首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Association between chemical and genetic variation of wild and cultivated populations of Scrophularia ningpoensis Hemsl.
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Association between chemical and genetic variation of wild and cultivated populations of Scrophularia ningpoensis Hemsl.

机译:玄参野生和栽培种群化学和遗传变异之间的关联。

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摘要

Scrophularia ningpoensis Hemsl. is an important Chinese medicinal herb with a domestication history of more than one thousand years. Although a number of studies have focused on either chemical or genetic variation, none have dealt with their association to discuss the formation of chemical diversity. We applied HPLC fingerprinting with identification of four predominant bioactive compounds using LC-ESI-MS to assess chemical variation among 6 cultivated and 5 wild populations of S. ningpoensis. Significant chemical differences were revealed between wild and cultivated populations in terms of chromatographic profiles, principal component analysis (PCA) plots, and bioactive compounds contents. Compared to cultivated populations, the chemical profiles varied considerably among wild populations, of which some were remarkably similar to cultivated populations. Inter simple sequence repeats (ISSR) fingerprinting indicated a genetic differentiation pattern parallel to chemical variation. Evidence strongly supported the association between chemical and genetic variation of S. ningpoensis. Based on both sets of data, suggestions are proposed for the conservation of genetic diversity, crop improvement, and good agricultural practice. The present results will also facilitate our theoretical understanding of the selective and adaptive evolutionary processes of medicinal plant species impacted by domestication and a changing environment.
机译:玄参玄参是一种重要的中草药,具有一千多年的驯化历史。尽管许多研究都集中在化学或遗传变异上,但都没有涉及它们之间的联系以讨论化学多样性的形成。我们使用HPLC指纹图谱,使用LC-ESI-MS鉴定了四个主要生物活性化合物,以评估6个耕种和5个野生沙门氏菌种群之间的化学变异。在色谱图谱,主成分分析(PCA)图和生物活性化合物含量方面,野生和栽培种群之间存在显着的化学差异。与耕种种群相比,野生种群之间的化学特征差异很大,其中一些与耕种种群极为相似。间简单序列重复(ISSR)指纹表明与化学变异平行的遗传分化模式。证据有力地支持了宁波链霉菌的化学和遗传变异之间的联系。根据这两组数据,提出了有关遗传多样性保护,作物改良和良好农业规范的建议。目前的结果也将有助于我们对受驯化和环境变化影响的药用植物的选择性和适应性进化过程的理论理解。

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