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在间歇浸没系统中扩大咖啡(罗布斯塔种)体细胞胚胎发生。

Scale-Up of Coffea canephora Somatic Embryogenesis in Temporary Immersion System.

作者信息

Méndez-Hernández Hugo A, Loyola-Vargas Víctor M

机构信息

Unidad de Biología Integrativa, Centro de Investigación Científica de Yucatán, Mérida, Mexico.

出版信息

Methods Mol Biol. 2024;2827:291-301. doi: 10.1007/978-1-0716-3954-2_20.

Abstract

Somatic embryogenesis (SE) is a clear example of cellular totipotency. The SE of the genus Coffea has become a model for in vitro propagation for woody species and for the large-scale production of disease-free plants that provide an advantage for modern agriculture. Temporary immersion systems (TIS) are in high demand for the propagation of plants. The success of this type of bioreactor is based on the alternating cycles of immersion of the plant material in the culture medium, usually a few minutes, and the permanence outside the medium of the tissues for several hours. Some bioreactors are very efficient for propagating one species but not another. The efficiency of bioreactors depends on the species, the tissue used to propagate, the species' nutritional needs, the amount of ethylene produced by the tissue, and many more. In this protocol, we show how we produce C. canephora plants that are being taken to the field.

摘要

体细胞胚胎发生(SE)是细胞全能性的一个明显例子。咖啡属的 SE 已成为木本物种体外繁殖和大规模生产无病植物的模型,为现代农业提供了优势。临时浸泡系统(TIS)对植物的繁殖有很高的要求。这种类型的生物反应器的成功基于植物材料在培养基中的交替浸泡循环,通常几分钟,以及组织在培养基外的数小时的持续时间。一些生物反应器对于繁殖一种物种非常有效,但对于另一种则不然。生物反应器的效率取决于物种、用于繁殖的组织、物种的营养需求、组织产生的乙烯量等。在本方案中,我们展示了如何生产正在被带到田间的咖啡种植物。

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