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阿拉比卡咖啡在临时浸没培养中的体细胞胚胎发生:选定基因型大规模繁殖的进展、局限性和前景

Somatic embryogenesis of Arabica coffee in temporary immersion culture: Advances, limitations, and perspectives for mass propagation of selected genotypes.

作者信息

Aguilar María Elena, Wang Xiao-Yang, Escalona Maritza, Yan Lin, Huang Li-Fang

机构信息

Biotechnology Laboratories, Tropical Agricultural Research and Higher Education Center (CATIE), Turrialba, Costa Rica.

Spice and Beverage Research Institute, Chinese Academy of Tropical Agricultural Sciences (CATAS), Wanning, China.

出版信息

Front Plant Sci. 2022 Oct 6;13:994578. doi: 10.3389/fpls.2022.994578. eCollection 2022.

Abstract

Culture in temporary immersion systems (TIS) is a valuable tool for the semi-automation of high frequency somatic embryogenesis of coffee. This system allows the intermittent exposure of explants to liquid medium in cycles of specific frequency and duration of immersion with renewal of the culture atmosphere in each cycle. TIS have revolutionized somatic embryogenesis of coffee plants as an alternative for scaling up and reducing costs associated with labor-intensive solid media culture. In Central America, somatic embryogenesis is employed on a commercial scale to produce F1 hybrids. In Asia and Africa, somatic embryogenesis is used for the multiplication of selected genotypes of and . Somatic embryogenesis of coffee plants is considered a model system for woody species due to its biological versatility and low frequency of somaclonal variation. Nevertheless, the success of somatic embryogenesis for mass propagation of coffee plants depends on the development, optimization, and transfer of complementary technologies. Temporary immersion using the RITA bioreactor is, so far, the best complementary tool for somatic embryogenesis of Arabica coffee for a single recipient with simple changes in liquid media. Likewise, high volume bioreactors, such as 10-L glass BIT and 10-L flexible disposable plastic bags, have been successfully used for somatic embryogenesis of other coffee species. These bioreactors allow the manipulation of thousands of embryos under semi-automated conditions. The protocols, advantages, and benefits of this technology have been well documented for organogenesis and somatic embryogenesis pathways. However, adaptation in commercial laboratories requires technical and logistical adjustments based on the biological response of the cultures as well as the costs of implementation and production. This review presents the historical and present background of TIS and its commercial application and, in particular, pertinent information regarding temporary immersion culture for somatic embryogenesis. The main limitations of this technology, such as hyperhydricity, asynchrony, and developmental abnormalities, are examined, and a critical analysis of current knowledge regarding physiological, biochemical, and molecular aspects of the plant response to temporary immersion is offered. Further, perspectives are provided for understanding and solving the morpho-physiological problems associated with temporary immersion culture of coffee plants. Systematic Review Registration.

摘要

临时浸没系统(TIS)培养是实现咖啡高频体细胞胚胎发生半自动化的一项重要技术。该系统能使外植体间歇性地接触液体培养基,浸没频率和持续时间呈特定周期循环,并在每个周期更新培养环境。TIS彻底改变了咖啡植物体细胞胚胎发生技术,成为一种扩大规模和降低劳动密集型固体培养基培养成本的替代方法。在中美洲,体细胞胚胎发生技术已用于商业化生产F1杂交种。在亚洲和非洲,体细胞胚胎发生技术则用于特定基因型的 和 的扩繁。由于咖啡植物体细胞胚胎发生具有生物学多样性和体细胞无性系变异频率低的特点,它被视为木本植物的一个模式系统。然而,咖啡植物大规模繁殖体细胞胚胎发生技术的成功,取决于互补技术的开发、优化和应用。就单个受体而言,使用RITA生物反应器进行临时浸没培养,只需对液体培养基稍作调整,便是目前用于阿拉比卡咖啡体细胞胚胎发生的最佳互补工具。同样,大容量生物反应器,如10升玻璃BIT和10升一次性柔性塑料袋,已成功用于其他咖啡品种的体细胞胚胎发生。这些生物反应器能在半自动化条件下处理数千个胚胎。该技术在器官发生和体细胞胚胎发生途径方面的方案、优势和益处已有详尽记载。然而,在商业实验室应用时,需要根据培养物的生物学反应以及实施和生产成本进行技术和后勤调整。本综述介绍了TIS培养的历史和现状背景及其商业应用,特别是关于体细胞胚胎发生临时浸没培养的相关信息。文中探讨了该技术的主要局限性,如玻璃化、不同步和发育异常等问题,并对当前关于植物对临时浸没反应生理、生化和分子方面的知识进行了批判性分析。此外,还针对理解和解决咖啡植物临时浸没培养相关形态生理问题提供了见解。系统评价注册。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb56/9582858/f8a4e0e9522e/fpls-13-994578-g001.jpg

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