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南方红豆杉迁地保护小种群适应性进化机制研究 被引量:1

Adaptation Evolutionary Mechanism of Ex-situ Conserved Small Population of Taxus wallichiana var.mairei
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摘要 为了解南方红豆杉迁地保护种群的适应性进化机制,以南京中山植物园内南方红豆杉迁地保护栽培种群和扩散的衍生种群为材料,以引种初始地江西野生种群为对照,对南方红豆杉群落的结构、遗传多样性及遗传结构进行分析和研究。结果表明,南方红豆杉野生种群和迁地保护种群均维持着较高水平的遗传多样性,其中野生种群遗传多样性稍高于迁地保护小种群,但迁地保护种群中南方红豆杉个体密度大于野生种群。同时,种群内的遗传变异所占比例大于种群间的。整体来看,南方红豆杉迁地保护种群还处于演替早期,存在不明显的奠基者效应,有进一步演替发展的可能。 To explore the adaptation mechanism of ex-situ conserved population of Taxus wallichiana var. mairei, the community structure, genetic diversity and genetic structure of ex-situ conserved population as well as its derived populations in Nanjing Botanical Garden were studied with the wild populations in northwestern Jiangxi as control. The results showed that both the wild populations and ex-situ conserved populations maintained high genetic diversity, and the genetic diversity of the wild populations was a little higher than that of the small ex-situ conserved populations, but individual density in ex-situ conserved populations was higher than that of wild populations. At same time, the genetic variation within population was bigger than that between populations. In whole, ex-situ populations, showing unconspicuous founder effect, are still in the early succession and has potential to further development.
出处 《热带亚热带植物学报》 CAS CSCD 北大核心 2014年第5期471-478,共8页 Journal of Tropical and Subtropical Botany
基金 中国科学院知识创新工程重要方向项目(KSCX2-YW-Z-0921) 江苏省科技公共服务平台项目(BM2012058)资助
关键词 南方红豆杉 迁地保护种群 野生种群 ISSR 遗传多样性 遗传结构 Taxus wallichiana var.mairei Ex-situ conserved population Wild population ISSR Genetic diversity Genetic structure
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  • 1Paschkel M, Abs C, Schmid B. Relationship between populationsize, allozyme variation, and plant performance in the narrowendemic Cochleria babarica [J]. Conserv Genet, 2002, 3(2): 131–144.
  • 2Reed D H, Frankham R. Correlation between fitness and geneticdiversity [J]. Conserv Biol, 2003, 17(1): 230–237.
  • 3Gienapp P, Teplitsky C, Alho J S, et al. Climate change and evolution:Disentangling environmental and genetic responses [J]. Mol Ecol,2008, 17(1): 167–178.
  • 4Heath D D, Heath J W, Bryden C A, et al. Rapid evolution of eggsize in captive salmon [J]. Science, 2003, 299(5613): 1738–1740.
  • 5康明,叶其刚,黄宏文.植物迁地保护中的遗传风险[J].遗传,2005,27(1):160-166. 被引量:29
  • 6李新华,贺善安,盛宁.红豆杉迁地保护中天然种群的形成[J].植物资源与环境,1999,8(1):38-41. 被引量:21
  • 7贺善安,李新华,彭峰,盛宁,於虹,顾姻.南方红豆杉迁地保护小种群动态的研究[J].植物资源与环境学报,2007,16(1):35-39. 被引量:7
  • 8Franklin I A. Evolutionary change in small populations [M]//Soule M E, Wilcox B A. Conservation Biology: An EvolutionaryEcological Perspective. Sunderland, Massachusetts: SinauerAssociates, 1980: 135–150.
  • 9刘惠芬,高玉葆,阮维斌,陈磊,李长林,赵念席,王丹.内蒙古中东部不同草原地带羊草种群遗传分化[J].生态学报,2004,24(10):2157-2164. 被引量:15
  • 10Nei M. Estimation of average heterozygosity and genetic distancefrom a small number of individuals [J]. Genetics, 1978, 89(3):583–590.

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