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首页> 外文期刊>Microbiology >Strains of Bacillus cereus vary in the phenotypic adaptation of their membrane lipid composition in response to low water activity, reduced temperature and growth in rice starch
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Strains of Bacillus cereus vary in the phenotypic adaptation of their membrane lipid composition in response to low water activity, reduced temperature and growth in rice starch

机译:芽孢杆菌的菌株在其膜脂质组合物的表型适应响应于低水量,降低温度和水稻淀粉的生长而变化

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The phenotypic adaptation of membrane lipids in seven strains of the food-poisoning bacterium Bacillus cereus, isolated from Bangladeshi rice, is reported in relation to their ability to grow under conditions of low water activity (aw), reduced temperature and the presence of soluble rice starch. The strains have different membrane phospholipid head-group and fatty acyl compositions, and they display individual differences in their responses to both low aw and reduced temperature. The extent of the increase in anionic membrane lipids in response to low aw varies from strain to strain, is solute specific and in one strain does not occur. Growth is stimulated by the presence of soluble rice starch and results in a large rise in the proportion of diphosphatidylglycerol (DPG) at the expense of phosphatidylglycerol (PG), without any change in the proportion of total anionic phospholipids. Growth at 15?°C compared with 37?°C increases the proportions of DPG and phosphatidylethanolamine at the expense of PG. At the lower temperature there are changes in phospholipid fatty acyl composition characteristic of those expected to maintain membrane fluidity, including increases in the amount of total branched fatty acids and the anteiso-/iso-branched ratio, and a decrease in the equivalent chain-length, but there are strain differences in how those changes were achieved. In contrast to some other bacilli, there are persistent large increases in the proportions of unsaturated fatty acyl chains in phospholipids during growth at 15?°C.
机译:据报道,从孟加拉国米饭中分离的食物中毒菌株芽孢杆菌血管芽孢杆菌在孟加拉国水稻(AW),降低温度降低和可溶性水稻的存在的情况下,据型膜脂质的表型适应淀粉。菌株具有不同的膜磷脂头组和脂肪酰基组合物,它们对其对低AW和降低的温度的反应显示各个差异。阴离子膜脂质的增加响应于LOW AW的增加程度因菌株而异,是特异性的并且在一种菌株中不会发生。通过溶性水稻淀粉的存在刺激生长,并导致二磷脂酰基甘油(DPG)的比例较大,以磷脂酰甘油(PG)的牺牲,而无需全阴离子磷脂的比例的任何变化。与37°C相比,15°C的生长增加了DPG和磷脂酰乙醇胺以牺牲PG的比例。在较低的温度下,存在预期的磷脂脂肪酰基组合物的变化,预期保持膜流动性,包括总支链脂肪酸的量和脱离脂肪酸的量增加,以及等效链长的减少,但如何实现这些变化的应变差异。与其他一些杆菌相比,磷脂在15Ω·℃的生长期间的不饱和脂肪酰基链的比例持续大增加。

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