簡易檢索 / 詳目顯示

研究生: 梁博凱
論文名稱: 玉山杜鵑複合群物種於更新世冰期過後之族群退縮與物種分歧
Postglacial population bottleneck and species divergence in Rhododendron pseudochrysanthum species complex
指導教授: 黃士穎
學位類別: 碩士
Master
系所名稱: 生命科學系
Department of Life Science
論文出版年: 2011
畢業學年度: 99
語文別: 中文
論文頁數: 85
中文關鍵詞: 杜鵑
論文種類: 學術論文
相關次數: 點閱:205下載:9
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 玉山杜鵑複合群的成員包括紅星、南湖、玉山、森氏杜鵑,均為台灣特有種,形態相似並且分佈的海拔也相當接近。過去的研究發現玉山杜鵑複合群為單一起源,也發現族群過去有擴張的歷史。本研究目的是以遺傳學的方法研究玉山杜鵑複合群在氣候變遷之後族群破碎化的情形下受到族群縮小的影響。本研究使用微衛星DNA片段做多型性的分子標記,收集族群中的遺傳變異。藉由這些遺傳多型性的資料估計各種族群遺傳參數與檢測族群結構。本研究發現紅星杜鵑相對於玉山杜鵑複合群其他物種,其遺傳歧異度明顯低於台灣杜鵑。另外,依據長期基因交流量與MSVAR的檢測發現玉山杜鵑複合群早期的有效族群數量大,M-ratio分析檢測到玉山杜鵑複合群經歷族群縮小的歷史,以上證據顯示玉山杜鵑複合群經歷族群縮小,由以紅星杜鵑比其他物種更嚴重。玉山杜鵑複合群族群隨距離而升高分化的程度,顯示族群因為縮小事件而降低基因交流的量導致分化,遺傳結構的分析顯示距離相近的族群其遺傳結構相似,以上兩點顯示玉山杜鵑複合群盤據於各山上的族群正在分歧。不同方法檢測到玉山杜鵑複合群天偏離中性演化的基因座,顯示玉山杜鵑複合群族群破碎化之後進行在地適應演化。

    Rhododendron pseudochrysanthum species complex constitutes of R. pseudochrysanthum, R. morii, R. rubropunctatum and R. hyperythrum. Species in the R. pseudochrysanthum complex are all endemics to Taiwan and they are morphologically similar. Previous studies revealed that R. rubropunctatum was the origin of this species complex in which Pleistocene range expansion was found and population fragmentation occurred since the last glacial maximum. Aims of this study were to gather information to trace the effect of bottleneck that resulted in reduction of effective population size and genetic structure.
    Based on expressed sequenced tag (EST)-derived simple sequence repeats (SSRs) marker system, genotyping data of 27 EST-SSRs were analyzed and population genetic parameters were estimated. Severe bottleneck was found in the R. rubropunctatum populations and high level of genetic divergence in comparison with populations of other species in the R. pseudochrysanthum complex. In addition, high level of genetic divergence is associated with local climatic factors and resulted in local adaptation.

    摘要 1 壹、研究背景與動機 3 貳、前人研究成果 5 一、氣候變遷影響植物族群變動與演化 5 二、冰河期與間冰期交替影響植物的遷移 5 三、族群破碎化使族群縮小並促進分化 9 四、玉山杜鵑複合群的文獻探討 11 五、族群遺傳研究工具EST-SSR 14 參、材料與方法 16 一、研究材料 16 二、實驗方法 16 (一) Genomic DNA萃取 16 (二) EST-SSR Genotyping 17 三、族群變動與族群結構的分析方法 19 (一) 族群遺傳參數與遺傳歧異度 19 (二) 族群結構 20 (三) 族群縮小(bottleneck) 22 (四) 早期族群變動與當代有效個體數量 24 (五) 族群之間的遷移率 26 (六) 分析在天擇之下受到受到選汰的基因座 28 (七) 檢測氣候因素與EST-SSR對偶基因的相關 31 肆、結果 32 一、遺傳歧異度 32 二、族群結構 34 (一) 族群分化 34 (二) 族群結構的分群 35 三、族群縮小(BOTTLENECK)歷史 37 四、族群變動(DEMOGRAPHY) 38 五、族群遷移 39 (一) 長期遷移(long-term migration)分析 39 (二) 近期遷移(recent migration)分析 40 六、適應性演化 40 伍、討論 42 一、遺傳歧異度 42 二、玉山杜鵑複合群早期的有效族群數量大 44 三、玉山杜鵑複合群族群退縮的歷史 45 四、族群退縮後物種分歧 46 五、族群破碎化與適應性演化 48 陸、參考文獻 52 柒、表附錄 60 捌、圖附錄 75

    Abbott, R. and C. Brochmann (2003). "History and evolution of the arctic flora: in the footsteps of Eric Hulten." Molecular Ecology 12(2): 299-313.
    Alsos, I., T. Engelskjon, et al. (2005). "Impact of ice ages on circumpolar molecular diversity: insights from an ecological key species." Molecular Ecology 14(9): 2739-2753.
    Ashley, M. and B. Dow (1994). "The use of microsatellite analysis in population biology: background, methods and potential applications." Exs 69: 185.
    Beaumont, M. and R. Nichols (1996). "Evaluating loci for use in the genetic analysis of population structure." Proceedings: Biological Sciences 263(1377): 1619-1626.
    Beerli, P. and J. Felsenstein (2001). "Maximum likelihood estimation of a migration matrix and effective population sizes in n subpopulations by using a coalescent approach." Proceedings of the National Academy of Sciences of the United States of America 98(8): 4563.
    Booy, G., R. Hendriks, et al. (2000). "Genetic diversity and the survival of populations." Plant biol (Stuttg) 2: 379-395.
    Chung, J., T. Lin, et al. (2007). "Phylogeographic study reveals the origin and evolutionary history of a Rhododendron species complex in Taiwan." Molecular phylogenetics and evolution 42(1): 14-24.
    Cornuet, J. and G. Luikart (1996). "Description and power analysis of two tests for detecting recent population bottlenecks from allele frequency data." Genetics 144(4): 2001.
    Davis, M. and R. Shaw (2001). "Range shifts and adaptive responses to Quaternary climate change." Science 292(5517): 673.
    DeChaine, E. and A. Martin (2005). "Marked genetic divergence among sky island populations of Sedum lanceolatum (Crassulaceae) in the Rocky Mountains." American Journal of Botany 92(3): 477.
    Dieringer, D. and C. Schlotterer (2003). "Microsatellite analyser (MSA): a platform independent analysis tool for large microsatellite data sets." Molecular Ecology Notes 3(1): 167-169.
    Doyle, J. and J. Doyle (1987). "A rapid DNA isolation procedure for small quantities of fresh leaf tissue." Phytochemical bulletin 19(1): 11-15.
    Elias, S. (1996). The ice-age history of national parks in the Rocky Mountains, Smithsonian Institution Press Washington, DC.
    Ellis, J. and J. Burke (2007). "EST-SSRs as a resource for population genetic analyses." Heredity 99(2): 125-132.
    Ellstrand, N. and D. Elam (1993). "Population genetic consequences of small population size: implications for plant conservation." Annual Review of Ecology and Systematics: 217-242.
    Escaravage, N. and J. Wagner (2004). "Pollination effectiveness and pollen dispersal in a Rhododendron ferrugineum (Ericaceae) population." Plant Biology 6(5): 606-615.
    Evanno, G., S. Regnaut, et al. (2005). "Detecting the number of clusters of individuals using the software STRUCTURE: a simulation study." Molecular Ecology 14(8): 2611-2620.
    Excoffier, L., T. Hofer, et al. (2009). "Detecting loci under selection in a hierarchically structured population." Heredity 103(4): 285-298.
    Excoffier, L., G. Laval, et al. (2005). "Arlequin (version 3.0): an integrated software package for population genetics data analysis." Evolutionary bioinformatics online 1: 47.
    Faubet, P., R. WAPLES, et al. (2007). "Evaluating the performance of a multilocus Bayesian method for the estimation of migration rates." Molecular Ecology 16(6): 1149-1166.
    Felsenstein, J. (1982). "How can we infer geography and history from gene frequencies?* 1." Journal of Theoretical Biology 96(1): 9-20.
    Garcia-Ramos, G. and M. Kirkpatrick (1997). "Genetic models of adaptation and gene flow in peripheral populations." Evolution 51(1): 21-28.
    Garza, J. and E. Williamson (2001). "Detection of reduction in population size using data from microsatellite loci." Molecular Ecology 10(2): 305-318.
    Gavrilets, S. and A. Vose (2005). "Dynamic patterns of adaptive radiation." Proceedings of the National Academy of Sciences of the United States of America 102(50): 18040.
    Gupta, P., H. Balyan, et al. (1996). "Microsatellites in plants: a new class of molecular markers." Current Science 70(1): 45-54.
    Hamrick, J. (2004). "Response of forest trees to global environmental changes." Forest Ecology and Management 197(1-3): 323-335.
    Hamrick, J. and M. Godt (1996). "Conservation genetics of endemic plant species." Conservation genetics: case histories from nature: 281¡V304.
    Hedrick, P. (2004). "Recent developments in conservation genetics." Forest Ecology and Management 197(1-3): 3-19.
    Hewitt, G. (2000). "The genetic legacy of the Quaternary ice ages." Nature 405(6789): 907-913.
    Hewitt, G. (2004). "Genetic consequences of climatic oscillations in the Quaternary." Philosophical Transactions of the Royal Society of London. Series B: Biological Sciences 359(1442): 183.
    Hirao, A. (2010). "Kinship between parents reduces offspring fitness in a natural population of Rhododendron brachycarpum." Annals of botany 105(4): 637.
    Honnay, O. and H. Jacquemyn (2007). "Susceptibility of common and rare plant species to the genetic consequences of habitat fragmentation." Conservation Biology 21(3): 823-831.
    Jensen, J., A. Bohonak, et al. (2005). "Isolation by distance, web service." Bmc Genetics 6(1): 13.
    JOOST, S., M. KALBERMATTEN, et al. (2008). "Spatial analysis method (SAM): a software tool combining molecular and environmental data to identify candidate loci for selection." Molecular Ecology Resources 8(5): 957-960.
    Kawecki, T. and D. Ebert (2004). "Conceptual issues in local adaptation." Ecology letters 7(12): 1225-1241.
    Kimura, M. and T. Ohta (1978). "Stepwise mutation model and distribution of allelic frequencies in a finite population." Proceedings of the National Academy of Sciences of the United States of America 75(6): 2868.
    Kondo, T., N. Nakagoshi, et al. (2009). "Shaping of genetic structure along Pleistocene and modern river systems in the hydrochorous riparian azalea, Rhododendron ripense (Ericaceae)." American Journal of Botany 96(8): 1532.
    Laurance, W., H. Nascimento, et al. (2007). "Habitat fragmentation, variable edge effects, and the landscape-divergence hypothesis." PloS one 2(10): 1017.
    Li, H. L., S. Y. L.u, et al. (1998). "Ericaceae. In: Flora of Taiwan,Editorial Committee of the Flora of Taiwan, (second ed.)." 4: 17-39.
    Lowe, A., D. Boshier, et al. (2005). "Genetic resource impacts of habitat loss and degradation; reconciling empirical evidence and predicted theory for neotropical trees." Heredity 95(4): 255-273.
    Lu, S. Y. and Y. P. Yang (1989). "A revision of Rhododendron (Ericaceae) of Taiwan.Bull. Taiwan Forest Res. Inst." New Series 4: 155-166.
    Luikart, G. and J. Cornuet (1998). "Empirical evaluation of a test for identifying recently bottlenecked populations from allele frequency data." Conservation Biology 12(1): 228-237.
    Mabberley, D. (1997). The plant book: a pocket dictionary of the vascular plants, Cambridge University Press, Cambridge, UK. Mabberley DJ.
    Ng, S. and R. Corlett (2000). "Comparative reproductive biology of the six species of Rhododendron (Ericaceae) in Hong Kong, South China." Botany 78(2): 221-229.
    Nybom, H. (2004). "Comparison of different nuclear DNA markers for estimating intraspecific genetic diversity in plants." Molecular Ecology 13(5): 1143-1155.
    Ohta, T. and M. Kimura (1973). "A model of mutation appropriate to estimate the number of electrophoretically detectable alleles in a finite population." Genetics Research 22(02): 201-204.
    Ono, A., I. Dohzono, et al. (2008). "Bumblebee pollination and reproductive biology of Rhododendron semibarbatum (Ericaceae)." Journal of Plant Research 121(3): 319-327.
    Ota, Y., J. Chappell, et al. (1997). "Late Quaternary paleolandslides on the coral terraces of Huon Peninsula, Papua New Guinea." Geomorphology 19(1-2): 55-76.
    Pashley, C., J. Ellis, et al. (2006). "EST databases as a source for molecular markers: lessons from Helianthus." Journal of Heredity 97(4): 381.
    Peleg, Z., T. Fahima, et al. (2008). "Genetic structure of wild emmer wheat populations as reflected by transcribed versus anonymous SSR markers." Genome 51(3): 187-195.
    Petit, R., S. Brewer, et al. (2002). "Identification of refugia and post-glacial colonisation routes of European white oaks based on chloroplast DNA and fossil pollen evidence." Forest Ecology and Management 156(1-3): 49-74.
    Piry, S., G. Luikart, et al. (1999). "Computer note. BOTTLENECK: a computer program for detecting recent reductions in the effective size using allele frequency data." Journal of Heredity 90(4): 502.
    Pope, L., X. DOMINGO ROURA, et al. (2006). "Isolation by distance and gene flow in the Eurasian badger (Meles meles) at both a local and broad scale." Molecular Ecology 15(2): 371-386.
    Pritchard, J., M. Stephens, et al. (2000). "Inference of population structure using multilocus genotype data." Genetics 155(2): 945.
    Raymond, M. and F. Rousset (1995). "genepop (version 3.4): population genetics software for exact tests and ecumenicism." Journal of Heredity 86: 248¡V249.
    Rohling, E., M. Fenton, et al. (1998). "Magnitudes of sea-level lowstands of the past 500,000 years." Nature 394(6689): 162-165.
    Schlotterer, C. (2002). "A microsatellite-based multilocus screen for the identification of local selective sweeps." Genetics 160(2): 753.
    Schlotterer, C. and D. Dieringer (2005). "A novel test statistic for the identification of local selective sweeps based on microsatellite gene diversity." Selective Sweep: 55-64.
    Siame, L., H. Chu, et al. (2007). "Glacial retreat history of Nanhuta Shan (north-east Taiwan) from preserved glacial features: the cosmic ray exposure perspective." Quaternary Science Reviews 26(17-18): 2185-2200.
    Slatkin, M. (1995). "A measure of population subdivision based on microsatellite allele frequencies." Genetics 139(1): 457.
    Smith, B. (2005). "Bayesian output analysis program (BOA) for MCMC." R package version 1: 5-2.
    Smulders, M., M. Cobben, et al. (2009). "Landscape genetics of fragmented forests: anticipating climate change by facilitating migration." iForest-Biogeosciences and Forestry 2(1): 128.
    Storz, J. and M. Beaumont (2002). "Testing for genetic evidence of population expansion and contraction: an empirical analysis of microsatellite DNA variation using a hierarchical Bayesian model." Evolution 56(1): 154-166.
    STOUT, J. (2007). "Reproductive biology of the invasive exotic shrub, Rhododendron ponticum L.(Ericaceae)." Botanical Journal of the Linnean Society 155(3): 373-381.
    Tan, X., Y. Li, et al. (2009). "Development and characterization of eight polymorphic microsatellites for Rhododendron simsii Planch (Ericaceae)." Conservation Genetics 10(5): 1553-1555.
    Tsai, C., S. Huang, et al. (2003). "Genetic relationships of Rhododendron (Ericaceae) in Taiwan based on the sequence of the internal transcribed spacer of ribosomal DNA." Journal of Horticultural Science and Biotechnology 78(2): 234-240.
    Tsakas, S. and C. Krimbas (1976). "Testing the heterogeneity of F values: a suggestion and a correction." Genetics 84(2): 399.
    Tsukada, M. (1966). "Late Pleistocene vegetation and climate in Taiwan (Formosa)." Proceedings of the National Academy of Sciences of the United States of America 55(3): 543.
    van Oosterhout, C., W. Hutchinson, et al. (2004). "MICRO-CHECKER: software for identifying and correcting genotyping errors in microsatellite data." Molecular Ecology Notes 4(3): 535-538.
    Vierling, L. (1998). "Palynological Evidence for Late-and Postglacial Environmental Change in Central Colorado* 1." Quaternary Research 49(2): 222-232.
    Vitalis, R., K. Dawson, et al. (2001). "Interpretation of variation across marker loci as evidence of selection." Genetics 158(4): 1811.
    Weir, B. and C. Cockerham (1984). "Estimating F-statistics for the analysis of population structure." Evolution 38(6): 1358-1370.
    Wilson, G. and B. Rannala (2003). "Bayesian inference of recent migration rates using multilocus genotypes." Genetics 163(3): 1177.
    Wu, M., T. Lin, et al. (2007). "Divergent evolution of the chloroplast small heat shock protein gene in the genera Rhododendron (Ericaceae) and Machilus (Lauraceae)." Annals of botany 99(3): 461.
    Young, A., T. Boyle, et al. (1996). "The population genetic consequences of habitat fragmentation for plants." Trends in Ecology & Evolution 11(10): 413-418.

    下載圖示
    QR CODE