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首页> 外文期刊>Acta Horticulturae >Molecular markers, clonal fidelity and antioxidant properties of micropropagated horticultural crops
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Molecular markers, clonal fidelity and antioxidant properties of micropropagated horticultural crops

机译:微鼠园艺作物的分子标记,克隆待遇和抗氧化特性

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In vitro propagation is practised all over the world and has now become a multibillion dollar industry for mass propagation of various plant species. The commercial use of micropagation represents one of the major success stories of utilizing tissue culture technology profitably. Fruits and vegetables contain relatively high levels of vitamin C, cellulose and pectin, and produce anthocyanins, which have important therapeutic values, including antitumor, antiulcer, antioxidant and antiinflammatory activities. Tremendous progress in plant tissue culture, resulting in great advances in micropropagation, has also occurred in various horticultural crops including berry crops. Although automation of micropropagation in bioreactors has been advanced as a possible way of reducing propagation cost, optimal plant production depends upon better understanding of physiological and biochemical responses of plant to the signals of culture microenvironment and an optimization of specific physical and chemical culture conditions to control the morphogenesis of plant species in liquid culture systems. With the advent of plant tissue culture techniques, it is extensively employed to multiply true-to-type plants rapidly which provides year around production. Somaclonal variation which can be genetic or epigenetic, affects the use of tissue culture propagation negatively, in general. Plant cells when cultured in artificial environment make numerous genetic alterations and aberrations. The introduction of molecular biology techniques, such as DNA-based markers, allows direct comparison of different genetic material independent of environmental influences. This review describes the progress in depth of morphological and chemical characterization of micropropagated horticultural crops. It also describes the use of molecular markers to address fundamental and practical questions of in vitro culture, and the employment of molecular markers for the assessment of genetic fidelity, uniformity, stability and true-to-typeness among donor and micropropagated horticultural plants.
机译:体外繁殖在世界各地实施,现在已成为各种植物物种的大规模繁殖的多亿美元产业。微挖掘的商业用途代表了利用组织培养技术的主要成功案例之一。水果和蔬菜含有相对高水平的维生素C,纤维素和果胶,并产生花青素,具有重要的治疗价值,包括抗肿瘤,抗燃烧剂,抗氧化剂和抗炎活动。植物组织培养的巨大进展,导致微扑通的巨大进步,也发生在包括浆果作物的各种园艺作物中。虽然生物反应器中微扑静脉的自动化作为降低传播成本的可能方法,但最佳的植物生产取决于更好地理解植物的生理和生化反应,尤其是培养微环境的信号和对特定的物理和化学培养条件的优化进行控制液体培养系统中植物种类的形态发生。随着植物组织培养技术的出现,它广泛用于迅速繁殖型植物,该植物在生产年份提供一年。一般来说,可以是遗传或表观遗传学的糖髓变异影响组织培养繁殖的使用。在人工环境中培养时植物细胞进行了许多遗传改变和像差。分子生物学技术的引入,例如基于DNA的标志物,允许直接比较不同的遗传物质与环境影响无关。该综述描述了微阳离园园艺作物的形态学和化学表征深度进展。它还描述了使用分子标记来解决体外培养的基本和实际问题,以及用于评估遗传保真度,均匀性,稳定性以及施主和微鼠园艺植物的遗传保真度,均匀性,稳定性和真实性的分子标记。

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