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利用薄细胞层(TCL)获得体细胞胚胎发生。

Use of Thin Cell Layer (TCL) to Obtain Somatic Embryogenesis.

作者信息

Bravo-Ruiz Ivonne N, González-Arnao Ma Teresa, Castañeda-Castro Odón, Pastelín-Solano Miriam C, Cruz-Cruz Carlos A

机构信息

Facultad de Ciencias Químicas, Universidad Veracruzana, Orizaba, Veracruz, Mexico.

出版信息

Methods Mol Biol. 2022;2527:183-201. doi: 10.1007/978-1-0716-2485-2_14.

Abstract

The thin cell layer (TCL) culture system was initially reported in relation to the model plant Nicotiana tabacum, giving rise to 47 years of continuous application and investigation on micropropagation and plant breeding of over 100 plant species or hybrids. The small sizes of the tissue sections (100 μm to 1-2 mm in thickness), its classification into transverse TCL (tTCL) or longitudinal TCL (lTCL) categories, and the interaction between the cultured cells and the culture medium are the main drivers of its efficacy in tens of plants for the induction of somatic embryogenesis, relative to the conventional in-vitro culture system. Furthermore, it promotes higher productivity and reduced time in the proliferation of cultures, which is key for the differentiation of cells and plant tissues. This chapter describes the main characteristics of the TCL sections, and the interaction between cells under in-vitro culture. In addition, it highlights the latest findings reporting the success of TCL in ornamental, herbaceous, woody, and recalcitrant plants. In most cases, studies on the use of TCL in combination with techniques such as bioreactors, histology, genetic transformation, and fidelity analysis, provide indisputable evidence that highlights the importance of this technique in plant biotechnology. Finally, the perspectives on TCL use are described, underlining the advantages and constraints of the technique for its continued use and future application.

摘要

薄细胞层(TCL)培养系统最初是针对模式植物烟草报道的,自此引发了长达47年对100多种植物物种或杂种的微繁殖和植物育种的持续应用与研究。相对于传统的体外培养系统,组织切片尺寸小(厚度为100μm至1 - 2mm)、分为横向TCL(tTCL)或纵向TCL(lTCL)类别以及培养细胞与培养基之间的相互作用,是其在数十种植物中诱导体细胞胚胎发生有效性的主要驱动因素。此外,它能提高培养物增殖的生产力并缩短时间,这对细胞和植物组织的分化至关重要。本章描述了TCL切片的主要特征以及体外培养条件下细胞之间的相互作用。此外,还强调了有关TCL在观赏植物、草本植物、木本植物和顽拗植物中取得成功的最新研究结果。在大多数情况下,关于将TCL与生物反应器、组织学、遗传转化和保真度分析等技术结合使用的研究,提供了无可争议的证据,凸显了该技术在植物生物技术中的重要性。最后,阐述了TCL使用的前景,强调了该技术持续使用和未来应用的优势与限制。

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