Changes in trigonelline (N-methylnicotinic acid) content and nicotinic acid metabolism during germination of mungbean (Phaseolus aureus) seeds

被引:52
作者
Zheng, XQ
Hayashibe, E
Ashihara, H [1 ]
机构
[1] Ochanomizu Univ, Grad Sch Humanities & Sci, Dept Adv Biosci, Grad Div Human Environm Sci,Bunkyo Ku, Tokyo 1128610, Japan
[2] Ochanomizu Univ, Fac Sci, Dept Biol, Metab Biol Grp,Bunkyo Ku, Tokyo 1138610, Japan
关键词
detoxification; mungbean; NAD metabolism; nicotinamide; nicotinic acid; Phaseolus aureus; pyridine nucleotide cycle; seed germination; translocation; trigonelline;
D O I
10.1093/jxb/eri156
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Changes in trigonelline content and in biosynthetic activity were determined in the cotyledons and embryonic axes of etiolated mungbean (Phaseolus aureus) seedlings during germination. Accumulation of trigonelline (c. 240 nmol per pair of cotyledons) was observed in the cotyledons of dry seeds; trigonelline content decreased 2 d after imbibition. Trigonelline content in the embryonic axes increased with seedling growth and reached a peak (c. 380 nmol per embryonic axis) at day 5. Trigonelline content did not change significantly during the differentiation of hypocotyls, and the concentration was greatest in the apical 5 mm. Nicotinic acid and nicotinamide were better precursors for pyridine nucleotide synthesis than quinolinic acid, but no great differences were found in the synthesis of trigonelline from these three precursors. Trigonelline synthesis was always higher in embryonic axes than in cotyledons. Activity of quinolinate phosphoribosyltransferase (EC 2.4.2.19), nicotinate phosphoribosyltransferase (EC 2.4.2.11), and nicotinamidase (EC 3.5.1.19) was found in cotyledons and embryonic axes, but no nicotinamide phosphoribosyltransferase (EC 2.4.2.12) activity was detected. It follows that quinolinic acid and nicotinic acid were directly converted to nicotinic acid mononucleotide by the respective phosphoribosyltransferases, but nicotinamide appeared to be converted to nicotinic acid mononucleotide after conversion to nicotinic acid. Trigonelline synthase (nicotinate N-methyltransferase, EC 2.1.1.7) activity increased in the embryonic axes, but decreased in cotyledons during germination. [C-14]Nicotinic acid and trigonelline absorbed by the cotyledons were transported to the embryonic axes during germination. Trigonelline had no effect on the growth of seedlings, but nicotinic acid and nicotinamide significantly inhibited the growth of roots. Based on these findings, the role of trigonelline synthesis in mungbean seedlings is discussed.
引用
收藏
页码:1615 / 1623
页数:9
相关论文
共 25 条
[1]   PYROPHOSPHATE - FRUCTOSE-6-PHOSPHATE 1-PHOSPHOTRANSFERASE AND BIOSYNTHETIC CAPACITY DURING DIFFERENTIATION OF HYPOCOTYLS OF VIGNA SEEDLINGS [J].
ASHIHARA, H ;
SATO, F .
BIOCHIMICA ET BIOPHYSICA ACTA, 1993, 1156 (02) :123-127
[2]  
ASHIHARA H, 1977, INT J BIOCHEM, V8, P461
[3]   CHANGES IN ACTIVITIES OF DENOVO AND SALVAGE PATHWAYS OF PYRIMIDINE NUCLEOTIDE BIOSYNTHESIS DURING GERMINATION OF BLACK GRAM (PHASEOLUS-MUNGO) SEEDS [J].
ASHIHARA, H .
ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1977, 81 (03) :199-211
[4]   Purine and pyrimidine metabolism in cultured white spruce (Picea glauca) cells:: Metabolic fate of 14C-labeled precursors and activity of key enzymes [J].
Ashihara, H ;
Stasolla, C ;
Loukanina, N ;
Thorpe, TA .
PHYSIOLOGIA PLANTARUM, 2000, 108 (01) :25-33
[5]   CHANGES IN ACTIVITIES OF PURINE SALVAGE AND UREIDE SYNTHESIS DURING GERMINATION OF BLACK GRAM (PHASEOLUS-MUNGO) SEEDS [J].
ASHIHARA, H .
ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1983, 113 (01) :47-60
[6]   GLUCOSE CATABOLISM DURING AGING AND DIFFERENTIATION IN HYPOCOTYLS OF PHASEOLUS-MUNGO SEEDLINGS [J].
ASHIHARA, H ;
KOMAMINE, A ;
SHIMOKORIYAMA, M .
BOTANICAL MAGAZINE-TOKYO, 1974, 87 (1006) :121-131
[7]  
ASHIHARA H, 1989, CURR SCI INDIA, V58, P889
[8]   CHEMICAL CHARACTERIZATION OF A HORMONE THAT PROMOTES CELL ARREST IN G2 IN COMPLEX TISSUES [J].
EVANS, LS ;
ALMEIDA, MS ;
LYNN, DG ;
NAKANISHI, K .
SCIENCE, 1979, 203 (4385) :1122-1123
[9]  
Evans M. L., 1984, Hormonal regulation of development II. The functions of hormones from the level of the cell to the whole plant, P23
[10]   Molecular biology of pyridine nucleotide and nicotine biosynthesis [J].
Katoh, A ;
Hashimoto, T .
FRONTIERS IN BIOSCIENCE-LANDMARK, 2004, 9 :1577-1586