Indole-3-butyric acid biosynthesis in maize is enhanced by cyclohexanedione herbicides

被引:3
|
作者
Ludwig-Müller, J
Schubert, B
Rademacher, W
Hilgenberg, W
机构
[1] Tech Univ Dresden, Inst Bot, D-01062 Dresden, Germany
[2] Goethe Univ Frankfurt, Inst Bot, D-60054 Frankfurt, Germany
[3] BASF AG, Ctr Agr, D-67114 Limburgerhof, Germany
关键词
D O I
10.1111/j.1399-3054.2000.1100418.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
It has recently been shown that indole-3-butyric acid (IBA) is formed in maize, via acetylation of indoleacetic acid, by a microsomal membrane fraction, ATP and acetyl-CoA. A similarity of this reaction to the carboxylation of acetyl-CoA is proposed and therefore the effects of herbicides specific for the inhibition of acetyl-CoA carboxylase were tested on IBA synthesis. Aryloxyphenoxypropionates and cyclohexanediones inhibited the growth of the maize seedlings as predicted, whereas IBA biosynthesis was promoted after the application of cyclohexanediones. Herbicides with different targets, however, did not increase IBA synthesis, IBA synthetase was not influenced in sethoxydim-tolerant maize seedlings as compared to susceptible plants. It was shown that IBA synthetase from dicotyledonons plants was not affected by sethoxydim application, whereas IBA synthesis in wheat was modulated in the same may as in maize.
引用
收藏
页码:544 / 550
页数:7
相关论文
共 50 条
  • [41] UPTAKE AND METABOLISM OF INDOLE-3-BUTYRIC ACID AND INDOLE-3-ACETIC-ACID BY PETUNIA CELL-SUSPENSION CULTURE
    EPSTEIN, E
    SAGEE, O
    ZELCER, A
    PLANT GROWTH REGULATION, 1993, 13 (01) : 31 - 40
  • [42] Conversion of Endogenous Indole-3-Butyric Acid to Indole-3-Acetic Acid Drives Cell Expansion in Arabidopsis Seedlings
    Strader, Lucia C.
    Culler, Angela Hendrickson
    Cohen, Jerry D.
    Bartel, Bonnie
    PLANT PHYSIOLOGY, 2010, 153 (04) : 1577 - 1586
  • [43] Electrochemical determination of indole-3-acetic acid and indole-3-butyric acid using HPLC with carbon felt detector
    Hana Dejmkova
    Marjorie de Araújo Daniel
    Monatshefte für Chemie - Chemical Monthly, 2019, 150 : 439 - 442
  • [44] The effects of indole-3-butyric acid and 6-benzyloaminopuryn on Fabaceae plants morphometrics
    Sosnowski, Jacek
    Krol, Justyna
    Truba, Milena
    JOURNAL OF PLANT INTERACTIONS, 2019, 14 (01) : 603 - 609
  • [45] Synthesis and characterization of indole-3-butyric acid/hydrotalcite-like compound nanohybrids
    Qiu, De-peng
    Hou, Wan-guo
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2009, 336 (1-3) : 12 - 17
  • [46] Neurotoxic and immunotoxic effects of Indole-3-butyric acid on rats at subacute and subchronic exposure
    Yilmaz, Zeycan
    Celik, Ismail
    NEUROTOXICOLOGY, 2009, 30 (03) : 382 - 385
  • [47] INDOLE-3-BUTYRIC ACID IN ARABIDOPSIS-THALIANA .1. IDENTIFICATION AND QUANTIFICATION
    LUDWIGMULLER, J
    SASS, S
    SUTTER, EG
    WODNER, M
    EPSTEIN, E
    PLANT GROWTH REGULATION, 1993, 13 (02) : 179 - 187
  • [48] DETERMINATION OF INDOLE-3-BUTYRIC ACID IN PLANT CULTURE-MEDIUM BY FLUORESCENCE DERIVATIZATION
    SANCHEZ, FG
    RUIZ, CC
    BAYONA, AH
    MICROCHEMICAL JOURNAL, 1991, 43 (03) : 222 - 228
  • [49] DDQ catalyzed oxidative lactonization of indole-3-butyric acids
    Nixarlidis, Christos
    Chisholm, John D.
    RSC ADVANCES, 2024, 14 (33) : 24207 - 24211
  • [50] Impact of Indole-3-Butyric Acid on Adventitious Root Development from Cuttings of Tea
    Mello, Simone da Costa
    Angelotti-Mendonca, Jessika
    Riboldi, Lucas Baiochi
    Campo Dall'Orto, Luigi Tancredi
    Suguino, Eduardo
    HORTTECHNOLOGY, 2016, 26 (05) : 599 - 603