Genetic variation and differentiation in populations of a threatened tree, Magnolia stellata: factors influencing the level of within-population genetic variation

被引:0
作者
I Tamaki
S Setsuko
N Tomaru
机构
[1] Laboratory of Forest Ecology and Physiology,
[2] Graduate School of Bioagricultural Sciences,undefined
[3] Nagoya University,undefined
来源
Heredity | 2008年 / 100卷
关键词
conservation; genetic diversity; isolation; Magnoliaceae; metapopulation; population size;
D O I
暂无
中图分类号
学科分类号
摘要
Genetic variation and differentiation in Magnolia stellata were studied in 20 populations distributed across most of the species' range using 10 microsatellite markers, and the factors influencing their levels of within-population genetic variation were examined. Generally, populations distributed intermittently from southern Gifu to central Aichi Prefectures showed substantially higher levels of genetic variation (exceptions included populations located at unusually high altitude sites or western and southern edges of the range) than more isolated populations on the Atsumi Peninsula of southern Aichi Prefecture and in northern Mie Prefecture. Significant isolation-by-distance patterns were detected in genetic differentiation among the studied populations, and a neighbor-joining tree based on DA distances among the populations reflected well the geographical positions of the populations. The level of within-population genetic variation was significantly influenced not only by the size of the populations (represented by the number of reproductive individuals) but also by their degree of isolation (represented by the number of populations within a radius of 0.5 km around them). Therefore, areas within radii of 0.5 km may encompass M. stellata metapopulations, in which gene flow may usually occur. We suggest that this area may be a suitable standard for constructing conservation units for the species.
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页码:415 / 423
页数:8
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共 85 条
  • [1] Cruzan MB(2001)Population size and fragmentation thresholds for the maintenance of genetic diversity in the herbaceous endemic Evolution 55 1569-1580
  • [2] El Mousadik A(1996) (Lamiaceae) Theor Appl Genet 92 832-839
  • [3] Petit RJ(1993)High level of genetic differentiation for allelic richness among populations of the argan tree [ Annu Rev Ecol Syst 24 217-242
  • [4] Ellstrand NC(2005) (L.) Skeels] endemic to Morocco Biol Conserv 126 131-140
  • [5] Elam DR(2005)Population genetic consequences of small population size: implications for plant conservation Mol Ecol 14 991-1000
  • [6] Frankham R(2005)Genetics and extinction Mol Ecol 14 4287-4297
  • [7] Galeuchet DJ(1998)Microsatellite variation and structure of 28 populations of the common wetland plant, J Phytogeogr Taxonomy 46 205-209
  • [8] Perret C(1996) L. in a fragmented landscape Genetics 144 1933-1940
  • [9] Fischer M(2005)Microsatellite variation within and among populations of Evolution 59 1633-1638
  • [10] Gao LZ(2007) (Poaceae), an endangered wild rice from China Biol Conserv 136 315-323