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作 者:郁万文[1] 刘新亮[1] 曹福亮[1] 汪贵斌[1] 张往祥[1]
机构地区:[1]南京林业大学森林资源与环境学院,南京210037
出 处:《植物学报》2014年第3期292-305,共14页Chinese Bulletin of Botany
基 金:国家自然科学基金(No.31170627);江苏省自然科学基金(No.BK2010019);林业公益性行业专项(No.20120460102);"十二五"国家科技支撑项目(No.2012BAD-21B04)
摘 要:运用HPLC技术分析了54个银杏(Ginkgo biloba)无性系叶总黄酮和萜内酯及其组分含量的差异,并进行了聚类。结果表明,银杏无性系间叶中总黄酮、萜内酯及其组分含量存在遗传变异,且萜内酯及其组分含量的变异系数明显高于总黄酮及其组分。总黄酮含量较高的无性系有18、42、32和50号,其槲皮素、异鼠李素、山奈酚含量均较高。萜内酯含量较高的无性系为13、42、33、51和65号,其银杏内酯A(GA)、银杏内酯B(GB)、银杏内酯C(GC)及白果内酯(BB)含量均较高。通过对总黄酮-萜内酯进行联合复选,显示叶中总黄酮和萜内酯含量均较高的无性系为13、65、33、51、18、32和42号。这些无性系可通过嫁接、扦插直接在银杏采叶园进行推广种植,或作为叶用银杏新品种的育种材料。We examined differences in contents of tlavonoids and terpene lactones, and their individual components in leaves of 54 ginkgo clones by high-performance liquid chromatography. We further analyzed the clusters of these ginkgo clones on the basis of the main medicinal components. We detected genetic variations among the ginkgo clones in terms of total flavonoids, terpene lactones, and their components. Furthermore, the variation coefficients were higher for components of terpene lactones than total flavonoids. We selected ginkgo clones with serial number 18, 42, 32, 50 on the basis of total flavonoid content and found increased content of quercetin, isorhamnetin, and kaempferol. Likewise, the content of terpene lactones (including ginkgolide A, ginkgolide B, ginkgolide C and bilobalide) was increased in clones with serial numbers 13, 42, 33, 51 and 65. From a comprehensive consideration of the components of clone leaves, clones with serial numbers 13, 65, 33, 51, 18, 32 and 42 could be popularized for planting for leaf use by grafting and cuttage or could be selected as breeding material for new ginkgo varieties used for their leaves.
分 类 号:S792.95[农业科学—林木遗传育种]
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