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一种多药耐药转运蛋白导致了雷公藤不定根和毛状根液体培养物中倍半萜吡啶生物碱的胞外产量差异。

A MDR transporter contributes to the different extracellular production of sesquiterpene pyridine alkaloids between adventitious root and hairy root liquid cultures of Tripterygium wilfordii Hook.f.

作者信息

Miao Guo-Peng, Han Juan, Zhang Ji-Feng, Zhu Chuan-Shu, Zhang Xing

机构信息

Department of Bioengineering, Huainan Normal University, Huainan, 232038, Anhui, China.

Research & Development Center of Biorational Pesticides, Northwest A&F University, Yangling, 712100, Shaanxi, China.

出版信息

Plant Mol Biol. 2017 Sep;95(1-2):51-62. doi: 10.1007/s11103-017-0634-4. Epub 2017 Jul 21.

Abstract

TwMDR1 transports sesquiterpene pyridine alkaloids, wilforine and wilforgine, into the hairy roots of T. wilfordii Hook.f. resulting in low secretion ratio of alkaloids. Hairy roots (HRs) exhibit high growth rate and biochemical and genetic stability. However, varying secondary metabolites in HR liquid cultures mainly remain in root tissues, and this condition may affect cell growth and cause inconvenience in downstream extraction. Studies pay less attention to adventitious root (AR) liquid cultures though release ratio of some metabolites in AR liquid cultures is significantly higher than that of HR. In Tripterygium wilfordii Hook.f., release ratio of wilforine in AR liquid cultures reached 92.75 and 13.32% in HR on day 15 of culture. To explore potential roles of transporters in this phenomenon, we cloned and functionally identified a multidrug resistance (MDR) transporter, TwMDR1, which shows high expression levels in HRs and is correlated to transmembrane transportation of alkaloids. Nicotiana tabacum cells with overexpressed TwMDR1 efficiently transported wilforine and wilforgine in an inward direction. To further prove the feasibility of genetically engineered TwMDR1 and improve alkaloid production, we performed a transient RNAi experiment on TwMDR1 in T. wilfordii Hook.f. suspension cells. Results indicated that release ratios of wilforine and wilforgine increased by 1.94- and 1.64-folds compared with that of the control group, respectively. This study provides bases for future studies that aim at increasing secretion ratios of alkaloids in root liquid cultures in vitro.

摘要

TwMDR1将倍半萜吡啶生物碱雷公藤碱和雷公藤次碱转运至雷公藤毛状根中,导致生物碱分泌率较低。毛状根生长速率高,具有生化和遗传稳定性。然而,毛状根液体培养物中不同的次生代谢产物主要保留在根组织中,这种情况可能会影响细胞生长,并给下游提取带来不便。尽管不定根液体培养物中某些代谢产物的释放率明显高于毛状根,但相关研究较少关注不定根液体培养。在雷公藤中,培养第15天时,不定根液体培养物中雷公藤碱的释放率达到92.75%,而毛状根中为13.32%。为了探究转运蛋白在此现象中的潜在作用,我们克隆并功能鉴定了一种多药耐药(MDR)转运蛋白TwMDR1,其在毛状根中表达水平较高,且与生物碱的跨膜转运相关。过表达TwMDR1的烟草细胞能够有效地向内转运雷公藤碱和雷公藤次碱。为了进一步证明基因工程改造TwMDR1的可行性并提高生物碱产量,我们对雷公藤悬浮细胞中的TwMDR1进行了瞬时RNA干扰实验。结果表明,与对照组相比,雷公藤碱和雷公藤次碱的释放率分别提高了1.94倍和1.64倍。本研究为今后旨在提高体外根液体培养物中生物碱分泌率的研究提供了依据。

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