报, 2008, 40(6): 915–918.
[19] 冀德伟, 李明云, 王天柱, 张呈念, 徐镇, 许万土. 不同低温胁迫时间对大黄鱼血清生化指标的影响. 水产科学, 2009, 28(1): 1–4.
[20] 鲁翠云, 曹顶臣, 孙效文, 梁利群. 微卫星分子标记辅助镜鲤家系构建. 中国水产科学, 2008, 15(5): 893–901.
[21] 何风华, 席章营, 曾瑞珍, Akshay Talukdar, 张桂权. 利用高代回交和分子标记辅助选择建立水稻单片段代换系. 遗传学报, 2005, 32(8): 825–831.
[22] 郭旺珍, 张天真, 丁业掌, 朱一超, 沈新莲, 朱协飞. 分子标记辅助聚合两个棉纤维高强主效QTLs的选择效果. 遗传学报, 2005, 32(12): 1275–l285.
[23] Zhang JH, Xiong YZ, Zuo B, Lei MG, Jiang SW, Li FE, Zheng R, Li JL, Xu DQ. Detection of quantitative trait loci associated with several internal organ traits and teatnumber trait in a pig population. Gen Genome, 2007, 34(4): 307–314.
[24] 张英杰, 赵有璋, 刘月琴, 李玉, 孙少华, 孙洪新. 3个山羊群体中4个微卫星DNA多态性及其与杂种优势的关系. 遗传, 2004, 26(5): 631–636.
[25] 卢钟磊, 池信才, 王义权, 沈月毛, 郑忠辉, 宋思扬. 褐牙鲆耐热性状相关的微卫星分子标记筛选. 厦门大学学报, 2007, 46(3): 396–402.
[26] Weber JL, Wong C. Mutation of human short tandem re-peats. Hum Mol Genet, 1993, 2(8): 1123–1128.
[27] Schlotterer C, Tautz D. Slippage synthesis of simple se-quence DNA. Nucleic Acids Res, 1992, 20(2): 211–255.
[28] Steinberg EK, Lindner KR, Galea J, Maxwell A, Meng J, Alendof FW. Rates and pattern s of microsatellite mutations in pink salmon. Mol Biol Evol, 2002, 19(7): 1198–1202.
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