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Effect of the Defoliant Thidiazuron on Ethylene Evolution from Mung Bean Hypocotyl Segments

机译:脱硫噻二唑对绿豆下胚轴段乙烯释放的影响

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摘要

The effect of the defoliant thidiazuron (N-phenyl-N′1,2,3-thiadiazol-5-ylurea) on ethylene evolution from etiolated mung bean hypocotyl segments was examined. Treatment of hypocotyl segments with concentrations of thidiazuron equal to or greater than 30 nanomolar stimulated ethylene evolution. Increased rates of ethylene evolution from thidiazuron-treated tissues could be detected within 90 minutes of treatment and persisted up to 30 hours after treatment. Radioactive methionine was readily taken up by thidiazuron-treated tissues and was converted to ethylene, 1-aminocyclopropane-1-carboxylic acid (ACC) and an acidic conjugate of ACC. Aminoethoxyvinylglycine, aminooxyacetic acid, cobalt chloride, and α-aminoisobutyric acid reduced ethylene evolution from treated tissues. An increase in the endogenous content of free ACC coincided with the increase in ethylene evolution following thidiazuron treatment. Uptake and conversion of exogenous ACC to ethylene were not affected by thidiazuron treatment. No increases in the extractable activities of ACC synthase were detected following thidiazuron treatment.
机译:考察了脱叶噻唑隆(N-苯基-N'1,2,3-噻二唑-5-基脲)对从黄化的绿豆下胚轴部分释放乙烯的影响。用噻唑隆的浓度等于或大于30纳摩尔刺激下胚轴节段刺激乙烯释放。可以在治疗90分钟内检测到从噻唑隆处理过的组织中释放出的乙烯的速率增加,并且持续至治疗后30小时。噻吩隆处理过的组织容易吸收放射性蛋氨酸,并转化为乙烯,1-氨基环丙烷-1-羧酸(ACC)和ACC的酸性共轭物。氨基乙氧基乙烯基甘氨酸,氨基氧基乙酸,氯化钴和α-氨基异丁酸可减少受治疗组织的乙烯释放。噻唑酮处理后游离ACC内源性含量的增加与乙烯释放的增加相吻合。噻唑隆处理不影响外源ACC的吸收和向乙烯的转化。噻地隆处理后未检测到ACC合酶可提取活性的增加。

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