Taylor Catherine J, Anderson Alistair J, Wilkinson Stephen G
Departments of Chemistry, University of Hull, Hull HU6 7RX, UK.
Departments of Chemistry and Biological Sciences, University of HullHull HU6 7RXUK.
Microbiology (Reading). 1998 Jul;144 ( Pt 7):1737-1745. doi: 10.1099/00221287-144-7-1737.
Burkholderia cepacia produces an unusual range of polar lipids, which includes two forms each of phosphatidylethanolamine (PE) and ornithine amide lipid (OL), differing in the presence or absence of 2-hydroxy fatty acids. By using chemostat cultures in chemically defined media, variations in the lipid content and the proportions of individual lipids have been studied as a function of (a) growth temperature, (b) growth rate and (c) growth-limiting nutrient (carbon, magnesium, phosphorus or oxygen). Total cellular lipid in carbon-limited cultures was lowest at high growth temperatures and low growth rates. Increases in growth temperature over the range 25-40 degrees C led to increases in the proportions of molecular species of PE and OL containing 2-hydroxy acids, without changing the PE:OL ratio. Growth temperature did not alter the balance between neutral and acidic lipids, but the contribution of phosphatidylglycerol to the latter increased with rising growth temperature and growth rate. Pigmentation of cells and the presence of flagella were also temperature-dependent. Change in growth rate also affected the PE:OL ratio and the extent to which monoenoic acids were replaced by their cyclopropane derivatives. Whereas similar lipid profiles were found for carbon-, magnesium- and oxygen-limited cultures, ornithine amides were the only polar lipids detected in phosphorus-limited cells.
洋葱伯克霍尔德菌产生一系列不同寻常的极性脂质,其中包括磷脂酰乙醇胺(PE)和鸟氨酸酰胺脂质(OL)各有两种形式,它们在是否含有2-羟基脂肪酸方面存在差异。通过在化学成分明确的培养基中进行恒化器培养,研究了脂质含量和各脂质比例随以下因素的变化:(a)生长温度,(b)生长速率,以及(c)生长限制营养物(碳、镁、磷或氧)。在碳限制培养中,总细胞脂质在高生长温度和低生长速率下最低。在25-40摄氏度范围内,生长温度升高导致含2-羟基酸的PE和OL分子种类比例增加,而PE:OL比值不变。生长温度并未改变中性脂质和酸性脂质之间的平衡,但磷脂酰甘油对酸性脂质的贡献随着生长温度和生长速率的升高而增加。细胞的色素沉着和鞭毛的存在也与温度有关。生长速率的变化也影响PE:OL比值以及单烯酸被其环丙烷衍生物取代的程度。虽然在碳限制、镁限制和氧限制培养中发现了相似的脂质谱,但在磷限制细胞中检测到的唯一极性脂质是鸟氨酸酰胺。