首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Effect of immersion systems, lighting, and TIS designs on biomass increase in micropropagating banana (Musa spp. cv. 'Grande naine' AAA)
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Effect of immersion systems, lighting, and TIS designs on biomass increase in micropropagating banana (Musa spp. cv. 'Grande naine' AAA)

机译:浸没系统,照明和TIS设计对微繁殖香蕉生物量增加的影响(Musa spp。cv。'Grande naine'AAA)

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摘要

Development of in vitro techniques has enabled rapid clonal propagation, regeneration, and multiplication of genetically manipulated superior clones, production of secondary metabolites, and ex situ conservation of valuable germplasm. This has been possible not only due to the refinements of culture methodologies and applications of cutting-edge areas of molecular biology but also due to the judicious inclusion of engineering principles and methods to improve and refine the system. In the present study, we used engineering principles and methods to transform basic in vitro techniques into commercially viable technologies. We investigated two types of temporary immersion systems (TIS), two types of lighting, and two different gas exchange systems during in vitro banana (Musa spp. cv. 'Grande naine') shoot cultures. After 7 wks, all banana shoots cultured in standard TIS (5-L glass vessels, type 1) showed superior vegetative growth for the evaluated parameters. We also found that illumination provided by light emission diodes (LEDs) was superior to the use of white fluorescent lamps at the same light intensity (40 mu mol m(-2) s(-1)). Shoots treated with compressed air for immersion and additional gas exchange during the culture period in the glass vessel of TIS systems resulted in higher propagation rates and a larger number of shoots harvested as well as a larger number of roots formed per shoot after the 7-wk culture period.
机译:体外技术的发展已使快速克隆繁殖,遗传改造的优良克隆的繁殖和繁殖,次级代谢产物的产生以及宝贵种质的非原生境保存成为可能。这不仅因为培养方法的改进和分子生物学前沿领域的应用,而且由于明智地纳入了工程原理和方法以改进和完善该系统而成为可能。在本研究中,我们使用工程原理和方法将基本的体外技术转化为商业可行的技术。我们研究了体外香蕉(Musa spp。cv。'Grande naine')苗期培养中的两种类型的临时浸入式系统(TIS),两种类型的照明和两种不同的气体交换系统。 7周后,在标准TIS(5-L玻璃器皿,1型)中培养的所有香蕉芽均显示出优越的营养生长能力。我们还发现,在相同的光强度(40μmol m(-2)s(-1))下,发光二极管(LED)提供的照明效果优于白色荧光灯。在TIS系统的玻璃容器中,在培养期间,用压缩空气处理的枝条要浸没并进行额外的气体交换,这会导致较高的繁殖速率,收获的枝条数量更多,并且7周后每枝芽形成的根数也更多。文化时期。

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