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一种用……对L.(林奈)进行遗传转化的有效方法。

An Efficient Method for the Genetic Transformation of L. ( Linn.) with .

作者信息

Maggini Valentina, Bettini Priscilla, Firenzuoli Fabio, Bogani Patrizia

机构信息

Research and Innovation Center in Phytotherapy and Integrated Medicine (CERFIT), Careggi University Hospital, Via delle Oblate 4, 50141 Florence, Italy.

Department of Biology, University of Florence, Via Madonna del Piano 6, Sesto Fiorentino, 50019 Florence, Italy.

出版信息

Plants (Basel). 2021 Jan 21;10(2):198. doi: 10.3390/plants10020198.

Abstract

L. is an important medicinal plant, commonly known as the toothache plant. It is a rich source of secondary metabolites used for the treatment of different human disorders. The demand for L. has increased due to its putative health benefits (in terms of both biomass quantity and bioactive compound purification). In vitro plant cultures have allowed the rapid increase of raw material availability through the use of suitable regeneration and multiplication systems. On the other hand, there is a general lack of methods for genetic transformation as a promising new technological approach for the improvement of secondary metabolites. In this work, an efficient transformation protocol has been established using the LBA4404 strain bearing the binary vector pBI121 containing the gene for the resistance to kanamycin. Plant genetic transformation has been verified by direct polymerase chain reaction and GUS assay on regenerants. Transformation efficiency has been affected by the high level of the selection agent kanamycin. To our knowledge, this is the first report on the genetic transformation of paving the way to further studies to improve in vitro plant growth and secondary metabolite production.

摘要

L.是一种重要的药用植物,通常被称为牙痛草。它是用于治疗不同人类疾病的次生代谢产物的丰富来源。由于其假定的健康益处(在生物量数量和生物活性化合物纯化方面),对L.的需求有所增加。通过使用合适的再生和增殖系统,体外植物培养使得原材料的可获得性迅速增加。另一方面,作为一种用于改善次生代谢产物的有前途的新技术方法,基因转化方法普遍缺乏。在这项工作中,使用携带含有卡那霉素抗性基因的二元载体pBI121的LBA4404菌株建立了一种有效的转化方案。通过对再生植株进行直接聚合酶链反应和GUS检测验证了植物基因转化。转化效率受到选择剂卡那霉素高水平的影响。据我们所知,这是关于L.基因转化的首次报道,为进一步研究改善体外植物生长和次生代谢产物生产铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/835a/7911432/4db26373d0a9/plants-10-00198-g001.jpg

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