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微卫星在道地药材群体遗传学研究中的应用与展望

Keywords: 微卫星,群体遗传学,道地药材,遗传成因,栽培起源,产地鉴别

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Abstract:

作者介绍了微卫星和群体遗传学的基本概念和其特点,阐述了微卫星在群体遗传学中对于居群的遗传结构和遗传多样性研究、基因流分析和进化显著单元ESU的划分研究应用,探讨了微卫星引入群体遗传学在道地药材遗传成因、栽培起源和产地鉴别等方面的应用前景,旨在为道地药材的研究提供了新的理论和方法。

References

[1]  Gaudeul M, Taberlet P, Till-Bottraud I. Introduction to conservation gentics[M]. UK: Cambrige University Press, 2002.
[2]  李建辉, 金则新, 楼文燕, 等. 东南石栎种群在演替系列群落中的遗传多样性[J].生态学杂志, 2007, 26: 169.
[3]  Ledig F T, M T Conkle. Gene diversity, genetic stucture in a narrow endemie, Torrey pine[J]. Evolution, 1983, 37: 79.
[4]  Gustafsson S. Patterns of genetic variation in Gymnadenia conopsea, the fragrant orchid[J]. Mol Ecol, 2000, 9: 1863.
[5]  徐立安, 李新军, 潘惠新, 等. 用SSR研究栲树群体遗传结构[J].植物学报, 2001, 43 (4): 409.
[6]  Rajora O P, Rahman M H, Buchert G P, et al. Microsatellite DNA analysis of genetic effects of harvesting in old-growth eastern white pine (Pinus strobus) in Ontario, Canada[J]. Mol Ecol, 2000, 9: 339.
[7]  Cole C T, Biesboer D D, Monomorphism, reduced gene flow, and cleistogamy in rare and common species of Lespedeza (Fabaceae)[J]. Am J Bot, 1992, 79: 567.
[8]  Loveless M D, Hamerick J L, Ecological determinants of genetic structure in plant populations[J]. Annu Rev Ecol Syst, 1984, 15: 65.
[9]  Schaal B A, Measurememt of gene flow in Lupinus texensis[J]. Nature, 1980, 284: 450.
[10]  Steiff R, A Ducousso, C Lexer, et al. Pollen dispersal inferred from paternity analysis in a mixed stand of Quercus robur L. and Quercu petraea (Matt.) Liebl[J]. Mol Ecol, 1999, 8: 831.
[11]  陈小勇, 自然植物种群的亲本分析及其在生态学研究中的应用[J]. 生态学杂志, 1999, 2: 30.
[12]  Kameyama Y, Y Isagi, N Nakagoshi. Pattems and levels of gene flow in Rhododendron metternichⅡ var. hondoense revealed by microsatellite analysis[J]. Mol Ecol, 2001, 10: 205.
[13]  Konuma A, Y Tsumura, C T Lee. Estimation of gene flow in the tropical-rainforest tree Neobalan ocarpus heimⅡ (Dipetrocarpaceae), inferred from paternity analysis[J]. Mol Ecol, 2000, 9: 1843.
[14]  Moritz C, Defining "evolutionarily significant units" for conservation[J]. Trends Ecol Evol, 1994, 9: 373.
[15]  Ueno S, Tomaru N, Yoshimaru H, et al. Genetic structure of Camellia japonica L. in an old-growth evergreen forest, Tsushima, Japan[J]. Mol Ecol, 2000, 9:647.
[16]  Collevatti R G, Grattapaglia D, Hay J D et al. Population genetic structure of the endangered tropical tree species Caryocar brasiliense, based on variability at microsatellite loci[J]. Mol Ecol, 2001, 10: 349.
[17]  谢宗万.论道地药材[J].中医杂志,1990,40(10): 43.
[18]  黄璐琦,张瑞贤."道地药材"的生物学探讨[J].中国药学杂志,1997,32(9):563.
[19]  黄璐琦,郭兰萍,胡娟,等.道地药材形成的分子机制及其遗传基础[J].中国中药杂志,2008,33(20): 2303.
[20]  黄璐琦,陈美兰,肖培根.中药材道地性研究的现代生物学基础及模式假说[J].中国中药杂志,2004,29(6):494.
[21]  Beckman J S, J L Weber. Survey of human and rat microsatellite[J]. Genomics, 1992, 12: 627.
[22]  Lagdgerantz U, H Ellegren, L Andersson. The abumdance of varioous polymorphic microsatellite motifs differ between plants and vertebrate[J]. Nucleic Acids Res, 1993, 21: 1111.
[23]  Primmer C R, A P Meller, H Ellegen. A widerange survey of cross-species microsatellite amplification in birds[J]. Mol Ecol, 1996, 5: 365.
[24]  Estoup A, B Angers. Microsatellites and minisatellites for molecular ecology: theoretical and empirical considerations[M]//Carvalho G R. Advances in molecular ecology. Amsterdam: IOS Press, 1998:55.
[25]  Gupta P K, R K Varshney. The development and use of microsatellite markers for genetics analysis and plant breeding with emphasis on bread wheat[J]. Euphytica, 2000, 113: 163.
[26]  Luikart G, P R England. Statistical analysis of microsatellite DNA data[J]. Trends Ecol Evol, 1999, 14: 253.
[27]  Hamrick J L, Godt M J W. Effects of life history traits on genetic diversity in plant sepicies[J]. Philos Trans R Soc London, Ser B, 1989, 351: 1291.
[28]  Waits L P, G Luikart, P Taberlet. Estimating the probability identiy among genotyopes in natural populations: cautions and guidelines[J]. Mol Ecol, 2001, 10: 249.
[29]  Procaccini G, Orsini L, Ruggiero M V, et al. Spatial patterns of genetic diversity in Posidonia oceanica, an endemic Mediterranean seagrass[J]. Mol Ecol, 2001, 10: 1413.
[30]  Green J M, Barker J H A, Marshall E J P, et al. Microsatellite analysis of the inbreeding grass weed Barren Brome (Anisantha sterilis) reveals genetic diversity at the within and between farm scales[J]. Mol Ecol, 2001, 10:1035.
[31]  Beattie A. Plant-animal interactions affecting gene flow in Viola[M]// A J Richards. The pollination of flowers by insects[M]. London: Academic press, 1978:151.
[32]  Loiselle B A, Sork V L, Nason J et al. Spatial genetic structure of a tropical understory shrub, Psychotria officinalis (Rubiaceae)[J]. Am J Bot, 1995, 82: 1420.
[33]  Slatkin M. Gene flow and geographic strcuture of natural popultions[J]. Science, 1987, 236: 787.
[34]  Ryder O A. Species conservation and systematics: the dilemma of subspecies.[J]. Trends Ecol Evol, 1986, 1: 9.
[35]  胡志昂, 张亚平. 中国动植物的遗传多样性[M]. 杭州: 浙江科学技术出版社, 1997.
[36]  赵永聚. 动物遗传资源保护概论[M]. 重庆:西南师范大学出版社, 2007.
[37]  袁庆军. 十齿花谱系地理学和保护遗传学研究[D]. 昆明:中国科学院昆明植物研究所, 2006.
[38]  Chen F J, Wang A L, Chen K M. Genetic diversity and population structure of the endangered and medically important(Polygonaceae) revealed by SSR markers[J]. Biochem Syst Ecol, 2009 (37): 613.
[39]  肖冬长,张智俊,管雨,等.铁皮石斛微卫星SSR设计与应用[J].生物技术通报,2012,7: 88.
[40]  郭银萍,彭忠华,赵致,等.基于SSR标记的贵州薏苡种质资源遗传多样性分析[J].植物遗传资源学报,2012,13(2): 317.
[41]  闫伯前, 王艇, 胡理乐. 药用植物华中五味子的种群遲佡奮栠恇匠遆伮縠杖ariat畩息孮朠彷ithin and among the chloropla陳孴映ge呮敯業es稠良f 笼em弾卍晥桬譡坬乥卵呣襡洠卡鉬剴乥癲幩畦olia夼支孥扭> and M. linarifolia (Myrtaceae)[J]. P Syst Evol, 1995, 194: 69.
[42]  Byrne M, Moran G F. Population divergence in the chloroplast genome of Eucalyptus nitens [J]. Heredity, 1994, 73: 18.
[43]  Yuan Q 佊瘬贠Zh衡幮內 Z朠湙, 筈ua卮杧丠兌匠卑本缠佥遴传孡硬種 Impa乣噴乳茠杯彦 recent cultivation on genetic diversity pattern of a medicinal plant, Scutellaria baicalensis (Lamiaceae)[J]. BMC Genetics, 2010, 11:29.Asclepias exaliata[J]. Syst Bot, 1993, 18:18.
[44]  Krauss S L. Restricted gene flow within the morphologically complex species Persoonia mollis (Proteaceae): contrasting evidence from the mation system and pollen dispersal[J]. Heredity, 1994, 73: 142.
[45]  Wright S. Evolution in Mendelian population[J]. Genetics, 1931, 16: 97.
[46]  邹喻萍, 葛颂, 王晓东.系统与进化植物学中的分子标记[M].北京:科学出版社, 2001:1.
[47]  Ashey M V, B D Dow. The use of microsatellite analysis in population biology: backgroud, methods and potential application[M]//Schierwater B, B Streit, G P Wagner, et al. Molecular ecology and evolution: approaches and applications. Switzeland: Birkauser Verlag Basel, 1994:185.
[48]  Fisher R A.The genetical theory of natural selection[M]. New York: Clarendon press, Oxford, 1930.
[49]  Altieri M A, Merrick L C. In situ conservation of crop genetic resouces through maintenance of traditional farming systemas[J]. Eco Bot, 1987, 41:86.
[50]  Miller A, Schaal B. Domestication of a Mesoamerican cultivated fruit tree, Spondias purpurea[J]. Proc Natl Acad Sci USA, 2005, 102:12801.
[51]  Schippmann U, Leaman D J, Cunningham A B. Impact of cultivation and gathering of medicinal plants on biodiversity: global trends and issues[M]// Biodiversity and the ecosystem approach in agriculture, forestry and fisheries. Rome: United Nations Food and Agriculture Organization, 2002.
[52]  Anon. Conservation impacts of commercial captive breeding workshop[M]. Cambridge: IUCN/SSC Wildlife Trade Programme, 2002.
[53]  Doebley J F, Gaut B S, Smith B D. The molecular genetics of crop domestication[J]. Cell, 2006, 127:1309.
[54]  Lefèvre F. Human impacts on forest genetic resources in the temperate zone: an updated review[J]. Forest Ecol Manag, 2004, 197:257.
[55]  McKay J K, Christian C E, Harrison S et al. "How local is local?" A review of practical and conceptual issues in the genetics of restoration[J]. Restor Ecol, 2005, 13:432.
[56]  Muller M H, Poncet C, Prosperi J M, et al. Domestication history in the Medicago sativa species complex:inferences from nuclear sequence polymorphism[J]. Mol Ecol, 2006, 15:1589.
[57]  Sang T, Ge S. The puzzle of rice domestication[J]. J Integr Plant Biol, 2007, 49:760.
[58]  Darwin C. The Variation of animals and plants under domestication[M]. New York: Appleton D& Co, 1883.
[59]  Frankel O H, Brown A H D, Burdon J J. The conservation of plant biodiversity[M]. Cambridge: Cambridge university press, 1995.
[60]  Paterson A H. What has QTL mapping taught us about plant domestication?[J]. New Phytologist, 2002, 154:591.
[61]  Ellstrand N C. Dangerous liaisons, when cultivated plants mate with their wild relatives?[M]. Baltimore: John Hopkins University Press, 2003.
[62]  Tenaillon M I, U\' Ren J, Tenaillon O, et al. Selection versus demography: a multilocus investigation of the domestication process in maize[J]. Mol Biol Evol, 2004, 21:1214.
[63]  Hey J, Nielsen R. Multilocus methods for estimating population sizes, migration rates and divergence time, with applications to the divergence of Drosophila pseudoobscura and D. persimilis[J]. Genetics, 2004, 167:747.
[64]  Hyten D L, Song Q J, Zhu Y L, et al. Cregan PB: impacts of genetic bottlenecks on soybean genome diversity[J]. Proc Natl Acad Sci USA, 2006, 103:16666.
[65]  Londo J P, Chiang Y C, Hung K H, et al. Phylogeography of Asian wild rice, Oryza rufipogon, reveals multiple independent domestications of cultivated rice, Oryza sativa[J]. Proc Natl Acad Sci USA, 2006, 103:9578.
[66]  Whitt S R, Wilson L M, Tenaillon M I, et al. Genetic diversity and selection in the maize starch pathway[J]. Proc Natl Acad Sci USA, 2002, 99:12959.
[67]  肖小河,陈士林,黄璐琦,等.中国道地药材研究20年概论[J].中国中药杂志,2009,34(5): 519.
[68]  张彬. 当归属药用植物及药材的DNA条形码鉴别研究——兼论DNA条形码在中药材鉴定中的原则研究[D]. 北京:中国中医科学院, 2012.
[69]  Butcher P A, Byrne M, Mo

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