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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Favored isolation and rapid identification of the astaxanthin-producing yeast xanthophyllomyces dendrorhous(phaffia rhodozyma) from environmental samples
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Favored isolation and rapid identification of the astaxanthin-producing yeast xanthophyllomyces dendrorhous(phaffia rhodozyma) from environmental samples

机译:从环境样品中有利于分离和快速鉴定产生虾青素的酵母黄腐菌(Daffrhodozys)

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摘要

Xanthophyllomyces dendrorhous (Phaffia rhodozyma) yeasts are biotechnologically exploited as a natural source of astaxanthin for aquaculture. Based on results of recent studies, it has become clear that this species possesses a greater genetic variability generating the necessity to uncover it and assess its potential for the astaxanthin industry. However, difficulties for the isolation of the X. dendrorhous hinder extensive environmental surveys which need to be carried out to better understand the habitat, distribution and genetic diversity of this species. We extensively searched for distinctive physiological traits of X. dendrorhours by testing phenotypic properties simultaneously with a panel of common sympatric fungi. As a result we obtained a new and innovative strategy for improving X. dendrorhous recovery rate and identification from environmental samples. This strategy involved the use of trehalose-based media, and a rapid X. dendrorhous identification method based on the simultaneous spectrophotometric detection of astaxanthin and UV-absorbing compounds (mycosporines). The proposed procedures proved effective in field trials conducted in natural environments of Patagonia (Argentina) and thus represent an important tool for the discovery of new astaxanthin-producing strains of X. dendrorhous useful for the aquaculture industry.
机译:生物技术上利用黄腐菌(红发夫酵母)酵母作为虾青素的天然来源用于水产养殖。根据最近的研究结果,很明显该物种具有更大的遗传变异性,因此有必要对其进行发现并评估其在虾青素产业中的潜力。但是,分离X. dendrorhous的困难阻碍了广泛的环境调查,需要进行调查以更好地了解该物种的栖息地,分布和遗传多样性。通过与一组常见的同胞真菌同时测试表型特性,我们广泛地搜索了X. dendrorhours的独特生理特性。结果,我们获得了一种新的创新策略,可提高环境中X. dendrorhous的回收率和鉴定率。该策略涉及使用基于海藻糖的培养基,以及基于虾青素和紫外线吸收化合物(霉菌素)同时分光光度法检测的快速X. dendrorhous鉴定方法。所提出的方法在巴塔哥尼亚(阿根廷)的自然环境中进行的田间试验中证明是有效的,因此是发现可用于水产养殖业的新产虾青素的X. dendrorhous菌株的重要工具。

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