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Effect of Aspergillus flavus Fungal Elicitor on the Production of Terpenoid Indole Alkaloids in Catharanthus roseus Cambial Meristematic Cells

机译:黄曲霉真菌诱导子对长春花迷迭香分生组织细胞中萜类吲哚生物碱产生的影响

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摘要

This study reported the inducing effect of Aspergillus flavus fungal elicitor on biosynthesis of terpenoid indole alkaloids (TIAs) in Catharanthus roseus cambial meristematic cells (CMCs) and its inducing mechanism. According to the results determined by HPLC and HPLC-MS/MS, the optimal condition of the A. flavus elicitor was as follows: after suspension culture of C. roseus CMCs for 6 day, 25 mg/L A. flavus mycelium elicitor were added, and the CMC suspensions were further cultured for another 48 h. In this condition, the contents of vindoline, catharanthine, and ajmaline were 1.45-, 3.29-, and 2.14-times as high as those of the control group, respectively. Transcriptome analysis showed that D4H, G10H, GES, IRS, LAMT, SGD, STR, TDC, and ORCA3 were involved in the regulation of this induction process. The results of qRT-PCR indicated that the increasing accumulations of vindoline, catharanthine, and ajmaline in C. roseus CMCs were correlated with the increasing expression of the above genes. Therefore, A. flavus fungal elicitor could enhance the TIA production of C. roseus CMCs, which might be used as an alternative biotechnological resource for obtaining bioactive alkaloids.
机译:这项研究报道了黄曲霉真菌激发子对长春花迷迭香分生组织细胞(CMCs)中萜类吲哚生物碱(TIA)生物合成的诱导作用及其诱导机制。根据HPLC和HPLC-MS / MS测定的结果,黄曲霉激发子的最佳条件如下:将玫瑰假丝酵母CMCs悬浮培养6天后,加入25 mg / L的黄曲霉菌丝体激发子。 ,然后将CMC悬浮液进一步培养48小时。在这种情况下,长春新碱,金刚烷胺和阿玛琳的含量分别是对照组的1.45倍,3.29倍和2.14倍。转录组分析表明,D4H,G10H,GES,IRS,LAMT,SGD,STR,TDC和ORCA3参与了该诱导过程的调控。 qRT-PCR的结果表明,玫瑰花念珠菌CMC中长春花碱,长春花碱和艾玛琳的积累与上述基因的表达增加有关。因此,黄曲霉真菌引发剂可以增强 C的TIA产生。玫瑰花CMCs,可用作获得生物活性生物碱的替代生物技术资源。

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