Wu Bingqi, Chen Zhiting, Xu Xiaohui, Chen Ronghua, Wang Siwei, Xu Hanhong, Lin Fei
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources/Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, South China Agricultural University, Guangzhou 510642, China.
Institute of Quality Standard and Monitoring Technology for Agro-Products of Guangdong Academy of Agricultural Sciences, Guangzhou 510642, China.
Plants (Basel). 2021 Mar 11;10(3):524. doi: 10.3390/plants10030524.
Functional characterization of plant agrichemical transporters provided an opportunity to discover molecules that have a high mobility in plants and have the potential to increase the amount of pesticides reaching damage sites. -mediated transient expression in tobacco is simple and fast, and its protein expression efficiency is high; this system is generally used to mediate heterologous gene expression. In this article, transient expression of tobacco nicotine uptake permease () and rice polyamine uptake transporter 1 () in was performed to investigate whether this system is useful as a platform for studying the interactions between plant transporters and pesticides. The results showed that increases nicotine uptake in foliar discs and protoplasts, indicating that this transient gene expression system is feasible for studying gene function. Moreover, yeast expression of apparently increases methomyl uptake. Overall, this method of constructing a transient gene expression system is useful for improving the efficiency of analyzing the functions of plant heterologous transporter-encoding genes and revealed that this system can be further used to study the functions of transporters and pesticides, especially their interactions.
植物农用化学品转运蛋白的功能表征为发现植物中具有高迁移率且有可能增加到达受损部位的农药量的分子提供了机会。烟草介导的瞬时表达简单快速,其蛋白质表达效率高;该系统通常用于介导异源基因表达。在本文中,在烟草中进行了烟草尼古丁摄取通透酶()和水稻多胺摄取转运蛋白1()的瞬时表达,以研究该系统是否可用作研究植物转运蛋白与农药之间相互作用的平台。结果表明,该基因增加了烟草叶盘和原生质体中尼古丁的摄取,表明该瞬时基因表达系统对于研究基因功能是可行的。此外,该基因的酵母表达明显增加了灭多威的摄取。总体而言,这种构建瞬时基因表达系统的方法有助于提高分析植物异源转运蛋白编码基因功能的效率,并表明该系统可进一步用于研究转运蛋白和农药的功能,特别是它们之间的相互作用。