首页> 外文期刊>Molecular biotechnology >Culture-induced variation in plants of coffea arabica cv. caturra rojo, regenerated by direct and indirect somatic embryogenesis ACulture induced variation in plants of coffea arabica cv caturra rojo regenerated by direct and indirect somatic embry
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Culture-induced variation in plants of coffea arabica cv. caturra rojo, regenerated by direct and indirect somatic embryogenesis ACulture induced variation in plants of coffea arabica cv caturra rojo regenerated by direct and indirect somatic embry

机译:培养诱导的阿拉伯咖啡植物变异。通过直接和间接的体细胞胚发生再生的caturra rojo ACulture诱导的通过直接和间接的体细胞胚再生的阿拉伯咖啡cv caturra rojo的变异

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摘要

Amplified fragmentlength polymorphism (AFLP) was used to evaluate the stability of DNA in regenerated plantlets of Coffea arabica obtained by direct (DSE) and indirect somatic embryogenesis (ISE). Cluster analysis using the unweighted pair-group method (UPGMA), showed no specific grouping pattern related to the type of embryogenesis. These results suggest that the somatic embryogenesis (SE) process has a mechanism for the selection of normal and competent cells. Bulked DNA from regenerated plants obtained by DSE and ISE, and from the mother plants, was used to characterize specific AFLP fragments associated with each SE process. Twenty-three primer combinations were tested. A total of 1446 bands were analyzed, with 11.4% being polymorphic and 84% being specific for regenerated plants. Furtermore, specific bands were detected for DSE, ISE, and the mother plants These results indicate that the SE process induces rearrangements at the DNA level and demonstrates discrepancies between the mechanisms involved in each SE process. Coffea arabica breeding programs that involve DSE and ISE can use AFLP as an additional tool for assessing DNA stability.
机译:扩增片段长度多态性(AFLP)用于评估通过直接(DSE)和间接体细胞胚发生(ISE)获得的阿拉伯咖啡再生植株中DNA的稳定性。使用非加权成对分组法(UPGMA)进行的聚类分析显示,没有与胚胎发生类型相关的特定分组模式。这些结果表明,体细胞胚发生(SE)过程具有正常和感受态细胞选择的机制。通过DSE和ISE获得的再生植物以及来自母本植物的大体积DNA用于表征与每个SE过程相关的特定AFLP片段。测试了二十三个引物组合。总共分析了1446个条带,其中11.4%为多态性,而84%为再生植物特异。此外,检测到DSE,ISE和母本植物的特异性条带。这些结果表明SE过程在DNA水平上诱导了重排,并证明了每个SE过程涉及的机制之间存在差异。涉及DSE和ISE的阿拉伯咖啡育种计划可以使用AFLP作为评估DNA稳定性的附加工具。

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