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  1. NTU Theses and Dissertations Repository
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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46907
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor袁孝維
dc.contributor.authorTzu-Neng Yuanen
dc.contributor.author袁子能zh_TW
dc.date.accessioned2021-06-15T05:43:07Z-
dc.date.available2010-08-20
dc.date.copyright2010-08-20
dc.date.issued2010
dc.date.submitted2010-08-20
dc.identifier.citationAlexander RD. The evolution of social behavior. Annual Review of Ecology and Systematics (1974) 5 325-383.
Aviles L, Tufino P. Colony size and individual fitness in the social spider Anelosimus eximius. Am. Nat. (1998) 152:403-418.
Brown JL. Alternate routes to sociality in jays - With a theory fir evolution of altruism and communal breeding. Am. Zool. (1974) 14:63-80.
Brown JL. Helping and communal breeding in birds. (1987) Princeton: Princeton University Press.
Buston PM, Bogdanowicz SM, Wong A, Harrison RG. Are clownfish groups composed of close relatives? An analysis of microsatellite DNA variation in Amphiprion percula. Mol. Ecol. (2007) 16:3671-3678.
Chen H-C. Competition strategy in egg-layin period in Taiwan Yuhinas (Yuhina brunneiceps) (2009): National Taiwan University.
Costa JT. The other insect societies. (2006) Cambridge, Mass.: Belknap Press of Havard University Press.
Dickinson JL, Hatchwell BJ. Fitness consequence of helping. In: Ecology and Evolution of Cooperative Breeding in Birds--Koenig WD, Dickinson JL, eds. (2004) Cambridge: Cambridge University Press. 48-66.
Drews C. The concept and definition of dominance in animal group. Behaviour (1993) 125:283-313.
Elgar MA. Predator vigilance and group-size in mammals and birds - A critical review of the empirical evidence. Biol. Rev. Cambridge Philosophic. Soc. (1989) 64:13-33.
Emlen ST. The evolution of helping .1. An ecological constraints model. Am. Nat. (1982) 119:29-39.
Emlen ST. Evolution of cooperative breeding in birds and mammals. In: Behavioural Ecology: An Evolutionary Approach--Krebs JR, Davies NB, eds. (1991) Oxford: Blackwell Science.
Emlen ST. An evolutionary-theory of the family. Proc. Natl. Acad. Sci. U. S. A. (1995) 92:8092-8099.
Emlen ST. Predicting family dynamics in social vertebrates. (1997) Oxford: Blackwell Science.
Emlen ST, Vehrencamp SL. Cooperative breeding strategies among birds. In: Perspectives in ornithorlogy--Brush AH, Clark GA, eds. (1983) Cambridge: Cambridge Univiersity Press.
Giraldeau LA, Caraco T. Genetic relatedness and group-size in an aggregation economy. Evol. Ecol. (1993) 7:429-438.
Hamilton WD. Geometry for selfish herd. J. Theor. Biol. (1971) 31:295-311.
Hatchwell BJ, Komdeur J. Ecological constraints, life history traits and the evolution of cooperative breeding. ANIMAL BEHAVIOUR (2000) 59:1079-1086.
Higashi M, Yamamura N. What determines animal group-szie? Insider-outsider conflict and its resolution. Am. Nat. (1993) 142:553-563.
Hughes WOH, Eilenberg J, Boomsma JJ. Trade-offs in group living: transmission and disease resistance in leaf-cutting ants. Proc. R. Soc. Lond. Ser. B-Biol. Sci. (2002) 269:1811-1819.
Koenig WD. Reproductive success, group-size, and the evolution of cooperative breeding in the Acorn Woodpecker. Am. Nat. (1981) 117:421-443.
Koenig WD, Dickinson JL. Ecology and cooparative breeding in birds. (2004) Cambridge: Cambridge University Press.
Koenig WD, Pitelka FA, Carmen WJ, Mumme RL, Stanback MT. The evolution of delayed dispersal in cooperative breeders. Q. Rev. Biol. (1992) 67:111-150.
Kokko H, Lundberg P. Dispersal, migration, and offspring retention in saturated habitats. Am. Nat. (2001) 157:188-202.
Komdeur J. Importance of habitat saturation and territory quality for evolution of cooperative breeding in the Seychelles Warbler. Nature (1992) 358:493-495.
Konovalov DA, Manning C, Henshaw MT. Kingroup: A program for pedigree relationship reconstruction and kin group assignments using genetic markers. Mol. Ecol. Notes (2004) 4:779-782.
Krause J, Ruxton GD. Living in groups. (2002) Oxford: Oxford University Press.
Krebs JR, Ryan JC, Charnov EL. Hunting by expectation optimalforaging - Study of patch use by chickadees. Animal Behaviour (1974) 22:953-&.
Lee PF, Shen SF, Chiou TSD-R, Yuan HW. Habitat selection of the cooperative breeding Taiwan Yuhina (Yuhina brunneiceps) in a fragmented forest habitat. Zoological Studies (2005) 44:497-504.
Lima SL, Bednekoff PA. Back to the basics of antipredatory vigilance: can nonvigilant animals detest attack? Animal Behaviour (1999) 58:537-543.
Pen I, Weissing FJ. Towards a unified theory of cooperative breeding: the role of ecology and life history re-examined. Proceedings of the Royal Society of London Series B-Biological Sciences (2000) 267:2411-2418.
Pitcher TJ, Magurran AE, Winfield IJ. Fish in larger shoals find food faster. Behav. Ecol. Sociobiol. (1982) 10:149-151.
Port M, Johnstone RA, Kappeler PM. Costs and benefits of multi-male associations in redfronted lemurs (Eulemur fulvus rufus). Biology Letters (2010).
Reeve HK, Holldobler B. The emergence of a superorganism through intergroup competition. Proc. Natl. Acad. Sci. U. S. A. (2007) 104:9736-9740.
Reyer HU. Pied kingfishers: Ecological causes and reproductive consequences of cooperative breeding. In: Cooperative breeding in Birds--Stacey PB, Koenig WD, eds. (1990) Cambridge: Cambridge University Press.
Rubenstein DR, Shen SF. Reproductive conflict and the costs of social status in cooperatively breeding vertebrates. Am. Nat. (2009) 173:650-661.
Seutin G, White BN, Boag PT. Preservation of avian blood and tissue samples for DNA analyses. Can. J. Zool.-Rev. Can. Zool. (1991) 69:82-90.
Shen SF. The ecology of cooperative breeding Taiwan Yuhinas (Yuhina brunneiceps) at Mayfeng area (2002) Taipei: National Taiwan University.
Shen SF, Emlen ST. Group benefits, insider-outsider conflict and the evolution of cooperative social groups. PLoS Biology (2010).
Sibly RM. Optimal group-size is unstable. Animal Behaviour (1983) 31:947-948.
Sinclair ARE. The African Buffalo. (1977) Chicago: University of Chicago Press.
Solomon NG, French JA. Cooperative breeding in mammals. (1997) Cambridge: Cambridge University Press.
Stacey PB, Koenig WD. Cooperative breeding in birds: Long-tern studies of ecology and behavior. (1990) Cambridge: Cambridge University Press.
Stacey PB, Ligon JD. Territory quality and dispersal options in the Acorn Woodpecker, and a challenge to the habitat-saturation model of cooperative breeding. Am. Nat. (1987) 130:654-676.
Stacey PB, Ligon JD. The benefits-of-philopatry hypothesis for the evolution of cooperative breeding: Variation in territory quality and group-size effects. The American Naturalist (1991) 137:831-846.
Verencamp SL, Quinn JS. Joint laying systems. In: Ecology and evolution of cooperative breeding in birds--Koenig WD, Dickinson JL, eds. (2004) Cambridge: Cambridge University Press. 177-196.
West SA, et al. Cooperation and the scale of competition in humans. Curr. Biol. (2006) 16:1103-1106.
Williams CK, Lutz RS, Applegate RD. Optimal group size and northern bobwhite coveys. Animal Behaviour (2003) 66:377-387.
Yuan HW, Liu M, Shen SF. Joint nesting in Taiwan Yuhinas: A rare passerine case. Condor (2004) 106:862-872.
Yuan HW, Shen SF, Hung HY. Sexual dimorphism, dispersal patterns, and breeding biology of the Taiwan Yuhina: a joint-nesting passerine. Wilson J. Ornithol. (2006) 118:558-562.
Yuan HW, Shen SF, Lin KY, Lee PF. Group-slze effects and parental investment strategies during incubation in joint-nesting Taiwan Yuhinas (Yuhina brunneiceps). Wilson Bull. (2005) 117:306-312.
Zhong Q-D. Genetic structure and relatedness in join-nesting Taiwan Yuhina (Yuhina brunneiceps) (2006) Taipei: National Taiwan University.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46907-
dc.description.abstract在有關社會演化(social evolution)的研究中,影響社會結構(social structure)的生態因子與社會因子是目前研究的焦點,透過分析群體生活的利與弊,可以瞭解群體成員的適存度(fitness)與群成員數之間的關聯。群內成員與加入者衝突模型(insider-outsider conflict model, IOM)提供了一個可供測試之架構,作為研究前述群成員數與群成員的適存度與群成員之間利益衝突的基礎。群內成員與加入者衝突模型是在描述群體中的群內成員(insiders)與潛在的加入者(outsiders)之間的衝突。我們於1997至2007年在梅峰地區進行冠羽畫眉的合作生殖行為研究,透過記錄影響冠羽畫眉社會結構的因子,如群成員數(group size)、群組成(group composition)、穩定度(stability),來測試群內成員與加入者衝突模型。我們發現冠羽畫眉最常見的群成員數(4隻一群)為最穩定的群成員數(穩定度83.7%)。大群(群成員數6-8)的群成員變動主要是群成員數減少(83.3%),而小群(群成員數2-3)大多消失在研究地區(41.7%),沒有消失的群以傾向變成較大的群成員數(54.2%)。親戚群體出現在大群的比例(67.3%)高於在中群(群成員數4-5)的比例(32.7%),而小群的冠羽畫眉沒有發現任何的親戚群體。本研究是第一個在合作生殖的脊椎動物測試IOM,結果完全符合根據IOM所提出的預測,確立了IOM可以作為研究社會群體的群成員數、群組成、穩定度等社會結構的基礎框架。zh_TW
dc.description.abstractEcological and social determinants of social structure are one of the focuses in study of social evolution. The cost-benefit analysis of group living helps understand the outline of the function relating individual fitness to group size. Building on the functions of individual fitness to group size, the insider-outsider conflict model (IOM) describes the tension between group members (the insiders) and potential joiners (the outsiders). We study factors affect social structure (group size, group composition, and stability) by testing the predictions derived from IOM in joint-nesting Taiwan Yuhinas (Yuhina brunneiceps). I found that the commonest observed group size, i.e. two pairs, is the most stable (stability 83.7%) group size in Yuhinas. And the Yuhina groups tended to converge to the commonest group size. The size of large groups (6-8 individuals) tended to decrease (83.3%), and that of small groups (2-3 individuals) tended to increase (54.2%). And part of small groups disappeared from study site (41.7%). We also found the observed group size of kin group were larger than that of non-kin group in Yuhinas. All of the predictions derived from IOM are supported by our results, confirming the application of insider-outsider conflict model in cooperatively breeding species.en
dc.description.provenanceMade available in DSpace on 2021-06-15T05:43:07Z (GMT). No. of bitstreams: 1
ntu-99-R95625019-1.pdf: 265276 bytes, checksum: ead1c31024d800fb5ebcd4b71c79182a (MD5)
Previous issue date: 2010
en
dc.description.tableofcontents口試委員會審 I
謝誌 II
摘要 III
Abstract IV
一、 前言 1
二、研究方法 5
決定繁殖群 6
各巢生殖狀態監測及紀錄 6
群成員數變動、穩定度 7
親緣關係鑑定、群成員組成 7
三、結果 8
四、討論 11
五、參考文獻 15
圖 20
表 29
dc.language.isozh-TW
dc.title冠羽畫眉之群成員數與群穩定度zh_TW
dc.titleGroup Size and Group Stability in
Taiwan Yuhinas (Yuhina brunneiceps)
en
dc.typeThesis
dc.date.schoolyear98-2
dc.description.degree碩士
dc.contributor.oralexamcommittee劉小如,謝寶森,許育誠,丁宗蘇
dc.subject.keyword合作生殖,共用一巢制,冠羽畫眉,群內成員與加入者衝突模型,穩定度,zh_TW
dc.subject.keywordcooperative breeding,joint-nesting,Taiwan Yuhina (Yuhina brunneiceps),insider-outsider conflict model,stability,en
dc.relation.page31
dc.rights.note有償授權
dc.date.accepted2010-08-20
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept森林環境暨資源學研究所zh_TW
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