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Use of Biotechnology for Preserving Rare Fruit Germplasm

机译:利用生物技术保存稀有种质资源

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摘要

The application of recent biotechnological tools for conservation of rare fruit species from developing countries, including in vitro and hydroponic culture protocols, improved propagation techniques and molecular marker application, is described. Promising propagation methods include forcing germination of seeds, in-vitro protocols well adapted to these rare fruit species that allow the introduction, micropropagation and rooting of plant material, and developing hydroponic culture protocols that allow the early propagation of high-risk genotypes. In addition, the growth of seedlings in controlled environmental conditions in greenhouse and cold chamber provides a useful strategy for obtaining vigorously growing plants from seeds year round. A standard karyotyping protocol has been described working in several species as preliminary tool to start molecular (DNA) studies. In addition, different protocols for DNA isolation and quantification have been assayed in these rare fruit species. Molecular markers based on PCR amplification of the DNA have also become an essential tool for the characterization and conservation of these species. Regarding this PCR amplification of the DNA, two main strategies, RAPD (if the DNA sequence is unknown) and SSR markers (if the DNA sequence is known), have been assayed. These markers have been applied in the genetic characterization of this germplasm, the establishment of genetic relationships between cultivars and species, and the future construction of genetic maps of these rare fruit species. Additional advantages encouraging the utilization of these new technologies in breeding programs include the high levels of synteny between genomes of related species, and a well-established international network of cooperation among researchers.
机译:描述了用于保护发展中国家稀有水果物种的最新生物技术工具的应用,包括体外和水培培养规程,改进的繁殖技术和分子标记的应用。有前途的繁殖方法包括强迫种子发芽,非常适合于这些稀有水果物种的体外实验方案,使它们可以引入植物,进行微繁殖和生根,以及开发水培培养方案,以使高风险基因型尽早繁殖。另外,在温室和冷室中受控环境条件下幼苗的生长为从种子全年获得有力生长的植物提供了有用的策略。已经描述了在多个物种中工作的标准核型分析规程,作为开始分子(DNA)研究的初步工具。此外,在这些稀有水果中还检测了不同的DNA分离和定量方法。基于DNA的PCR扩增的分子标记也已成为表征和保护这些物种的重要工具。关于该DNA的PCR扩增,已经测定了两种主要策略,即RAPD(如果DNA序列未知)和SSR标记(如果DNA序列已知)。这些标记已应用于该种质的遗传表征,品种和物种之间的遗传关系的建立以及这些稀有水果物种的遗传图谱的未来构建。鼓励在育种计划中利用这些新技术的其他优点包括相关物种基因组之间的高度同义性,以及研究人员之间建立的完善的国际合作网络。

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