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首页> 外文期刊>Tree Genetics & Genomes >Ex situ conservation of underutilised fruit tree species: establishment of a core collection for Ficus carica L. using microsatellite markers (SSRs)
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Ex situ conservation of underutilised fruit tree species: establishment of a core collection for Ficus carica L. using microsatellite markers (SSRs)

机译:未充分利用的果树物种的非原生境保护:利用微卫星标记(SSR)建立无花果榕的核心种质

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摘要

Ex situ germ plasm collections of woody crops are necessary to ensure the optimal use of plant genetic resources. The fig tree (Ficus carica L.) germ plasm bank, consisting of 229 accessions, is located in Centro de Investigacin 'La Orden'. Despite great progress in conservation, ex situ collections face size and organization problems. Core collections obtained from structured samples of bigger collections are a useful tool to improve germ plasm management. In this work, we used simple sequence repeat (SSR) markers to establish a core collection in this underutilised Mediterranean fruit tree species. Four approaches have been carried out (random sampling, maximization, simulated annealing and stepwise clustering) to determine the best method to develop a core collection in this woody plant. The genetic diversity obtained with each subset was compared with that of the complete collection. It was found that the most efficient way to achieve the maximum diversity was the maximization strategy, which, with 30 accessions, recovers all the SSR alleles and does not show significant differences in allele frequency distribution in any of the loci or in the variability parameters (H (O), H (E)) between the whole and core collections. Thus, this core collection, a representative of most fig diversity conserved in the germ plasm bank, could be used as a basis for plant material exchange among researchers and breeders.
机译:木本作物的异地种质收集对于确保最佳利用植物遗传资源是必要的。无花果树(Ficus carica L.)种质库由229个种质组成,位于Investigacin'La Orden'中心。尽管在保护方面取得了很大进展,但非原生境收集品仍面临规模和组织问题。从较大集合的结构化样本中获取的核心集合是改善种质管理的有用工具。在这项工作中,我们使用简单的序列重复(SSR)标记来建立这种未充分利用的地中海果树物种的核心收藏。已经执行了四种方法(随机采样,最大化,模拟退火和逐步聚类),以确定在该木本植物中开发核心集合的最佳方法。将每个子集获得的遗传多样性与完整采集的遗传多样性进行比较。已发现实现最大多样性的最有效方法是最大化策略,该策略有30个登录项,可恢复所有SSR等位基因,并且在任何基因座或可变性参数中均未显示等位基因频率分布的显着差异(整个集合和核心集合之间的H(O),H(E))。因此,该核心种质是种质库中保存的大多数无花果多样性的代表,可以用作研究人员和育种人员之间植物材料交换的基础。

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