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首页> 外文期刊>Vegetos: an international journal of plant research >Photoautotrophic micropropagation system (PAM): a novel approach deserving increased uptake for commercial plant production
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Photoautotrophic micropropagation system (PAM): a novel approach deserving increased uptake for commercial plant production

机译:能光合自养的微体繁殖系统(PAM):一个新方法值得吸收增加商业工厂生产

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摘要

Most commercial plant tissue culture laboratories still use conventional micropropagation systems, requiring air-tight vessels and gelled medium supplemented with sugar. There is, however, a more efficient and economic system available, called “photoautotrophic micropropagation system” (PAM). Application of sugar-free medium and ventilated vessels are the key features of this system, which significantly improves plant physiological processes including photosynthesis and transpiration. The genetic basis for this has become more clear with a recent transcriptomic analysis of potato plantlets cultured on sugar-free medium showing the upregulation of more than 2000 genes, many of which are associated with photosynthesis efficiency and leaf cell development. The cultured plants from PAM exhibit improved vigour and health enabling a faster and smoother acclimatisation stage. Moreover, PAM is amenable to automation and scaling up by using large culture vessels/rooms. Here, we reviewed the recent studieson PAM and the issues/barriers to its commercialisation have also been discussed. Optimal culture conditions as well as different types of culture vessels are also explained.
机译:大多数商业植物组织培养实验室仍然使用传统的微体繁殖系统,需要密封的容器和稠化的媒介补充糖。更有效和经济系统可用,“能光合自养的微体繁殖系统”(PAM)。通风血管的关键特性系统,极大地提高了植物生理过程,包括光合作用和蒸腾。更加清楚最近的转录组分析马铃薯植株培养无糖upregulation的媒介超过2000个基因,其中许多与光合作用效率和相关叶细胞的发展。PAM表现出改进的活力和健康启用更快更流畅的适应阶段。此外,帕姆是自动化和顺从扩大利用大型文化船只/房间。但是在这里,我们回顾了最近这些PAM/阻碍其商业化的问题也进行了讨论。以及不同类型的文化船只还解释说。

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