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首页> 外文期刊>Microbiology >Metabolomic Profiling and Lipid Composition of Arctic and Antarctic Strains of Micromycetes Geomyces pannorum and Thelebolus microsporus Grown at Different Temperatures
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Metabolomic Profiling and Lipid Composition of Arctic and Antarctic Strains of Micromycetes Geomyces pannorum and Thelebolus microsporus Grown at Different Temperatures

机译:微核抗原性和南极菌株的代谢物分析和脂质组合物的微核和植物培训室和细胞孢子孢子树在不同的温度下生长

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Adaptive reactions of Arctic and Antarctic strains of psychrophilic micromycetes Geomyces pannorum and Thelebolus microsporus to growth within a broad temperature range were studied. Adaptation of these species to different temperatures was found to result from both morphological and biochemical changes, including changes in the concentration of small molecules and lipid membrane components. These biochemical, morphological, and physiological mechanisms exhibited the patterns common to all strains, as well as species and strain differences. The general patterns included temperature-dependent changes in amounts of monosaccharides, some disaccharides, and free linoleic and linolenic acids. The differences between the Arctic and Antarctic strains were mainly associated with the differences in lipid composition, while interspecies differences resulted from metabolomic modifications. Antarctic strains showed lower ability to survive elevated temperatures, which correlated with weaker manifestation of the lipid-dependent adaptive mechanisms compared to the Arctic strains. Among the interstrain differences, higher growth parameters and mannitol accumulation were found in the Arctic isolates. Adaptation of T. microsporus was characterized by more diverse changes in the concentrations of small organic molecules in the metabolome profile and by pronounced changes in mycelial morphology. The results of metabolomic analysis and their subsequent treatment by the methods of multivariant statistics supported the suggestion of higher dispersion of metabolomic characteristics under unfavorable conditions and of lower dispersion of metabolomic data under optimal conditions.
机译:研究了北极和南极菌株的适应性反应,心理学微核特征培序和Thelebolus microcurus在宽温度范围内的生长。发现这些物种对不同温度的适应导致形态学和生物化学变化,包括小分子和脂质膜组分浓度的变化。这些生化,形态学和生理机制表现出所有菌株的模式,以及物种和菌株差异。一般图案包括单糖,一些二糖和游离亚油酸和亚麻酸的量的温度依赖性变化。北极和南极菌株之间的差异主要与脂质组合物的差异相关,而代谢组成的差异差异。南极菌株显示出较低的升高温度的能力,与脂质依赖性适应机制的较弱表现相关,与北极菌株相比。在北极分离物中发现了较高的差异,较高的生长参数和甘露醇积累。 T. microsporus的适应性的特征在于代谢物概况中的小有机分子的浓度和菌丝体形态的明显变化,其特征在于更多样化的变化。代谢组分分析的结果及其随后的多变量统计方法治疗支持在不利条件下和在最佳条件下降低代谢组数据的代谢组特征较高分散的建议。

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