| [1]	费梁.中国两栖动物检索及图解[M].成都:四川科学技术出版社,2005:102-139. [2]	Zhao E M. China red data book of endangered Animals-Amphibian[M]. Beijing: Science Press,1998.
 [3]	舒妙安.棘胸蛙肌肉营养成分的分析(Ⅰ)[J].浙江大学学报:理学版,27(4):433-438.
 [4]	舒妙安.棘胸蛙肌肉营养成分的分析(Ⅱ)[J].浙江大学学报:理学版,27(5):553-559.
 [5]	陶吉兴,刘安兴,孙孟军.浙江重点两栖动物种群数量研究[J].浙江大学学报:农业与生命科学版,2004,30(5):536-540.
 [6]	杨道德,熊建利,蒋志刚.江西桃红岭梅花鹿国家级自然保护区两栖动物资源调查[J].动物学杂志,2007,42(6):79-84
 [7]	杨道德,熊建利,冯斌,等.湖南阳明山国家级自然保护区两栖爬行动物资源调查[J].四川动物,2009,28(1):127-132.
 [8]	方小斌,周奕琳,杨璐伊,等.浙江省古田山国家级自然保护区两栖爬行动物资源现状[J].四川动物2013,32(1):125-130.
 [9]	梅祎芸,叶容晖,宋婷婷,等.浙江省棘胸蛙养殖现状及发展对策[J].浙江农业科学,2015,56(7):1122-1125.
 [10]	刘承钊,胡淑琴.中国无尾两栖类[M].北京:科学出版社,1961.
 [11]	陈国英,周洵,程学龙,等.棘胸蛙的生物学和人工增养殖研究[J].水产科技情报,1991,18(4):101-105
 [12]	谢忠明.经济蛙类养殖技术[M].北京:中国农业出版社,2000.
 [13]	Yu B G, Zheng R Q, Zhang Y, et al. Geographic variation in body size and sexual size dimorphism in the giant-spiny frog Paa spinosa (David, 1875) (Anura: Ranoidae). Journal of Natural History,2010,44(27-28):1729-1741.
 [14]	Bickford D, Lohman D J, Sohdi N S, et al. Cryptic species as a window on diversity and conservation[J]. Trends in Ecology & Evolution, 2007,22(3):148-155.
 [15]	Stuart B L, Lnger R F, Voris H K. High level of cryptic species diversity revealed by sympatric lineages of Southeast Asian forest frogs[J].Biology Letters,2006,2(3):470-474.
 [16]	Cunningham E J A, Birkhead T R. Sex roles and sexual selection[J].Animal Behaviour, 1998,56(6):1311-1321.
 [17]	Brenowitz E A, Rose G J. Female choice and plasticity of male calling behaviour in the Pacific treefrog[J].Animal Behaviour, 1999,57(6):1337-1342.
 [18]	Yu B G, Zheng R Q. The advertisement call of the giant spiny frog Paa spinosa[J]. Current Zoology,2009,55(6):411-415.
 [19]	陈平,郑荣泉,黄华,等.棘胸蛙求偶鸣声与温度有关但与体大小无关[J].四川动物,2012,31(4):513-517.
 [20]	Cicero C. Sibling species of titmice in the Parus inornatus complex (Aves: Paridae) [M]. University of California Press,1996,128:1-217.
 [21]	Jones G, Barlow K E. Cryptic species of echolocating bats[A]. In: Thomas J A, Moss C F, Vater M. Echolocation in Bats and Dolphins[M]. Chicago, IL: University of Chicago Press,2004:345-349.
 [22]	Narins P M. Divergence of acoustic communication systems of two sibling species of eleutherodactylid frogs[J]. Copeia,1983:1089-1090.
 [23]	陈平.温度和体大小对棘胸蛙鸣声的影响及其地理变异[D].金华:浙江师范大学,2012.
 [24]	李炳华,汪尊德.棘胸蛙的染色体组型分析[J].遗传,1983,5(5):39-41.
 [25]	郑秀梅,洪怡莎.虎纹蛙(Rana tigrinarugulosa Wiegrnann)、棘胸蛙(Rana spinos David)的染色体组型[J].四川动物,1984,(2):33-37.
 [26]	章菊明,徐宽明.棘胸蛙的染色体组型[J].温州医学院报,1986,16(1):1-4.
 [27]	吴昌谋,陈志坚,王秉新.桂林棘胸蛙染色体的组型[J].广西师范大学学报:自然科学版,1990,8(1):73-77.
 [28]	高建民,叶冰营,蔡明章.九龙棘蛙和棘胸蛙的染色体比较研究[J].福建师范大学学报:自然科学版,1991,7(4):84-89.
 [29]	江建平,周开亚.从12S rRNA基因序列研究中国24种蛙的进化关系[J].动物学报,2001,47(1):38-44.
 [30]	Jiang J P, Dubois A, Ohler A, et a1. Phylogenetic Relmionships of the Tribe Paini (Amphibia, Anura, Ranidae) Based on Partial Sequences of Mitochondrial 12s and 16s rRNA Genes[J]. Zool Sci,2005,22:353-362.
 [31]	Chen L Q, Murphy R W, Lathrop A. Taxonomic chaos in Asian ranid frogs: an initial phylogenetic resolution[J]. Herpetol J,2005,15:231-243.
 [32]	Zhou Y, Zhang J Y, Zheng R Q, et al. Complete nucleotide sequence and gene organization of the mitochondrial genome of Paa spinosa (Anura: Ranoidae)[J]. Gene,2009,447:86-96.
 [33]	刘南君,吴太伦,路健,等.宽阔水自然保护区棘胸蛙种群的RAPD遗传多样性[J].贵州农业科学,2013,40(1):14-17.
 [34]	Che J, Hu J S, Zhou W W, et a1. Phylogeny of the Asian spiny frog tribe Paini (Family Dicroglossidae) sensu Dubois[J]. Molecular Phylogenetics and Evolution,2009,50:59-73.
 [35]	路庆芳.利用线粒体DNA分子标记探讨棘胸蛙种群遗传结构[D].金华:浙江师范大学,2008.
 [36]	Zheng R Q, Ye R H, Yu Y Y, et al. Fifteen polymorphic microsatellite markers for the giant spiny frog, Paa spinosa[J]. Molecular Ecology Resources,2009(9):336-338.
 [37]	郑荣泉.棘胸蛙体大小、热生理学变异及系统地理学研究[D].南京:南京师范大学,2009.
 [38]	黄华.利用线粒体DNA分子标记揭示棘胸蛙中的隐种多样性[D].金华:浙江师范大学,2012.
 [39]	Ye S P, Huang H, Zheng RQ,et al. Phylogeographic Analyses Strongly Suggest Cryptic Speciation in the Giant Spiny Frog (Dicroglossidae: Paa spinosa) and Interspecies Hybridization in Paa[J]. PLoS ONE 2013,8(7):e70403.
 [40]	叶书培.棘蛙属物种存在隐种和渐渗杂交分子系统地理学证据[D].金华:浙江师范大学,2013.
 [41]	Zheng R Q, Liu C T. Giant spiny-frog (Paa spinosa) from different populations differ in thermal preference but not in thermal tolerance[J]. Aquatic Ecology,2010,44:723-729.
 [42]	王存盼.棘胸蛙非特异性免疫在多种环境胁迫下的反应特征[D].金华:浙江师范大学,2011.
 [43]	李小玲,颉志刚,邵晨,等.细菌刺激对棘胸蛙GLO活力及肝肾VC含量的影响[J].贵州农业科学,2010(10):130-133.
 [44]	叶圣涛,颉志刚,庄建洲.野生与养殖的棘胸蛙免疫、抗氧化能力及能量蓄积的比较[J].湖南农业科学,2013(11):102-104.
 [45]	王娜.急性低温胁近及冬眠温度波动对棘胸蛙免疫、抗氧化系统及Hsp70基因表达的影响[D].金华:浙江师范大学,2012.
 [46]	凌云,邵晨,颉志刚,等.低温暴露和恢复对棘胸蛙雌性亚成体生存力及能量物质消耗的影响[J].生态学报,2012,32(18):5763-5769.
 [47]	于晓云.棘胸蛙MGC+IIB基因的克隆、多态性及其与嗜水单胞菌杂的抗病相关性研究[D].金华:浙江师范大学,2013.
 
 |