首页> 外文期刊>The Journal of Heredity >Fine-scale spatial genetic structure within continuous and fragmented Populations of Trillium camschatcense
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Fine-scale spatial genetic structure within continuous and fragmented Populations of Trillium camschatcense

机译:延龄草延龄草连续和零散种群的精细尺度空间遗传结构

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摘要

Spatial genetic structure (SGS) within populations was analyzed for the ling-lived understory perennial herb Trillium camschotcense using allozyme loci. We used Sp statistics to compare SGS between 2 life-history stages, juveniles (1) and reproductives (R), as well as between 2 populations, continuous and fragmented, with different habitat conditions, In the continuous population, significant SGS was detected in both stages but the extent was greatly reduced with the progress of the stage (J, Sp = 0.0475; R, Sp = 0.0053). We inferred that limited seed dispersal and subsequent random loss of individuals from the family patches are responsible for the J and R stage structures, respectively. The fragmented population differed in the patterns of SGS; significant structure was detected in the R stage, but not in the J stage (], Sp = 0.0021; R, Sp = 0.0165) despite significant positive inbreeding coefficients 01 F-IS = 0.25 1). The observed differences in the J-stage structures between populations may be explained by habitat fragmentation effects because reduced recruitment in the fragmented population prevents the development of maternal sibling cohort. Such comparative analysis between populations and life-history stages can be useful to understand the different underlying causes of SGS.
机译:使用同工酶基因座分析了生活在林下的多年生草本多年生延龄草延龄草的种群内部空间遗传结构(SGS)。我们使用Sp统计资料比较了两个生命历史阶段(未成年幼体(1)和生殖(R))以及两个具有连续生境条件的连续和零散种群之间的SGS,在连续种群中,在这两个阶段,但程度随该阶段的进展而大大降低(J,Sp = 0.0475; R,Sp = 0.0053)。我们推测,有限的种子散布和随后从家庭斑块中随机散失的个体分别负责J和R阶段的结构。零散的人群在SGS模式上有所不同;尽管近交系数显着为正(01 F-IS = 0.25 1),但在R阶段检测到显着的结构,但在J阶段未检测到(S = 0.0021; R,Sp = 0.0165)。观察到的种群之间J阶段结构的差异可以用栖息地破碎化效应来解释,因为在破碎化种群中减少的募集会阻止母亲同胞队列的发展。人群和生活史阶段之间的这种比较分析有助于理解SGS的不同根本原因。

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