大蔓越莓自然居群的遗传变异。(杜鹃花科)

L. Bruederle, Michael S. Hugan, Jennifer M. Dignan, N. Vorsa, N. Vorsa
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引用次数: 26

摘要

1816年,大蔓越莓成为美国重要的区域性小水果作物。为了评估自然发生的大蔓越莓种群的遗传变异,在威斯康星州东至马萨诸塞州,南至特拉华州的十个地点进行了抽样。淀粉凝胶电泳和底物特异性染色技术被用于分析23个推测的孟德尔基因座。作为个体基因型收集的种群数据进行了分析,产生了种群结构和遗传多样性的度量。所有群体均表现出低水平的遗传变异,例如预期的杂合性(Hexp 0.00 + 0.002-0.057 + 0.030)。与其他植物物种相比,总遗传多样性极低(H, 0.048),大部分遗传变异是由于群体内个体间的差异造成的。Nei(1978)的遗传同一性范围为0.977 ~ 1,证实了这种遗传同质性。该分类单元进化史上最近发生的事件被认为对确定该物种的种群遗传结构起了重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic variation in natural populations of the large cranberry, Vaccinium macrocarpon Ait. (Ericaceae)'
1816, the large cranberry has become a regionally important small fruit crop in the United States. In order to assess genetic variation in naturally occurring populations of the large cranberry, sampling was conducted at ten sites distributed from Wisconsin east to Massachusetts, and south to Delaware. Starch gel electrophoresis and substrate-specific staining techniques were used to resolve 23 putative Mendelian loci. Population data collected as individual genotypes were analyzed, generating measures of population structure and genetic diversity. All populations were found to exhibit low levels of genetic variation, e.g., expected heterozygosity (Hexp 0.00 + 0.002-0.057 + 0.030). Relative to other plant species, total genetic diversity was extremely low (H, 0.048) with the majority of all genetic variation due to differences among individuals within populations. This genetic homogeneity was corroborated by Nei's (1978) genetic identity which ranged from 0.977 to one. Recent events in the evolutionary history of this taxon are proposed to have played an important role in determining population genetic structure in this species.
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