The relative importance of tryptophan-dependent and tryptophan-independent biosynthesis of indole-3-acetic acid in tobacco during vegetative growth

被引:41
作者
Sitbon, F
Åstot, C
Edlund, A
Crozier, A
Sandberg, G [1 ]
机构
[1] Swedish Univ Agr Sci, Dept Forest Genet & Plant Physiol, S-90183 Umea, Sweden
[2] Univ Glasgow, Inst Biomed & Life Sci, Div Biochem & Mol Biol, Glasgow G12 8QQ, Lanark, Scotland
关键词
indole-3-acetic acid (turnover; metabolism); tryptophan (IAA biosynthesis); Nicotiana (IAA biosynthesis);
D O I
10.1007/s004250000338
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A quantitative study of indole-3-acetic acid (IAA) turnover, and the contribution of tryptophan-dependent and tryptophan-independent IAA-biosynthesis pathways, was carried out using protoplast preparations and shoot apices obtained from wild-type and transgenic, IAA-overproducing tobacco (Nicotiana tabacum L.) plants, during a phase of growth when the level of endogenous IAA was stable. Based on the rate of disappearance of [C-13(6)]IAA, the half-life of the IAA pool was calculated to bt 1.1 h in wild-type protoplasts and 0.8 h ill protoplasts from the IAA-overproducing lille, corresponding to metabolic rates of 59 and 160 pg IAA (mug Chl)(-1) h(-1), respectively. The rate of conversion of tryptophan to IAA was 15 pg IAA (mug Chl)(-1) h(-1) in wild-type protoplasts and 101 pg IAA (mug Chl)(-1) h(-1) in protoplasts from IAA-overproducing plants. In both instances, IAA was metabolised more rapidly than it was synthesised fi om tryptophan. As the endogenous IAA pools were in a steady state, these findings indicate that IAA biosynthesis via the tryptophan-independent pathway was 44 pg IAA (mug Chl)(-1) h(-1) and 59 pg IAA (mug Chl)(-1) h(-1), respectively, in the wild-type and transformed protoplast preparations. In a parallel study with apical shoot tissue, the presumed site of IAA biosynthesis, the rate of tryptophan-dependent IAA biosynthesis exceeded the rate of metabolism of [C-13(6)]IAA despite the steady state of the endogenous IAA pool. The most likely explanation for this anomaly is that, unlike substrates into the protoplast system, the apical tissues did injection of not result in uniform distribution of label, and that at least some of the [H-2(5)]tryptophan was metabolised in compartments not normally active in IAA biosynthesis. This demonstrates the importance of using experimental systems where labelling of the precursor pool can be strictly controlled.
引用
收藏
页码:715 / 721
页数:7
相关论文
共 21 条
[1]   STABLE ISOTOPE LABELING, INVIVO, OF D-TRYPTOPHAN AND L-TRYPTOPHAN POOLS IN LEMNA-GIBBA AND THE LOW INCORPORATION OF LABEL INTO INDOLE-3-ACETIC-ACID [J].
BALDI, BG ;
MAHER, BR ;
SLOVIN, JP ;
COHEN, JD .
PLANT PHYSIOLOGY, 1991, 95 (04) :1203-1208
[2]  
Bartel Bonnie, 1997, Annu Rev Plant Physiol Plant Mol Biol, V48, P51, DOI 10.1146/annurev.arplant.48.1.51
[3]   AUXIN BIOSYNTHESIS DURING SEED-GERMINATION IN PHASEOLUS-VULGARIS [J].
BIALEK, K ;
MICHALCZUK, L ;
COHEN, JD .
PLANT PHYSIOLOGY, 1992, 100 (01) :509-517
[4]   A COMMENT ON SPECTROPHOTOMETRIC DETERMINATION OF CHLOROPHYLL [J].
BRUINSMA, J .
BIOCHIMICA ET BIOPHYSICA ACTA, 1961, 52 (03) :576-&
[5]   CHEMISTRY AND PHYSIOLOGY OF THE BOUND AUXINS [J].
COHEN, JD ;
BANDURSKI, RS .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1982, 33 :403-430
[6]  
COONEY TP, 1991, PLANTA, V184, P368, DOI 10.1007/BF00195339
[7]   A MICROSCALE TECHNIQUE FOR GAS-CHROMATOGRAPHY MASS-SPECTROMETRY MEASUREMENTS OF PICOGRAM AMOUNTS OF INDOLE-3-ACETIC-ACID IN PLANT-TISSUES [J].
EDLUND, A ;
EKLOF, S ;
SUNDBERG, B ;
MORITZ, T ;
SANDBERG, G .
PLANT PHYSIOLOGY, 1995, 108 (03) :1043-1047
[8]   METABOLISM AND SYNTHESIS OF INDOLE-3-ACETIC-ACID (IAA) IN ZEA-MAYS [J].
JENSEN, PJ ;
BANDURSKI, RS .
PLANT PHYSIOLOGY, 1994, 106 (01) :343-351
[9]  
Koshiba T, 1995, PLANT CELL PHYSIOL, V36, P1503
[10]   REGULATION OF INDOLE-3-ACETIC-ACID BIOSYNTHETIC PATHWAYS IN CARROT CELL-CULTURES [J].
MICHALCZUK, L ;
RIBNICKY, DM ;
COOKE, TJ ;
COHEN, JD .
PLANT PHYSIOLOGY, 1992, 100 (03) :1346-1353