β-ODAP accumulation could be related to low levels of superoxide anion and hydrogen peroxide in Lathyrus sativus L

Level of the neuroexcitatory β- N-oxalyl-L-α,β-diaminopropionic acid (β-ODAP) in grass pea ( Lathyrus sativus L.) varies with development and environmental stress. Reactive oxygen species (ROS) (mainly O 2 − and H 2O 2) are frequently reported to play important roles in plant development and in resp...

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Veröffentlicht in:Food and chemical toxicology 2011-03, Vol.49 (3), p.556-562
Hauptverfasser: Jiao, C.-J., Jiang, J.-L., Li, C., Ke, L.-M., Cheng, W., Li, F.-M., Li, Z.-X., Wang, C.-Y.
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Sprache:eng
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Zusammenfassung:Level of the neuroexcitatory β- N-oxalyl-L-α,β-diaminopropionic acid (β-ODAP) in grass pea ( Lathyrus sativus L.) varies with development and environmental stress. Reactive oxygen species (ROS) (mainly O 2 − and H 2O 2) are frequently reported to play important roles in plant development and in response to various stresses. To investigate the possible inter-relationship between contents of β-ODAP and ROS, grass pea leaves have been analyzed for contents of β-ODAP, O 2 − and H 2O 2. The results showed that leaves containing high levels of β-ODAP, exhibited low levels of O 2 − and H 2O 2, while leaves with high contents of O 2 − and H 2O 2 accumulated little β-ODAP. The application of pyridine or ABA which inhibit the production of O 2 − or H 2O 2 led to an increase in β-ODAP contents in intact or detached young leaves, whereas inhibition of catalase activity using AT (3-amino-1,2,4-triazole), leading to an increase in H 2O 2 content, result in significant decrease in β-ODAP levels of detached young leaves. In addition, inoculation of Rhizobium to young seedlings enhanced O 2 − and H 2O 2 levels, but reduced β-ODAP contents in shoots. These results suggest that β-ODAP accumulation could be related to low levels of superoxide anion and hydrogen peroxide in grass pea tissues.
ISSN:0278-6915
1873-6351
DOI:10.1016/j.fct.2010.05.054