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Genetic Diversity of Introduced Accessions of Four Species of Banksia (Proteaceae) as Revealed by RAPDs and TBP Markers

机译:RAPDs和TBP标记显示的四种山龙眼(Proteaceae)引种的遗传多样性

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A population of several Banksia species, mainly B. ashbyi, B. integrifolia, B. praemorsa and B. prionotes propagated by seed was characterized at the Estacion Experimental Agraria de Elche (IVIA), Spain. Considerable levels of morphological variability were observed, especially in relation to their adaptation to the local alkaline soils. Since selection and breeding is difficult due to the long growing cycle of this perennial shrub, it would be desirable to use molecular markers in order to estimate genetic diversity. Thirty well adapted 12-year-old individuals were selected namely, ten individuals of B. integrifolia, ten of B. prionotes, five of B. ashbyi and five of B. praemorsa respectively. In addition, eight young plants that originated from seed of a single 12-year-old B. integrifolia plant were also analyzed to evaluate the genetic diversity within the offspring of a single plant. The well known RAPD technique and another marker technique based on tubulin polymorphism (TBP) were used. Genetic diversity was detected in the individuals analyzed, even though these individuals had been previously selected for their adaptive ability to local conditions. Interestingly, edaphic conditions of the experimental site where the plants have been cultivated for 12 years were considered not very suitable for Banksia species. However, apparently enough variability seemed to be present to guarantee that genetic selection is possible.CT 28th International Horticultural Congress on Science and Horticulture for People (IHC) / International Symposium on Greenhouse and Soilless Cultivation / International Symposium on Advances in Ornamentals, Landscape and Urban HorticultureCY AUG 22-27, 2010CL Lisbon, PORTUGALSP Int Soc Hort Sci (ISHS)
机译:西班牙的Estacion Experiment Agraria de Elche(IVIA)鉴定了几种班克西亚种的种群,主要是通过种子繁殖的ashbyi,B。integrifolia,B。praemorsa和B. prionotes。观察到相当大的形态变异性,特别是与它们对当地碱性土壤​​的适应性有关。由于该多年生灌木的生长周期长,因此选择和育种很困难,因此希望使用分子标记来估计遗传多样性。选择了三十个适应性良好的12岁个体,分别为十个整枝青麦芽孢杆菌,十个野生芽孢杆菌,五个阿什比假单胞菌和五个B.praemorsa。此外,还分析了八株源自单株12岁整叶连翘植物种子的幼株,以评估单株植物后代的遗传多样性。使用了众所周知的RAPD技术和另一种基于微管蛋白多态性(TBP)的标记技术。即使在分析个体中检测到了遗传多样性,尽管这些个体先前因其对当地条件的适应能力而被选中。有趣的是,已经将植物培养了12年的实验点的土壤条件并不适合山龙眼物种。但是,显然存在足够的变异性,以保证可以进行遗传选择。CT第28届国际人类科学和园艺园艺大会(IHC)/国际温室和无土栽培研讨会/国际观赏,景观和城市发展研讨会园艺2010年8月22-27日,葡萄牙里斯本里斯本CL国际文化学院(ISHS)

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