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植物细胞、组织和器官培养概论:现状与展望。

An Introduction to Plant Cell, Tissue, and Organ Culture: Current Status and Perspectives.

机构信息

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

Departamento de Ingeniería Genética, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Irapuato, Guanajuato, Mexico.

出版信息

Methods Mol Biol. 2024;2827:1-13. doi: 10.1007/978-1-0716-3954-2_1.

Abstract

Plant cell, tissue, and organ cultures (PCTOC) have been used as experimental systems in basic research, allowing gene function demonstration through gene overexpression or repression and investigating the processes involved in embryogenesis and organogenesis or those related to the potential production of secondary metabolites, among others. On the other hand, PCTOC has also been applied at the commercial level for the vegetative multiplication (micropropagation) of diverse plant species, mainly ornamentals but also horticultural crops such as potato or fruit and tree species, and to produce high-quality disease-free plants. Moreover, PCTOC protocols are important auxiliary systems in crop breeding crops to generate pure lines (homozygous) to produce hybrids for the obtention of polyploid plants with higher yields or better performance. PCTOC has been utilized to preserve and conserve the germplasm of different crops or threatened species. Plant genetic improvement through genetic engineering and genome editing has been only possible thanks to the establishment of efficient in vitro plant regeneration protocols. Different companies currently focus on commercializing plant secondary metabolites with interesting biological activities using in vitro PCTOC. The impact of omics on PCTOC is discussed.

摘要

植物细胞、组织和器官培养(PCTOC)已被用作基础研究的实验系统,允许通过基因过表达或抑制来证明基因功能,并研究胚胎发生和器官发生过程,或与次生代谢产物的潜在生产等相关的过程。另一方面,PCTOC 也已在商业层面上应用于多种植物物种的营养繁殖(微繁殖),主要是观赏植物,但也包括马铃薯或水果和树种等园艺作物,以及生产高质量的无病植物。此外,PCTOC 方案是作物育种中生成纯系(纯合)的重要辅助系统,用于生产杂种,以获得具有更高产量或更好性能的多倍体植物。PCTOC 已被用于保存和保护不同作物或受威胁物种的种质。通过遗传工程和基因组编辑进行植物遗传改良,只有在建立有效的体外植物再生方案后才成为可能。目前,不同的公司都专注于使用体外 PCTOC 来商业化具有有趣生物活性的植物次生代谢物。讨论了组学对 PCTOC 的影响。

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