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中国传统药用植物凹叶厚朴(木兰科)野生和栽培种群的种群结构及遗传多样性分布

Population structure and genetic diversity distribution in wild and cultivated populations of the traditional Chinese medicinal plant Magnolia officinalis subsp. biloba (Magnoliaceae).

作者信息

He Jingsheng, Chen Ling, Si Ying, Huang Bo, Ban Xiaoquan, Wang Youwei

机构信息

Wuhan Botanical Garden, The Chinese Academy of Sciences, Wuhan, 430074, People's Republic of China.

出版信息

Genetica. 2009 Mar;135(2):233-43. doi: 10.1007/s10709-008-9272-8. Epub 2008 May 26.

Abstract

Magnolia officinalis subsp. biloba, a traditional Chinese medicinal plant, experienced severe declines in the number of populations and the number of individuals in the late 20th century due to the widespread harvest of the subspecies. A large-scale cultivation program was initiated and cultivated populations rapidly recovered the loss in individual plant numbers, but wild populations remained small as a consequence of cutting. In this study, the levels of genetic variation and genetic structure of seven wild populations and five domestic populations of M. officinalis subsp. biloba were estimated employing an AFLP methodology. The plant exhibited a relatively high level of intra-population genetic diversity (h = 0.208 and H(j) = 0.268). The cultivated populations maintained approximately 95% of the variation exhibited in wild populations, indicating a slight genetic bottleneck in the cultivated populations. The analysis of genetic differentiation revealed that most of the AFLP diversity resided within populations both for the wild group (78.22%) and the cultivated group (85.92%). Genetic differentiation among populations in the wild group was significant (F(ST) = 0.1092, P < 0.005), suggesting wild population level genetic structure. Principal coordinates analysis (PCO) did not discern among wild and cultivated populations, indicating that alleles from the wild population were maintained in the cultivated gene pool. Results from the present study provide important baseline data for effectively conserving the genetic resources of this medicinal subspecies.

摘要

凹叶厚朴是一种传统的中药材植物,在20世纪后期,由于该亚种的广泛采挖,其种群数量和个体数量急剧下降。随后启动了大规模种植计划,种植种群迅速恢复了个体数量的损失,但由于砍伐,野生种群仍然稀少。在本研究中,采用AFLP方法对7个野生种群和5个家养种群的凹叶厚朴的遗传变异水平和遗传结构进行了评估。该植物表现出相对较高的种群内遗传多样性(h = 0.208,H(j) = 0.268)。栽培种群保留了野生种群中约95%的变异,表明栽培种群存在轻微的遗传瓶颈。遗传分化分析表明,野生组(78.22%)和栽培组(85.92%)的大多数AFLP多样性都存在于种群内部。野生组种群间的遗传分化显著(F(ST) = 0.1092,P < 0.005),表明存在野生种群水平的遗传结构。主坐标分析(PCO)无法区分野生种群和栽培种群,这表明野生种群的等位基因保留在栽培基因库中。本研究结果为有效保护该药用亚种的遗传资源提供了重要的基础数据。

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