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Elicitors Derived from Hazel (Corylus avellana L.) Cell Suspension Culture Enhance Growth and Paclitaxel Production of Epicoccum nigrum

机译:榛子(榛子)细胞悬浮培养衍生的刺激剂提高黑Epi的生长和紫杉醇的生产

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摘要

The microbial fermentation is considered as the potential source for large-scale production of paclitaxel. Since co-cultivation/mixed fermentation strategy has been reported as a yield enhancement strategy for paclitaxel production, investigation of fungal endophyte response to plant culture medium, plant cell extract (CE) and medium filtrate (MF) of plant cell suspension culture in terms of growth and paclitaxel production is interesting. In this study, 35 endophytic fungi were isolated from Taxus baccata and Corylus avellana grown in Iran. The analysis of high-performance liquid chromatography and mass spectrometry showed that one isolate (YEF2) produced paclitaxel. The isolate YEF2 was identified as Epicoccum nigrum by sequencing of ITS1-5.8S-ITS2 rDNA region and actin gene. YEF2 was slow-growing in Murashige and Skoog medium, but the synergistic interaction of gibberellic acid (GA3) and CE of C. avellana enhanced the growth of YEF2. The highest total yield of paclitaxel (314.7 µg/l; 11.5-folds) of E. nigrum strain YEF2 was obtained by using 28% (v/v) filter sterilized CE of C. avellana and 2 µg ml−1 GA3 that was significantly higher than the control. In this study, the effects of the plant cell extract on growth and paclitaxel production of paclitaxel producing endophytic fungus were studied for the first time.
机译:微生物发酵被认为是紫杉醇大规模生产的潜在来源。由于共培养/混合发酵策略已被报道为紫杉醇生产的增产策略,因此从以下方面研究真菌对植物培养基,植物细胞提取物(CE)和植物细胞悬浮培养物的培养基滤液(MF)的内生菌反应生长和紫杉醇的生产很有趣。在这项研究中,从伊朗生长的红豆杉和榛子中分离出35种内生真菌。高效液相色谱和质谱分析表明,一种分离物(YEF2)产生了紫杉醇。通过对ITS1-5.8S-ITS2 rDNA区域和肌动蛋白基因的测序,分离株YEF2被鉴定为黑葡萄球菌。 YEF2在Murashige和Skoog培养基中生长缓慢,但是赤霉素(GA3)和C. avellana CE的协同相互作用促进了YEF2的生长。通过使用28%(v / v)过滤除草的C. avellana CE和2μggml/ ml -1 <,紫杉醇YEF2紫杉醇的最高总产量为314.7μg/ l; 11.5倍。 / sup> GA3明显高于对照组。在这项研究中,首次研究了植物细胞提取物对紫杉醇生产性内生真菌的生长和紫杉醇生产的影响。

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