[1]Matsuda M,Nagahama Y,Shinomiya A,et al. DMY is a Y-specific DM-domain gene required for male development in the medaka fish[J]. Nature,2002,417(6888):559-563.
[2]Shinomiya A,Otake H,Togashi K,et al. Field survey of sex-reversals in the medaka,Oryzias latipes:genotypic sexing of wild populations[J]. Zoological Science,2004,21(6):613-619.
[3]Conley A J,Corbin C J,Hughes A L. Adaptive evolution of mammalian aromatases:lessons from Suiformes[J]. Journal of Experimental Zoology Part A-Ecological Genetics and Physiology,2009,311(5):346-357.
[4]Sudhakumari C C,Senthilkumaran B,Kobayashi T,et al. Ontogenic expression patterns of several nuclear receptors and cytochrome P450 aromatases in brain and gonads of the Nile tilapia Oreochromis niloticus suggests their involvement in sex differentiation[J]. Fish Physiology and Biochemistry,2005,31(2/3):129-135.
[5]唐永凯,李建林,陈文华,等. 奥利亚罗非鱼卵巢芳香化酶基因的克隆及其表达[J]. 中国水产科学,2008,15(5):729-737.
[6]Zhou L Y,Wang D S,Shibata Y,et al. Characterization,expression and transcriptional regulation of P450c17-I and-II in the medaka,Oryzias latipes[J]. Biochemical and Biophysical Research Communications,2007,362(3):619-625.
[7]Blazquez M,Gonzalez A,Papadaki M,et al. Sex-related changes in estrogen receptors and aromatase gene expression and enzymatic activity during early development and sex differentiation in the European sea bass(Dicentrarchus labrax)[J]. General and Comparative Endocrinology,2008,158(1):95-101.
[8]Yokoi H,Kobayashi T,Tanaka M,et al. Sox9 in a teleost fish,medaka(Oryzias latipes):evidence for diversified function of Sox9 in gonad differentiation[J]. Molecular Reproduction and Development,2002,63(1):5-16.
[9]Galay-Burgos M,Llewellyn L,Mylonas C C,et al. Analysis of the Sox gene family in the European sea bass(Dicentrarchus labrax)[J]. Comparative Biochemistry and Physiology Part B:Biochemistry & Molecular Biology,2004,137(2):279-284.
[10]Hett A K,Pitra C,Jenneckens I,et al. Characterization of Sox9 in European Atlantic sturgeon(Acipenser sturio)[J]. Journal of Heredity,2005,96(2):150-154.
[11]唐永凯,王光花,吴婷婷.奥利亚罗非鱼DMRT1,DMO基因片段的克隆及序列分析[J]. 生物技术,2006,16(2):1-3.
[12]Guo Y,Cheng H,Huang X,et al. Gene structure,multiple alternative splicing,and expression in gonads of zebrafish Dmrt1[J]. Biochemical and Biophysical Research Communications,2005,330(3):950-957.
[13]DCotta H,Fostier A,Guiguen Y,et al. Aromatase plays a key role during normal and temperature-induced sex differentiation of tilapia Oreochromis niloticus[J]. Molecular Reproduction and Development,2001,59(3):265-276.
[14]Desprez D,Melard C. Effect of ambient water temperature on sex determination in the blue tilapia Oreochromis aureus[J]. Aquaculture,1998,162(1/2):79-84.
[15]Uchida D,Yamashita M,Kitano T,et al. An aromatase inhibitor or high water temperature induce oocyte apoptosis and depletion of p450 aromatase activity in the gonads of genetic female zebrafish during sex-reversal[J]. Comparative Biochemistry and Physiology Part A:Molecular & Integrative Physiology,2004,137(1):11-20.
[16]Blaquez M,Zanuy S,Carillo M,et al. Effects of rearing temperature on sex differentiation in the European sea bass(Dicentrarchus labrax L.)[J]. Journal of Experimental Zoology,1998,281(3):207-216.
[17]Tomoko N,Katsutoshi A,Taiga H,et al. Effect of temperature on sex ratios of normal and gynogenetic diploid loach[J]. Fisheries Science,1998,64(5):753-758.
[18]南平,杜启艳,燕帅国,等. 温度对泥鳅和大鳞副泥鳅性腺分化的影响和CYP19a基因的克隆与时空表达[J]. 中国水产科学,2005,12(4):407-413.
[19]Yamamoto E. Studies on sex-manipulation and production of cloned populations in hirame,Paralichthys olivaceus(Temminck et Schlegel)[J]. Aquaculture,1999,173(1/2/3/4):235-246.
[20]Andersen L,Goto-Kazeto R,Trant J M,et al. Short-term exposure to low concentrations of the synthetic androgen methyltestosterone affects vitellogenin and steroid levels in adult male zebrafish(Danio rerio)[J]. Aquatic Toxicology,2006,76(3/4):343-352.
[21]Sone K,Hinago M,Itamoto M,et al. Effects of an androgenic growth promoter 17β-trenbolone on masculinization of mosquitofish(Gambusia affinis)[J]. General and Comparative Endocrinology,2005,143(2):151-160.
[22]Arslan T,Phelps R P. Production of monosex male black crappie,Pomoxis nigromaculatus,populations by multiple androgen immersion[J]. Aquaculture,2004,234(1/2/3/4):561-573.
[23]Wang H P,Gao Z,Beres B,et al. Effects of estradiol-17β on survival,growth performance,sex reversal and gonadal structure of bluegill sunfish Lepomis macrochirus[J]. Aquaculture,2008,285(1/2/3/4):216-223.
[24]Labadie P,Budzinski H. Alteration of steroid hormone profile in juvenile turbot(Psetta maxima)as a consequence of short-term exposure to 17α-ethynylestradiol[J]. Chemosphere,2006,64(8):1274-1286.
[25]Yang L,Lin L,Weng S,et al. Sexually disrupting effects of nonylphenol and diethylstilbestrol on male silver carp(Carassius auratus)in aquatic microcosms[J]. Ecotoxicology and Environmental Safety,2008,71(2):400-411.
[26]Piferrer F,Zanuy S,Carrillo M,et al. Brief treatment with an aromatase inhibitor during sex differentiation causes chromosomally female salmon to develop as normal,functional males[J]. Journal of Experimental Zoology,1994,270(3):255-262.
[27]Bhandari R K,Alam M A,Higa M,et al. Evidence that estrogen regulates the sex change of honeycomb grouper(Epinephelus merra),a protogynous hermaphrodite fish[J]. Journal of Experimental Zoology Part A:Comparative Experimental Biology,2005,303(6):497-503.
[1]韩耀全,何安尤,施军,等.岩滩水域渔业生态环境及鱼类物种多样性现状[J].江苏农业科学,2015,43(03):208.
Han Yaoquan,et al.Fishery ecological environment and fish species diversity in Yantan water area[J].Jiangsu Agricultural Sciences,2015,43(01):208.
[2]韩耀全,施军,吴伟军,等.广西内陆水域主要增殖放流鱼类生长生物学特征及变化[J].江苏农业科学,2017,45(16):155.
Han Yaoquan,et al.Growth biological characteristics of main proliferation and releasing fish in Guangxi inland water areas[J].Jiangsu Agricultural Sciences,2017,45(01):155.
[3]高金伟,习丙文,谢骏.鱼类瘦素的研究进展[J].江苏农业科学,2017,45(17):20.
Gao Jinwei,et al.Research progress of fish leptin[J].Jiangsu Agricultural Sciences,2017,45(01):20.
[4]刘莉云,高璐,薛永来,等.甲状腺激素干扰物对鱼类甲状腺轴的干扰效应研究进展[J].江苏农业科学,2018,46(14):8.
Liu Liyun,et al.Research progress on interference effects of thyroid hormone disrupting chemicals on hypothalamus-pituitary-thyroid axis of fish[J].Jiangsu Agricultural Sciences,2018,46(01):8.
[5]石浩,蒋飞勇,何小娥,等.黄芩提取物对鱼类水霉病病原菌的抑制机制[J].江苏农业科学,2020,48(1):164.
Shi Hao,et al.Antibacterial mechanism of Scutellaria baicalensis extracts on pathogenic bacteria of saprolegniasis in fish[J].Jiangsu Agricultural Sciences,2020,48(01):164.
[6]陈军平,沈方方,武慧慧,等.我国鱼类胚胎发育研究进展[J].江苏农业科学,2021,49(17):45.
Chen Junping,et al.Research progress of Chinas fish embryonic development[J].Jiangsu Agricultural Sciences,2021,49(01):45.
[7]陈琼汝,高育冉,赵悦,等.鱼类应激反应的分子机理及防治措施综述[J].江苏农业科学,2024,52(3):27.
Chen Qiongru,et al.Molecular mechanism of stress reaction in fish and its prevention and treatment measures:a review[J].Jiangsu Agricultural Sciences,2024,52(01):27.
[8]蓝一,陈成勋,王庆奎,等.鱼类免疫因子作用机制及其相关技术的研究进展[J].江苏农业科学,2024,52(4):1.
Lan Yi,et al.Research progress on mechanism and related technology of fish immune factors[J].Jiangsu Agricultural Sciences,2024,52(01):1.