cje ›› 2003, Vol. ›› Issue (4): 60-64.
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ZHANG Jianjun, ZHANG Zhibin
Received:2002-04-05
Revised:2002-07-15
Online:2003-04-10
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ZHANG Jianjun, ZHANG Zhibin. Sexual selection of animal[J]. cje, 2003, (4): 60-64.
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| [1] 尹峰,房继明.1998.布氏田鼠的择偶行为[J].动物学报,44(2):162~169 [2] 王晓燕,张树义.1998.分子标记技术在另长类繁殖行为研究中的应用--技术[J].动物学杂志,33(1):53~56. [3] 孙儒泳.2001.动物生态学原理(第三版)[M].北京:北京师范大学出版社. [4] 张立,房继明.1999.雌性布氏田鼠对雄鼠气味的辨别[J].动物学报,45(3):294~301. [5] 张立,孙儒泳,房继明.2002.雄性布氏田鼠对不同熟悉程度和动情状态下雌鼠气味的辨别[J].动物学报,48(1):27~34. [6] 张建旭,王祖望,张知彬.1999.非繁殖期大仓鼠对同种气味的反应和个体间的行为关系[J].动物学研究,20(3):201~206. [7] 张建旭,张知彬,王祖望.1999.大仓鼠繁殖期的行为关系及交配行为[J].兽类学报,19(2):132~141. [8] 张树义,王晓燕.1998.分子标记技术在另长类繁殖行为研究中的应用--应用[J].动物学杂志,33(2):55~58. [9] 赵亚军,邰发道,王廷正,等.2002.熟悉性对棕色田鼠和根田鼠择偶行为的影响[J].动物学报,48(2):167~174. [10] 贾志云,蒋志刚,王祖望.2000.果子狸繁殖期行为的观察[J].兽类学报,20(2):108~115. [11] 梁红雁,王梦军,钟文勤.2000.DNA指纹图谱技术在动物行为学研究上的应用[J].生态学报,20(3):524~527. [12] Andersson M. 1994. Sexual Selection[M]. Princeton, New Jersey: Princeton University. [13] Arcaro KF, Eklund A. 1999. A review of MHC-based mate preferences and fostering experiments in two congenic strains of mice[J]. Genetic, 104:241~244. [14] Austad SN. 1984. Evolution of sperm priority patterns in spiders[A]. In: Smith RL. ed. Sperm Competition and the Evolution of Animal Mating Systems[C]. Orlando: Academic Press. 223~249. [15] Baker TC, Carde RT. 1979a. Analysis of pheromone-mediated behaviors in male Grapholitha molesta, the oriental fruit moth(Lepidoptera: Tortricidae)[J]. Environ. Entomol., 8: 956~968. [16] Baker TC, Garde RT. 1979b. Courtship behavior of the oriental fruit moth(Grapholitha molesta): experimental analysis and consideration of the role of sexual selection in the evolution of courtship pheromones in the Lepidoptera[J]. Ann. Entomol Soc. Amer., 72:173~188. [17] Bateman AJ. 1948. Intrasexual selection in Drosophila[J]. Heredity,2:349~368. [18] Beecher M, Beecher I. 1979. Sociobiology of Banks Swallows: reproductive strategy of the male[J]. Science, 205:1282~1285. [19] Bergstrom CT, Real LA. 2000. Towards a theory of mutual mate choice:lessons from two-sided matching[J]. Evol. Ecol. Res.,2: 493~508. [20] Betram BCR. 1978. Kin selection in lions and evolutio[A]. In Bateson PPG and Hinde RA. Growing points in ethology[M].New York:Cambridge University Press. [21] Birkhead TR, Parker GA. 1997. Sperm competition and mating systems[A]. In: Krebs J R, Davies NB. eds. Behavior ecology: an evolutionary approach[C]. Oxford: Blackwell. 121~145. [22] Bosolo AL. 1995. A further examination of the pre-existing bias favoring a sword in the genus Xiphophorus[J]. Anim. Behav.,50:365~375. [23] Bruce HM. 1959. An exteroceptive block to pregnancy in the mouse[J]. Nature, 184:105. [24] Cox CR, LeBoeuf. 1977. Female incitation of male competition: a mechanism in sexual selection[J]. Amer. Nat., 111: 317~335. [25] Cronin EW, Jr. Sherman PW. 1976. A resource-based mating system:the orange-rumped honeyguide[J]. Living Bird., 152:5~32. [26] Crowley PH, Travers SE, Linton MC, et al. 1991. Mate density,predation risk, and the seasonal sequence of mate choice: A dynamic game[J]. Amer. Nat., 137:567~596. [27] Darwin C. 1859. On the Origin of the Species[M]. London:John Murray. [28] Darwin C. 1871.The descent of man, and selection in relation to sex[M]. New York:Appleton. [29] Davies NB, Hartley IR, Hatchwell BJ, et al. 1996. Female control of copulations to maximize male help:A comparison of polygyandrous alpine accentors, Prunella collaris, and dunnocks, P. modularis[J]. Anim. Behav., 51: 27~47. [30] Dill LM, Hedrick AV, Fraser A, et al. 1999. Male mating strategies under predation risk: do females call the shots[J]. Behav.Ecol., 10(4):452~461. [31] Dixson AF. 1998.Primate Sexuality[M].Oxford :Oxford University Press. [32] Eberhard WG. 1996. Female control:sexual selection by cryptic female choice[M]. Princeton: Princeton University Press. [33] Eklund A. 1997. The major histocompatibility complex and mating preferences in wild house mice[J]. Behav. Ecol., 8:630~634. [34] Eklund A. 1999. Use of the MHC for mate choice in wild house mice[J]. Genetica, 104: 245~248. [35] Fisher RA. 1930. The genetical theory of natural selection[M].Oxford: Clarendon. [36] Forsgren E. 1997. Female sand gobies prefer good fathers over dominant males[J]. Proc R. Soc. Lond B., 264:1283~1286. [37] Forsgren E. 1992. Predation risk affects mate choice in a gobiid fish[J]. Amer. Nat, 40:1041~1049. [38] Freeman S, Herron JC. 1998. Evolutionary analysis[M]. Prentice Hall, Upper Saddle River, N. J. [39] Godin J GJ, Briggs SE. 1996. Female mate choice under predation risk in the guppy[J]. Ani. Behav, 51: 117~130. [40] Graig G. 1967. Mosquitos:female monogamy induced by male accessory gland substance[J]. Science, 156:1499~1501. [41] Griffith SC, Owens IPE, Burkel, et al. 1999. Environmental determination of a sexually selected trait[J]. Nature, 400:358~360. [42] Grob B, knapp LA, Martin RO, et al. 1998. The major histocompatibility complex and mate choice: inbreeding avoidance and selection of good genes[J]. Exp Clin Immunogeneti., 15: 119~129. [43] Gwynne D. 1984. Courtship feeding increases female reproductive success in bushcrickets[J]. Nature, 307: 362~363. [44] Hamilton WD, Zuk M. 1982. Heritable true fitness and bright birds: a role for parasites[J]. Science, 218: 384~387. [45] Hasselquist D, Bensch S, et al. 1996. Correlation between male song repertoire, extra-pair paternity and offspring survival in the great reed warbler[J]. Nature, 381: 229~232. [46] Hedrick AV, Dill LM. 1993. Mate choice by female crickets is influenced by predation risk[J]. Anim. Behav., 46:193~196. [47] Hrdy SB. 1977. Infanticide as a primate reproductive strategy[J].Amer. Nat., 65:40~49. [48] Irwin DE, Price T. 1999. Sexual imprinting, learning and speciation[J]. Heredity,82:347~354. [49] Janetos A. 1980. Strategies of female mate choice: a theoretical analysis[J]. Behav. Ecol. Sociobiol., 7:107~112. [50] Johnstone RA, Reynolds JA, Deustsch J C. 1996. Mutual mate choice and sex differences in choosiness[J]. Evolution, 50:1382. [51] Jones IL, Hunter FM. 1993. Mutual sexual selection in a monogamous seabird[J]. Nature, 362: 238~239. [52] Jordan WC, Bruford MW. 1998. New perspectives on mate choice and the MHC[J]. Heredity, 81: 239~245. [53] Katvala M, Kaitala A. 2001. Male choice for current female fecundity in a polyandrous egg-carrying bug[J]. Anim. Behav.,61:133~137. [54] Kirkpatrick M, Ryan MJ. 1991. The evolution of mating preferences and the paradox of the lek[J]. Nature, 350:33~38. [55] Kondoh M. 2001. Co-evolution of nuptial gift and female multiple mating resulting in diverse breeding systems[J]. Evol. Ecol.Res., 3: 75~89. [56] Meikle DB, et al. 1995. Adult male house mice born to undernourished mothers are unattractive to oestrous females[J]. Anim. Behav.,50:753~758. [57] Monaghan P, Metcalfe NB, Houston DC. 1996. Male finches selectively pair with fecund females[J]. Proc. R. Soc. Lond., B.263:1183~1186. [58] Mφller AP. 2001. Sexual selection, extra-pair paternity, genetic variability and conservation[J]. Acta ZoolSin, 47(1):2~12. [59] Ober C. 1999. Studies of HLA, fertility and mate choice in a human isolate[J]. Hum. Rep.,13:33~38. [60] Parker G A. 1970. Sperm competition and its evolutionary consequences in the insects[J]. Biol. Rev., 45: 525~567. [61] Penn DJ, Potts WK. 1999. The evolution of mating preferences and major histocompatibility complex genes[J]. Amer. Nat.,153(2): 145~164. [62] Qvarnstrom A, Price T. 2001. Maternal effects, paternal effects and sexual selection[J]. TREE, 16(2):95~100. [63] Reynolds JD, Gross MR. 1990. Costs and benefits of female mate choice: is there a lek paradox[J]. Amer. Nat., 136: 230~243. [64] Reynolds JD. 1996.Animal breeding systems[J]. TREE, 11:68~72. [65] Searcy WA. 1992. Song repertoire and mate choice in birds[J].Amer. Zool.,32:71~80. [66] Sergent RC, Rush VN, Wisenden BD, et al. 1998. Courtship and mate choice in fishes: integrating behavioral and sensory ecology[J]. Amer. Nat.,38:82~97. [67] Sheldon BC, et al. 1997. Paternal genetic contribution to offspring condition predicted by size of male secondary sexual character[J]. Proc. R. Soc. Lond. B., 263: 297~302. [68] Sherman PW. 1989. Mating guarding as paternity insurance in Idaho ground squirrels[J]. Nature, 338: 418~420. [69] Stockley P. 1997. Sexual conflict resulting from adaptations to sperm competition[J]. TREE, 12:154~159. [70] Ten CC, Vos DR. 1999. Sexual imprinting and evolutionary processes in birds: a reassessment[J]. Adv. Stud. Behav, 28:1~31. [71] Thornhill R. 1983. Cryptic female choice and its implications in the scorpionfly Harpobittacus nigriceps[J]. Amer. Nat., 122:765~788. [72] Thornhill R. 1980.Sexual selection within mating swarms of the lovebug, Plecia nearctica[J]. Anim. Behav., 28: 405~412. [73] Tregenza T, Wedell N. 2000. Genetic compatibility, mate choice and patterns of parentage: Invited review[J]. Mol. Ecol., 9:1013~1027. [74] Trivers RL. 1972. Parental investment and sexual selection[A].In: Campbell B. Sexual selection and the descent of man. Chicago: Aldine, 136~179. [75] Voss R. 1979. Male accessory glands and the evolution of copulatory plugs in rodents[J]. Occas. Papers Mus Zool, Univ. Michoian, 689:1~27. [76] Wagge J. 1979. Dual function of the damselfly penis: sperm removal and transfer[J]. Science, 203: 916~918. [77] Wagner, JR. 1998. Measuring female mating preferences[J].Anim. Behav., 55:1029~1042. [78] Waston PJ, Thornhill R. 1994. Fluctuating asymmetries, competition and dominance[J]. Pro. R. Soc., Lond. B., 256:299~303. [79] Waston PJ, Arnqvist G, Stallman RR. 1998. Sexual conflict and energetic costs of mating and mate choice in water striders[J].Amer. Nat., 151:46~58. [80] Wiens J J, Morris MR. 1996. Character definitions, sexual selection, and the evolution of swordtails[J]. Amer. Nat, 147:866~869. [81] Wilson EO. 1975. Sociobiology: the New Synthesis[M]. Cambridge MA. Cambridge University Press. [82] Yasui Y. 1998.The "genetic benefits" of female multiple mating reconsidered[J]. TREE, 13: 246~250. [83] Zeh JA, Zeh DW. 1996. The evolution of polyandry I. Intragenomic conflict and genetic incompatibility[J]. Proc. R. Soc.Lond. B. 263:1711~1717. [84] Zeh JA, Zeh DW. 1997. The evolution of polyandry Ⅱ. Post-copulatory defenses against genetic incompatibility[J]. Proc. R.Soc. Lond . B., 264: 69~75. |
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