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加利福尼亚白山地区长叶松(松科)在同工酶和 RAPD 标记处的遗传变异。

Genetic variation at allozyme and RAPD markers in Pinus longaeva (Pinaceae) of the White Mountains, California.

机构信息

Institute of Forest Genetics, Pacific Southwest Research Station, USDA Forest Service, 2480 Carson Road, Placerville, California 95667 USA.

出版信息

Am J Bot. 2002 Apr;89(4):566-77. doi: 10.3732/ajb.89.4.566.

DOI:10.3732/ajb.89.4.566
PMID:21665657
Abstract

We compared genetic diversity estimated from allozymes and from random amplified polymorphic DNA (RAPDs) in a sample of 210 Great Basin bristlecone pines (Pinus longaeva Bailey) from three groves in the White Mountains, California, USA. The White Mountains are the most westerly extension of bristlecone pine and home to the oldest known living trees. We assayed two forks of each tree to determine whether they originated from multiple seed caches of the Clark's nutcracker. Despite the limited and fragmented distribution of bristlecone pine, its level of genetic diversity was comparable to that of other pines, but lower than that reported for eastern populations of Great Basin bristlecone pine. Twenty-six of 36 allozymes were polymorphic (p(95) = 38.9%; p = 63.0%), with observed heterozygosity (H(o)) of 0.122 and expected heterozygosity (H(e)) of 0.134. The proportion of the total variation among populations (G(ST)) was only 0.011. The high proportion of trees with multiple stems was not due to germination in seed caches; only six of 210 forked trees had multiple allozyme genotypes. Of the 42 RAPD loci scored, 27 were monomorphic. Genetic diversity for RAPDs was nearly the same as that for allozymes (p(95) = 34.1%, H(e) = 0.130). However, the estimates of diversity and differentiation were much higher (H(e) = 0.321, G(ST) = 0.039) after excluding monomorphic loci.

摘要

我们比较了来自美国加利福尼亚州白山三个树林的 210 株大盆地刺柏(Pinus longaeva Bailey)的等位基因和随机扩增多态性 DNA(RAPD)估算的遗传多样性。白山是最西部的刺柏延伸地,也是已知最古老的活树所在地。我们对每棵树的两个叉子进行了检测,以确定它们是否来自于花栗鼠的多个种子库。尽管刺柏的分布有限且分散,但它的遗传多样性水平与其他松树相当,但低于大盆地东部刺柏种群的报告水平。36 个等位基因中有 26 个(p(95) = 38.9%;p = 63.0%)是多态的,观察到的杂合度(H(o)为 0.122,预期杂合度(H(e)为 0.134。种群间总变异的比例(G(ST)仅为 0.011。具有多个茎的树木比例很高不是由于种子库中的萌发造成的;210 棵叉树中只有 6 棵具有多个等位酶基因型。在 42 个 RAPD 位点中,有 27 个是单态的。RAPD 的遗传多样性与等位基因相似(p(95) = 34.1%,H(e) = 0.130)。然而,在排除单态性位点后,多样性和分化的估计值要高得多(H(e) = 0.321,G(ST) = 0.039)。

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