期刊
PLANT BIOLOGY
卷 16, 期 3, 页码 594-606出版社
WILEY
DOI: 10.1111/plb.12094
关键词
Lycopersicum esculentum; 13C label; metabolome; cell culture; low O2 stress
资金
- KU Leuven [DBOF/08/033]
The storage of fruits and vegetables under a controlled atmosphere can induce low oxygen stress, which can lead to post-harvest losses through the induction of disorders such as core breakdown and browning. To gain better understanding of the metabolic response of plant organs to low oxygen, cultured tomato cells (Lycopersicum esculentum) were used as a model system to study the metabolic stress response to low oxygen (0 and 1kPa O-2). By adding C-13 labelled glucose, changes in the levels of polar metabolites and their C-13 label accumulation were quantified. Low oxygen stress altered the metabolite profile of tomato cells, with the accumulation of the intermediates of glycolysis in addition to increases in lactate and sugar alcohols. C-13 label data showed reduced label accumulation in almost all metabolites except lactate and some sugar alcohols. The results showed that low oxygen stress in tomato cell culture activated fermentative metabolism and sugar alcohol synthesis while inhibiting the activity of the TCA cycle and the biosynthesis of metabolites whose precursors are derived from central metabolism, including fluxes to most organic acids, amino acids and sugars.
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