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首页> 外文期刊>Microbial Cell Factories >Identification of potentially safe promising fungal cell factories for the production of polyketide natural food colorants using chemotaxonomic rationale
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Identification of potentially safe promising fungal cell factories for the production of polyketide natural food colorants using chemotaxonomic rationale

机译:使用化学分类学原理鉴定用于生产聚酮化合物天然食用色素的潜在安全有希望的真菌细胞工厂

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Background Colorants derived from natural sources look set to overtake synthetic colorants in market value as manufacturers continue to meet the rising demand for clean label ingredients – particularly in food applications. Many ascomycetous fungi naturally synthesize and secrete pigments and thus provide readily available additional and/or alternative sources of natural colorants that are independent of agro-climatic conditions. With an appropriately selected fungus; using in particular chemotaxonomy as a guide, the fungal natural colorants could be produced in high yields by using the optimized cultivation technology. This approach could secure efficient production of pigments avoiding use of genetic manipulation. Results Polyketide pigment producing ascomycetous fungi were evaluated for their potential as production organisms based on a priori knowledge on species-specific pigment and potential mycotoxin production and BioSafety level (BSL) classification. Based on taxonomic knowledge, we pre-selected ascomycetous fungi belonging to Penicillium subgenus Biverticillium that produced yellow, orange or red pigments while deselecting Penicillium marneffei ; a well known human pathogen in addition to other mycotoxigenic fungi belonging to the same group. We identified 10 strains belonging to 4 species; viz . P. purpurogenum, P. aculeatum, P. funiculosum , and P. pinophilum as potential pigment producers that produced Monascus -like pigments but no known mycotoxins. The selection/deselection protocol was illustrated in the pigment extracts of P. aculeatum IBT 14259 and P. crateriforme IBT 5015 analysed by HPLC-DAD-MS. In addition, extracellular pigment producing ability of some of the potential pigment producers was evaluated in liquid media with a solid support and N-glutarylmonascorubramine was discovered in the partially purified pigment extract of P. purpurogenum IBT 11181 and IBT 3645. Conclusion The present work brought out that the use of chemotaxonomic tools and a priori knowledge of fungal extrolites is a rational approach towards selection of fungal polyketide pigment producers considering the enormous chemical diversity and biodiversity of ascomycetous fungi. This rationale could be very handy for the selection of potentially safe fungal cell factories not only for polyketide pigments but also for the other industrially important polyketides; the molecular and genetic basis for the biosynthesis of which has not yet been examined in detail. In addition, 4 out of the 10 chemotaxonomically selected promising Penicillium strains were shown to produce extracellular pigments in the liquid media using a solid support indicating future cell factory possibilities for polyketide natural food colorants.
机译:背景技术随着制造商继续满足清洁标签成分不断增长的需求,尤其是在食品应用中,天然来源的着色剂的市场价值有望超过合成着色剂。许多子囊真菌天然合成和分泌色素,因此提供了独立于农业气候条件的容易获得的天然色素的其他和/或替代来源。用适当选择的真菌;以化学分类法为指导,通过使用优化的栽培技术可以高产量生产真菌天然色素。这种方法可以确保有效生产颜料,而无需使用基因操作。结果基于对物种特异性色素和潜在霉菌毒素产生以及生物安全水平(BSL)分类的先验知识,评估了产生聚酮化合物色素的子囊真菌作为生产生物的潜力。根据分类学知识,我们预先选择了属于青霉菌属青霉菌的子囊真菌,该霉菌会产生黄色,橙色或红色的色素,同时取消选择马尔尼菲青霉菌。除属于同一组的其他产毒真菌外,还包括一种众所周知的人类病原体。我们确定了属于4个物种的10个菌株。即。潜在的色素生产者是产紫青霉,球菌青霉,真菌性青霉和松果青霉,它们产生类红曲霉的色素,但没有已知的霉菌毒素。在通过HPLC-DAD-MS分析的小球藻IBT 14259和草形假单胞菌IBT 5015的色素提取物中说明了选择/取消选择方案。此外,在带有固相支持物的液体培养基中评估了一些潜在颜料生产者的细胞外颜料生产能力,并且在部分纯化的紫脓原菌IBT 11181和IBT 3645的颜料提取物中发现了N-谷氨酰单核糖胺。结论因此,考虑到子囊真菌的巨大化学多样性和生物多样性,使用化学分类学工具和真菌外泌体的先验知识是选择真菌聚酮化合物色素生产者的一种合理方法。该原理对于选择潜在安全的真菌细胞工厂非常方便,不仅适用于聚酮化合物色素,而且适用于其他具有工业重要性的聚酮化合物。尚未详细研究其生物合成的分子和遗传基础。此外,在10种化学分类学上选择的有前景的青霉菌株中,有4种在固态培养基上显示在液体培养基中产生细胞外色素,这表明聚酮化合物天然食品着色剂在细胞工厂中的可能性。

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