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首页> 外文期刊>Applied and Environmental Microbiology >Influence of Fatty Acid Precursors, Including Food Preservatives, on the Growth and Fatty Acid Composition of Listeria monocytogenes at 37 and 10°C
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Influence of Fatty Acid Precursors, Including Food Preservatives, on the Growth and Fatty Acid Composition of Listeria monocytogenes at 37 and 10°C

机译:脂肪酸前体(包括食品防腐剂)对单核细胞增生李斯特菌在37和10°C下生长和脂肪酸组成的影响

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摘要

Listeria monocytogenes is a food-borne pathogen that grows at refrigeration temperatures and increases its content of anteiso-C15:0 fatty acid, which is believed to be a homeoviscous adaptation to ensure membrane fluidity, at these temperatures. As a possible novel approach for control of the growth of the organism, the influences of various fatty acid precursors, including branched-chain amino acids and branched- and straight-chain carboxylic acids, some of which are also well-established food preservatives, on the growth and fatty acid composition of the organism at 37°C and 10°C were studied in order to investigate whether the organism could be made to synthesize fatty acids that would result in impaired growth at low temperatures. The results indicate that the fatty acid composition of L. monocytogenes could be modulated by the feeding of branched-chain amino acid, C4, C5, and C6 branched-chain carboxylic acid, and C3 and C4 straight-chain carboxylic acid fatty acid precursors, but the growth-inhibitory effects of several preservatives were independent of effects on fatty acid composition, which were minor in the case of preservatives metabolized via acetyl coenzyme A. The ability of a precursor to modify fatty acid composition was probably a reflection of the substrate specificities of the first enzyme, FabH, in the condensation of primers of fatty acid biosynthesis with malonyl acyl carrier protein.
机译:单核细胞增生李斯特菌是一种食源性病原体,在致冷温度下生长并增加其前异C15:0脂肪酸的含量,据信这是在这些温度下可确保膜流动性的顺势适应性。作为控制生物体生长的一种可能的新方法,各种脂肪酸前体的影响包括支链氨基酸以及支链和直链羧酸,其中一些也是公认的食品防腐剂。为了研究是否可以使该生物体合成脂肪酸而导致低温生长受损,研究了该生物体在37°C和10°C下的生长和脂肪酸组成。结果表明,单核细胞增生李斯特氏菌的脂肪酸组成可以通过支链氨基酸,C4,C5和C6支链羧酸以及C3和C4直链羧酸脂肪酸前体的进料来调节,但是几种防腐剂的生长抑制作用独立于对脂肪酸组成的影响,对于通过乙酰辅酶A代谢的防腐剂而言,这种影响很小。前体修饰脂肪酸组成的能力可能反映了底物特异性脂肪酸生物合成的引物与丙二酸酰基载体蛋白的缩合反应中的第一种酶FabH的合成。

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