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Genomic methylation in plant cell cultures: A barrier to the development of commercial long‐term biofactories

机译:植物细胞培养中的基因组甲基化:商业长期生物工厂发展的障碍

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摘要

Plant cell biofactories offer great advantages for the production of plant compounds of interest, although certain limitations still need to be overcome before their maximum potential is reached. One obstacle is the gradual loss of secondary metabolite production during in vitro culture maintenance, which is an important impediment in the development of large‐scale production systems. The relationship between in vitro maintenance and epigenetic changes has been demonstrated in several plant species; in particular, methylation levels have been found to increase in in vitro cultures over time. Higher DNA methylation levels have been correlated with a low yield of secondary metabolites in in vitro plant cell cultures. The longer the period of subculturing, the more methylated cytosines were found throughout the genome, and secondary metabolism decreased significantly. This review summarizes different studies on epigenetic changes during the maintenance of in vitro cell cultures and the insights they provide on the mechanisms involved. It concludes by looking at the perspectives for new approaches designed to avoid declines in metabolite production.
机译:植物细胞生物工厂为目标植物化合物的生产提供了巨大的优势,尽管在达到最大潜力之前仍需要克服某些限制。一个障碍是在体外培养维持过程中次生代谢产物的逐渐损失,这是大规模生产系统发展中的重要障碍。在几种植物中已经证明了体外维持与表观遗传变化之间的关系。特别是,已发现甲基化水平在体外培养物中随时间增加。在体外植物细胞培养中,较高的DNA甲基化水平与次级代谢产物的低产率相关。继代培养时间越长,在整个基因组中发现的甲基化胞嘧啶就越多,并且次级代谢显着降低。这篇综述总结了在维持体外细胞培养过程中表观遗传变化的不同研究,以及它们对所涉及机制的见解。最后,着眼于为避免代谢物产量下降而设计的新方法的前景。

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