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Nitric oxide mediates the fungal elicitor-induced Taxol biosynthesis of Taxus chinensis suspension cells through the reactive oxygen species-dependent and -independent signal pathways
作者姓名:XU  Maojun  DONG  Jufang
作者单位:Department of Biotechnology, Zhejiang Gongshang University, Hangzhou 310035
基金项目:Acknowledgement This work was supported by the Natural National Science Foundation of China (Grant No. 30572331) and the Natural Science Foundation of Zhejiang Province (Grant No. 302785).
摘    要:Taxol (paclitaxel, NSC-125973), a secondary me- tabolite of the Taxus species, has been recognized as one of the best anticancer drugs emerging in the last decade1]. The production of Taxol by various Taxus spp. cells in culture has been one of the most …

关 键 词:氧化一氮  氧化爆裂  信号传导  紫杉  生物合成  紫杉酚
收稿时间:2006-02-28
修稿时间:2006-02-282006-06-29

Nitric oxide mediates the fungal elicitor-induced taxol biosynthesis of Taxus chinensis suspension cells through the reactive oxygen species-dependent and -independent signal pathways
XU Maojun DONG Jufang.Nitric oxide mediates the fungal elicitor-induced Taxol biosynthesis of Taxus chinensis suspension cells through the reactive oxygen species-dependent and -independent signal pathways[J].Chinese Science Bulletin,2006,51(16):1967-1975.
Authors:Maojun Xu  Jufang Dong
Institution:(1) Department of Biotechnology, Zhejiang Gongshang University, Hangzhou, 310035, China
Abstract:Nitric oxide and reactive oxygen species are two important signal molecules that play key roles in plant defense responses. Nitric oxide generation and oxidative burst and accumulation of reactive oxygen species are the early reactions of Taxus chinensis suspension cells to fungal elicitor prepared from the cell walls of Penicillium citrinum. In order to investigate the relationship and/or interactions of nitric oxide and reactive oxygen species in the elicitor-induced Taxol biosynthesis of T. chinensis suspension cells, we treated the cells with nitric oxide specific scavenger 2-4-carboxyphenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (cPITO), nitric oxide synthase inhibitor S,S′-1,3-phenylene-bis(1,2-ethanediyl)-bis-isothiourea (PBITU), membrane NAD(P) H oxidase inhibitor diphenylene iodonium (DPI), superoxide dismutases (SOD) and catalase. The results show that pretreatment of T. chinensis cells with cPITO and DPI inhibited not only the elicitor-induced nitric oxide biosynthesis and oxidative burst, but also the elicitor-induced Taxol production, suggesting that both nitric oxide and reactive oxygen species are involved in elicitor-induced Taxol biosynthesis. Furthermore, pretreatment of the cells with cPITO and PBITU suppressed the elicitor-induced oxidative burst, indicating that the oxidative burst might be dependent on NO. Application of nitric oxide via its donor sodium nitroprusside (SNP) triggered Taxol biosynthesis of T. chinensis cells. The nitric oxide-induced Taxol production was suppressed by DPI, showing that the oxidative burst is involved in NO-triggered Taxol biosynthesis. However, nitric oxide and the fungal elicitor induced Taxol biosynthesis even though the accumulation of reactive oxygen species wass completely abolished in T. chinensis cells. Our data show that nitric oxide may mediate the elicitor-induced Taxol biosynthesis of T. chinensis suspension cells through both reactive oxygen species-dependent and-independent signal pathways. Moreover, the results of our work show that the elicitor-and nitric oxide-induced Taxol biosynthesis is inhibited by catalase, indicating that H2O2 from the oxidative burst might be the signal molecule involved in induced Taxol production of T. chinensis cells.
Keywords:nitric oxide  oxidative burst  signal transduction  Taxus chinensis cells  Taxol biosynthesis  fungal elicitor    
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