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印度产解脂假丝酵母的二态性和碳氢化合物代谢。

Dimorphism and hydrocarbon metabolism in Yarrowia lipolytica var. indica.

机构信息

Biochemical Sciences Division, National Chemical Laboratory, Pune, 411008, India.

出版信息

Arch Microbiol. 2014 Aug;196(8):545-56. doi: 10.1007/s00203-014-0990-2. Epub 2014 May 20.

DOI:10.1007/s00203-014-0990-2
PMID:24842274
Abstract

Yarrowia lipolytica is able to metabolize high Mr hydrophobic natural compounds such as fatty acids and hydrocarbons. Characteristically, strains of Y. lipolytica can grow as populations with variable proportions of yeast and filamentous forms. In the present study, we describe the dimorphic characteristics of a variant designated as Y. lipolytica var. indica isolated from petroleum contaminated sea water and the effect of cell morphology on hydrocarbon metabolism. The variant behaved as a yeast monomorphic strain, under conditions at which terrestrial Y. lipolytica strain W29 and its derived strains, grow as almost uniform populations of mycelial cells. Using organic nitrogen sources and N-acetylglucosamine as carbon source, var. indica was able to form mycelial cells, the proportion of which increased when incubated under semi-anaerobic conditions. The cell surface characteristics of var. indica and W29 were found to be different with respect to contact angle and percent hydrophobicity. For instance, percent hydrophobicity of var. indica was 89.93 ± 1.95 while that of W29 was 70.78 ± 1.1. Furthermore, while all tested strains metabolize hydrocarbons, only var. indica was able to use it as a carbon source. Yeast cells of var. indica metabolized hexadecane with higher efficiency than the mycelial form, whereas the mycelial form of the terrestrial strain metabolized the hydrocarbon more efficiently, as occurred with the mycelial monomorphic mutant AC11, compared to the yeast monomorphic mutant AC1.

摘要

解脂耶氏酵母能够代谢高 Mr 疏水性天然化合物,如脂肪酸和烃类。典型地,解脂耶氏酵母菌株可以以具有不同比例酵母和丝状形式的群体生长。在本研究中,我们描述了一种从石油污染海水中分离的变体的两态特征,以及细胞形态对烃类代谢的影响。该变体表现为酵母单态菌株,在这种条件下,陆地解脂耶氏酵母菌株 W29 及其衍生菌株几乎以均匀的丝状细胞群体生长。使用有机氮源和 N-乙酰葡萄糖胺作为碳源,变体可以形成丝状细胞,当在半厌氧条件下孵育时,其比例增加。发现变体 indica 和 W29 的细胞表面特性在接触角和疏水性百分比方面存在差异。例如,变体 indica 的疏水性百分比为 89.93±1.95,而 W29 的疏水性百分比为 70.78±1.1。此外,虽然所有测试的菌株都能代谢烃类,但只有变体 indica 能够将其用作碳源。变体 indica 的酵母细胞代谢十六烷的效率高于丝状形式,而陆地菌株的丝状形式代谢烃类的效率更高,这与酵母单态突变体 AC1 相比,类似于丝状单态突变体 AC11。

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