首页> 美国卫生研究院文献>Journal of Fungi >Development of an Improved Carotenoid Extraction Method to Characterize the Carotenoid Composition under Oxidative Stress and Cold Temperature in the Rock Inhabiting Fungus Knufia petricola A95
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Development of an Improved Carotenoid Extraction Method to Characterize the Carotenoid Composition under Oxidative Stress and Cold Temperature in the Rock Inhabiting Fungus Knufia petricola A95

机译:改进的类胡萝卜素提取方法的开发以表征岩生真菌Knufia petricola A95在氧化应激和低温下的类胡萝卜素成分

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摘要

Black yeasts are a highly specified group of fungi, which are characterized by a high resistance against stress factors. There are several factors enabling the cells to survive harsh environmental conditions. One aspect is the pigmentation, the melanin black yeasts often display a highly diverse carotenoid spectrum. Determination and characterization of carotenoids depend on an efficient extraction and separation, especially for black yeast, which is characterized by thick cell walls. Therefore, specific protocols are needed to ensure reliable analyses regarding stress responses in these fungi. Here we present both. First, we present a method to extract and analyze carotenoids and secondly we present the unusual carotenoid composition of the black yeast Knufia petricola A95. Mechanical treatment combined with an acetonitrile extraction gave us very good extraction rates with a high reproducibility. The presented extraction and elution protocol separates the main carotenoids (7) in K. petricola A95 and can be extended for the detection of additional carotenoids in other species. K. petricola A95 displays an unusual carotenoid composition, with mainly didehydrolycopene, torulene, and lycopene. The pigment composition varied in dependency to oxidative stress but remained relatively constant if the cells were cultivated under low temperature. Future experiments have to be carried out to determine if didehydrolycopene functions as a protective agent itself or if it serves as a precursor for antioxidative pigments like torulene and torularhodin, which could be produced after induction under stress conditions. Black yeasts are a promising source for carotenoid production and other substances. To unravel the potential of these fungi, new methods and studies are needed. The established protocol allows the determination of carotenoid composition in black yeasts.
机译:黑酵母是高度指定的真菌类,其特征在于对应激因素的高抗性。有多种因素使细胞能够在恶劣的环境条件下生存。一方面是色素沉着,黑色素黑酵母通常显示出高度多样化的类胡萝卜素光谱。类胡萝卜素的测定和表征取决于有效的提取和分离,尤其是对于黑酵母,其特征在于细胞壁厚。因此,需要特定的协议以确保有关这些真菌中应激反应的可靠分析。在这里,我们介绍两个。首先,我们提出了一种提取和分析类胡萝卜素的方法,其次,我们提出了黑酵母小核糖核酸A95的不寻常类胡萝卜素成分。机械处理与乙腈萃取相结合,为我们提供了极高的萃取率和高重现性。提出的提取和洗脱方案分离了K. petricola A95中的主要类胡萝卜素(7),并且可以扩展用于检测其他物种中的其他类胡萝卜素。 K. petricola A95显示出不同寻常的类胡萝卜素成分,主要含有双脱氢番茄红素,甲苯和番茄红素。颜料组成随氧化应激而变化,但是如果在低温下培养细胞则保持相对恒定。必须进行进一步的实验以确定二氢番茄红素本身是否起保护剂的作用,或者是否充当抗氧化颜料(如甲苯和托拉杜丁)的前体,可以在应力条件下诱导后产生。黑酵母是类胡萝卜素生产和其他物质的有希望的来源。为了揭示这些真菌的潜力,需要新的方法和研究。建立的协议可以确定黑酵母中的类胡萝卜素成分。

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