参考文献/References:
[1]ETHERTON T D, BAUMAN D E. Biology of somatotropin in growth and lactation of domestic animals[J].Physiological Reviews, 1998,73(3):745-761.
[2]王金玲,王摇永,刘鲁蜀,等. 草地藏系绵羊生长激素释放激素基因部分cDNA 的克隆及生物信息学分析[J]. 江苏农业学报,2015,31(3):595-599.
[3]BURNSIDE J, LIOU S S, COGBURN L A. Molecular cloning of the chicken growth hormone receptor complementary deoxyribonucleic acid: mutation of the gene in sex-linked dwarf chickens[J]. Endocrinology, 1991, 128(6):3183-3192.
[4]VASILATOSYOUNKEN R, ZHOU Y, WANG X, et al. Altered chicken thyroid hormone metabolism with chronic GH enhancement in vivo: consequences for skeletal muscle growth[J]. Journal of Endocrinology, 2000, 166(3):609-620.
[5]赵茹茜,李四桂,陈伟华,等. 胚胎及新生期蛋鸡和肉鸡垂体生长激素基因表达的比较研究[J]. 畜牧兽医学报,2001,32(1):5-10.
[6]颜炳学,邓学梅,费菁,等. 鸡生长激素基因单核苷酸多态与生长及屠体性状的相关性[J].科学研究,2003,48(12):1304-1307.
[7]苗田田.外源生长激素注射对尼罗罗非鱼骨骼肌生长及GH-IGFS生长轴基因表达的影响[D].上海:上海海洋大学,2013.
[8]单艳菊,束婧婷,徐文娟,等.不同鸭种胚胎期和出雏早期生长轴GH、GHR和IGF-I基因mRNA差异表达分析[J]. 农业生物技术学报,2013,21(4):421-427.
[9]吉文林,许盛海,徐琪. 6个中国地方鸭品种生长激素(GH)基因编码区多态性分析[J]. 畜牧与兽医,2008,40(12):45-47.
[10]许盛海,包文斌,程金花,等. 鸭生长激素(GH)基因编码区及调控区多态性分析[J].畜牧兽医学报,2007,38(9):907-912.
[11]董飚,段修军,孙国波,等.GH基因对黑羽番鸭体质量和屠宰性能的遗传效应分析[J].浙江农业学报,2015,27(1):22-27.
[12]王丽华,段修军,董飚,等.黑羽番鸭GH基因多态性与体质量、屠宰性能的相关性[J].江苏农业科学,2014,42(9):30-33.
[13]WU X, YAN M J, LIAN S Y, et al. GH gene polymorphisms and expression associated with egg laying in muscovy ducks (Cairina moschata)[J]. Hereditas, 2014,151(1):14-19.
[14]吴旭,严美姣,刘丽平,等.促性腺激素释放激素基因(GnRH)和生长激素基因(GH)对番鸭产蛋性能的遗传效应分析[J]. 农业生物技术学报,2012,20(3):289-295.
[15]MAZUROWSKI A, FRIESKE A, KOKOSZYNSKI D, et al. Examination of growth hormone (GH) gene polymorphism and its association with body weight and selected body dimensions in ducks[J]. Folia Biologica, 2015, 63(1):43-50.
[16]邹剑敏,李慧芳,张汤杰,等.GH基因多态与生长期高邮鸭主要血浆生化指标及部分生产性状的相关分析[J].江苏农业学报,2007,23(6):602-607.
[17]李慧芳,朱文奇,宋卫涛,等.催乳素(PRL)和生长激素(GH)基因对高邮鸭产蛋性能的遗传效应分析[J].农业生物技术学报,2009,17(2):263-268.
[18]杨军,罗家琴,唐登华,等.荆江麻鸭GH基因第4外显子SNP及其与屠体性状的关联研究[J].中国家禽,2011,33(14):32-35.
[19]FRANCO M M, ANTUNES R C, SILVA H D, et al. Association of PIT1, GH and GHRH polymorphisms with performance and carcass traits in Landrace pigs[J]. Journal of Applied Genetics, 2005, 46(2):195-200.
[20]WANG W, CHEN K, REN J, et al. Relationship of growth hormone (GH 2) genotypes with some production performances in pig[J]. Acta Genetica Sinica, 2002, 29(2):111-114.
[21]CHENG W T, LEE C H, HUNG C M, et al. Growth hormone gene polymorphisms and growth performance traits in Duroc, Landrace and Tao-Yuan pigs[J]. Theriogenology, 2000, 54(8):1225-1237.
[22]王婧,刘颖,董文华,等. 长白猪和大白猪生长激素基因多态性及其对部分经济性状的影响[J].中国畜牧杂志,2014,50(11):1-4.
[23]JIA J L, ZHANG L P, WU J P, et al. Study of the correlation between GH gene polymorphism and growth traits in sheep[J]. Genet Mol Res, 2014, 13(3):7190-7200.
[24]张恩宇,罗玉柱,李少斌,等.甘肃高山细毛羊及其杂种羊GH基因第3内含子多态性与生长性状的相关性[J]. 华北农学报,2015,30(5):71-76.
[25]DETTORI M L, PAZZOLA M, PIRA E, et al. The sheep growth hormone gene polymorphism and its effects on milk traits[J]. J Dairy Res, 2015, 82(2):169-176.
[26]虎永彪,张艳萍,杜岩岩,等.甘肃金樽生长激素基因多态性与生长性状的相关分析[J].淡水渔业, 2014,44(5):100-103.
[27]唐永凯,俞菊华,徐跑,等.吉富罗飞鱼GH基因的分离及其SNPs与增重的相关性[J]. 湖南农业大学学报(自然科学版),2012,38(4):422-425.
[28]裴勤娴.鸡GH基因和GHR基因多态性与早期生长性能的相关性研究[D].贵阳:贵州大学,2007.
[29]束婧婷,张莹,尹平安,等.清远麻鸡生长激素基因(GH)的SNPs检测及其对生长及繁殖性状的遗传效应[J].农业生物技术学报,2011,19(2):308-313.
[30]SU Y J, SHU J T, ZHANG M, et al. Association of chicken growth hormone polymorphisms with egg production[J]. Genet Mol Res, 2014, 13(3):4893-4903.
[31]欧阳建华,柳小春,施启顺,等.鸡GH基因内含子1 Msp I位点多态性及其与生长及繁殖性状的相关性[J].畜牧兽医学报,2006,37(2):122-127.
相似文献/References:
[1]陈博雯,郑圣晗,张莘,等.不同鸡种BF1基因SNP和Indel比对分析[J].江苏农业学报,2018,(05):1087.[doi:doi:10.3969/j.issn.1000-4440.2018.05.017]
CHEN Bo-wen,ZHENG Sheng-han,ZHANG Xin,et al.Comparative analysis of SNP and Indel of BF1 gene in different chicken breeds[J].,2018,(01):1087.[doi:doi:10.3969/j.issn.1000-4440.2018.05.017]
[2]刘欣,程瑞,徐兵划,等.基于KASP技术的SNP标记用于西瓜品种指纹图谱构建和种子纯度检测[J].江苏农业学报,2022,38(05):1348.[doi:doi:10.3969/j.issn.1000-4440.2022.05.022]
LIU Xin,CHENG Rui,XU Bing-hua,et al.Application of SNP markers based on KASP technology in fingerprint construction and seed purity detection of watermelon varieties[J].,2022,38(01):1348.[doi:doi:10.3969/j.issn.1000-4440.2022.05.022]