首页> 外文期刊>Applied Microbiology and Biotechnology >Elicitors' influenced differential ginsenoside production and exudation into medium with concurrent Rg3/Rh2 panaxadiol induction in Panax quinquefolius cell suspensions
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Elicitors' influenced differential ginsenoside production and exudation into medium with concurrent Rg3/Rh2 panaxadiol induction in Panax quinquefolius cell suspensions

机译:诱导者影响人参皂甙的差异产生和渗出到人参中同时诱导Rg3 / Rh2人参二醇的培养基中

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摘要

Cobalt nitrate, nickel sulphate, hydrogen peroxide, sodium nitroprusside, and culture filtrates of Pseudomonas monteili, Bacillus circularans, Trichoderma atroviridae, and Trichoderma harzianum were tested to elicit ginsenoside production in a cell suspension line of Panax quinquefolius. Abiotic elicitors preferentially increased panaxadiols whereas biotic elicitors upregulated the panaxatriol synthesis. Cobalt nitrate (50 mu M) increased total ginsenosides content by twofold (54.3 mg/L) within 5 days. It also induced the Rc synthesis that was absent in the control cultures. Elicitation with P. monteili (2.5 % v/v, 5 days) also supported 2.4-fold enhancement in saponin yield. Elicitation by T. atroviridae or hydrogen peroxide induced the synthesis of Rg3 and Rh2 that are absent in ginseng roots. The highest ginsenosides productivity (3.2-fold of control) was noticed in cells exposed to 1.25 % v/v dose of T. atroviridae for 5 days. Treating cells with T. harzianum for 15 days afforded maximum synthesis and leaching (8.1 mg/L) of ginsenoside Rh1.
机译:测试了硝酸钴,硫酸镍,过氧化氢,硝普钠,蒙氏假单胞菌,圆芽孢杆菌,木霉木霉和哈茨木霉的培养滤液,以诱导人参皂苷在西洋参细胞悬液中的产生。非生物激发子优先增加人参二醇,而生物激发子上调人参三醇的合成。硝酸钴(50μM)在5天内使总人参皂甙含量增加了两倍(54.3 mg / L)。它也诱导了对照培养物中不存在的Rc合成。用蒙特氏假单胞菌(2.5%v / v,5天)激发也支持皂苷产量提高2.4倍。 T. atroviridae或过氧化氢的诱导诱导了人参根中不存在的Rg3和Rh2的合成。在暴露于1.25%v / v剂量的Atroviridae达5天的细胞中,人参皂甙的生产率最高(为对照的3.2倍)。用哈茨木霉处理细胞15天,可得到最大的人参皂苷Rh1合成和浸出(8.1 mg / L)。

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