Grossmann K, Kwiatkowski J, Tresch S
BASF Agricultural Center Limburgerhof, D-67114 Limburgerhof, Germany.
J Exp Bot. 2001 Sep;52(362):1811-6. doi: 10.1093/jexbot/52.362.1811.
The phytotoxic effects of auxin herbicides, including the quinoline carboxylic acids quinmerac and quinclorac, the benzoic acid dicamba and the pyridine carboxylic acid picloram, were studied in relation to changes in phytohormonal ethylene and abscisic acid (ABA) levels and the production of H(2)O(2) in cleavers (Galium aparine). When plants were root-treated with 10 microM quinmerac, ethylene synthesis was stimulated in the shoot tissue, accompanied by increases in immunoreactive levels of ABA and its precursor xanthoxal. It has been demonstrated that auxin herbicide-stimulated ethylene triggers ABA biosynthesis. The time-course and dose-response of ABA accumulation closely correlated with reductions in stomatal aperture and CO(2) assimilation and increased levels of hydrogen peroxide (H(2)O(2)), deoxyribonuclease (DNase) activity and chlorophyll loss. The latter parameters were used as sensitive indicators for the progression of tissue damage. On a shoot dry weight basis, DNase activity and H(2)O(2) levels increased up to 3-fold, relative to the control. Corresponding effects were obtained using auxin herbicides from the other chemical classes or when ABA was applied exogenously. It is hypothesized, that auxin herbicides stimulate H(2)O(2) generation which contributes to the induction of cell death in Galium leaves. This overproduction of H(2)O(2) could be triggered by the decline of photosynthetic activity, due to ABA-mediated stomatal closure.
研究了包括喹啉羧酸类的灭草喹和二氯喹啉酸、苯甲酸类的麦草畏以及吡啶羧酸类的毒莠定在内的生长素类除草剂对猪殃殃(Galium aparine)植物激素乙烯和脱落酸(ABA)水平变化以及过氧化氢(H₂O₂)产生的植物毒性作用。当用10微摩尔/升的灭草喹对植物进行根部处理时,地上部组织中的乙烯合成受到刺激,同时ABA及其前体黄嘌呤醛的免疫反应水平增加。已经证明,生长素类除草剂刺激产生的乙烯会触发ABA生物合成。ABA积累的时间进程和剂量反应与气孔孔径减小、CO₂同化作用降低以及过氧化氢(H₂O₂)水平升高、脱氧核糖核酸酶(DNase)活性增强和叶绿素损失密切相关。后几个参数被用作组织损伤进展的敏感指标。以地上部干重为基础,DNase活性和H₂O₂水平相对于对照增加了3倍。使用其他化学类别的生长素类除草剂或外源施用ABA时也获得了相应的效果。据推测,生长素类除草剂刺激H₂O₂的产生,这有助于诱导猪殃殃叶片中的细胞死亡。由于ABA介导的气孔关闭导致光合活性下降,可能会引发H₂O₂的过量产生。