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在转基因烟草中异源生产人参皂苷(化合物K)及其前体损害营养生长和生殖生长。

Heterologous production of a ginsenoside saponin (compound K) and its precursors in transgenic tobacco impairs the vegetative and reproductive growth.

作者信息

Gwak Yu Shin, Han Jung Yeon, Adhikari Prakash Babu, Ahn Chang Ho, Choi Yong Eui

机构信息

Department of Forest Resources, College of Forest and Environmental Sciences, Kangwon National University, Chuncheon, 200-701, Republic of Korea.

出版信息

Planta. 2017 Jun;245(6):1105-1119. doi: 10.1007/s00425-017-2668-x. Epub 2017 Feb 27.

Abstract

Production of compound K (a ginsenoside saponin) and its precursors in transgenic tobacco resulted in stunted growth and seed set failure, which may be caused by strong autotoxicity of heterologously produced phytochemicals against the tobacco itself. Panax ginseng roots contain various saponins (ginsenosides), which are major bioactive compounds. A monoglucosylated saponin, compound K (20-O-(β-D-glucopyranosyl)-20(S)-protopanaxadiol), has high medicinal and cosmetic values but is present in undetectable amounts in naturally grown ginseng roots. The production of compound K (CK) requires complicated deglycosylation of ginsenosides using physicochemical and/or enzymatic degradation. In this work, we report the production of CK in transgenic tobacco by co-overexpressing three genes (PgDDS, CYP716A47 and UGT71A28) isolated from P. ginseng. Introduction and expression of the transgenes in tobacco lines were confirmed by genomic PCR and RT-PCR. All the lines of transgenic tobacco produced CK including its precursors, protopanaxadiol and dammarenediol-II (DD). The concentrations of CK in the leaves ranged from 1.55 to 2.64 µg/g dry weight, depending on the transgenic line. Interestingly, production of CK in tobacco brought stunted plant growth and gave rise to seed set failure. This seed set failure was caused by both long-styled flowers and abnormal pollen development in transgenic tobacco. Both CK and DD treatments highly suppressed in vitro germination and tube growth in wild-type pollens. Based on these results, metabolic engineering for CK production in transgenic tobacco was successfully achieved, but the production of CK and its precursors in tobacco severely affects vegetative and reproductive growth due to the cytotoxicity of phytochemicals that are heterologously produced in transgenic tobacco.

摘要

在转基因烟草中生产化合物K(一种人参皂苷)及其前体导致生长发育迟缓以及结实失败,这可能是由于异源产生的植物化学物质对烟草自身具有强烈的自毒作用。人参根中含有多种皂苷(人参皂苷),它们是主要的生物活性化合物。一种单糖基化皂苷,化合物K(20 - O -(β - D - 吡喃葡萄糖基)- 20(S) - 原人参二醇),具有很高的药用和化妆品价值,但在自然生长的人参根中含量极低甚至检测不到。化合物K(CK)的生产需要使用物理化学和/或酶促降解对人参皂苷进行复杂的去糖基化反应。在这项研究中,我们报道了通过共过量表达从人参中分离出的三个基因(PgDDS、CYP716A47和UGT71A28)在转基因烟草中生产CK。通过基因组PCR和RT - PCR确认了转基因在烟草品系中的导入和表达。所有转基因烟草品系都产生了CK及其前体原人参二醇和达玛烯二醇-II(DD)。叶片中CK的浓度在1.55至2.64μg/g干重之间,具体取决于转基因品系。有趣的是,烟草中CK的产生导致植株生长发育迟缓并引起结实失败。这种结实失败是由转基因烟草中长花柱花和异常花粉发育共同导致的。CK和DD处理均显著抑制野生型花粉的体外萌发和花粉管生长。基于这些结果,成功实现了转基因烟草中CK生产的代谢工程,但由于转基因烟草中异源产生的植物化学物质具有细胞毒性,CK及其前体在烟草中的生产严重影响了营养生长和生殖生长。

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