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Induction of pigment production through media composition abiotic and biotic factors in two filamentous fungi

机译:通过两种丝状真菌的培养基组成非生物和生物因子诱导色素生成

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摘要

In addition to plant-derived, fungal pigments have become an alternative in respect to synthetic ones. Besides Monascus sp., several pigment-producing fungi do not have culture conditions well-established yet. In this research, media composition, light wavelength and co-culture were evaluated, results were reported in Absorbance Units per gram of biomass (AU/Bgr). For Fusarium oxysporum a C:N ratio above 7 was advantageous, using both complex and defined media; blue LED light increased the AU/Bgr value from 18013 to 344; co-culture did not enhance pigment production. In Aspergillus chevalieri a high C:N ratio with glucose as carbon source was ideal. When exposing cultures to light, UV and red light gave the highest pigmentation; moreover, differential UV-VIS spectra in all wavelengths suggested production of additional pigments. Particularly a pigment observed when cultured in green light was also found in co-culture with yeast and there was an improvement of AU/Bgr value of 52549%. This is the first report regarding light effect and co-culture for these fungi, as well as C:N ratio for A. chevalieri.
机译:除植物来源外,真菌色素已成为合成色素的替代品。除了红曲菌之外,几种产色素的真菌还没有很好的培养条件。在这项研究中,评估了培养基组成,光波长和共培养,结果以每克生物质的吸光度单位(AU / Bgr)报告。对于尖孢镰刀菌,使用复杂的和限定的培养基,C:N比大于7是有利的。蓝色LED灯将AU / Bgr值从18013增加到344;共培养没有提高色素的产生。在黑曲霉中,以葡萄糖为碳源的高C:N比是理想的。将培养物暴露在光下时,紫外线和红色光会产生最高的色素沉着。此外,在所有波长下的差异UV-VIS光谱表明会产生其他颜料。特别是在绿灯中观察到的色素在与酵母的共培养中也被发现,AU / Bgr值提高了52549%。这是有关这些真菌的光效应和共培养以及A. chevalieri的C:N比的首次报道。

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