莱茵衣藻
硫黄
营养物
生物化学
生物量(生态学)
氮缺乏
化学
质谱法
高丝氨酸
生物
食品科学
氮气
色谱法
群体感应
生态学
基因
突变体
有机化学
毒力
作者
Dawei Yang,Donghui Song,Tobias Kind,Yan Ma,Jens Hoefkens,Oliver Fiehn
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2015-09-16
卷期号:10 (9): e0137948-e0137948
被引量:77
标识
DOI:10.1371/journal.pone.0137948
摘要
Chlamydomonas reinhardtii accumulates lipids under complete nutrient starvation conditions while overall growth in biomass stops. In order to better understand biochemical changes under nutrient deprivation that maintain production of algal biomass, we used a lipidomic assay for analyzing the temporal regulation of the composition of complex lipids in C. reinhardtii in response to nitrogen and sulfur deprivation. Using a chip-based nanoelectrospray direct infusion into an ion trap mass spectrometer, we measured a diversity of lipid species reported for C. reinhardtii, including PG phosphatidylglycerols, PI Phosphatidylinositols, MGDG monogalactosyldiacylglycerols, DGDG digalactosyldiacylglycerols, SQDG sulfoquinovosyldiacylglycerols, DGTS homoserine ether lipids and TAG triacylglycerols. Individual lipid species were annotated by matching mass precursors and MS/MS fragmentations to the in-house LipidBlast mass spectral database and MS2Analyzer. Multivariate statistics showed a clear impact on overall lipidomic phenotypes on both the temporal and the nutrition stress level. Homoserine-lipids were found up-regulated at late growth time points and higher cell density, while triacyclglycerols showed opposite regulation of unsaturated and saturated fatty acyl chains under nutritional deprivation.
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