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PLANT METABOLIC STUDIES OF THE GROWTH REGULATOR MALEIC HYDRAZIDE

机译:生长调节剂马来酰肼的植物代谢研究

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The metabolism of maleic hydrazide has been studied in cell suspension cultures of soybean, wheat, and maize under standardized conditions (40 mt flasks, I ppm, 48 h). Maleic hydrazide was converted to its beta-D-glucoside as the predominant soluble metabolite in yields of between 2 and 15%. The latter was completely cleaved under simulated stomach conditions (pH 1, 37 degrees C, 24 h). In addition, up to 18% of the applied maleic hydrazide became associated with the nonextractable residue. The residue from soybean cells was solubilized only to a low degree (similar to 3%) under simulated stomach conditions. The lignin and hemicellulose components appeared to contain most of the radioactivity in the nonextractable residue from soybean cells. It is concluded that metabolism in Cultured plant cells resembled that in whole plants and that the beta-D-glucoside of maleic hydrazide belongs to the small group of acid-labile pesticidal conjugates.
机译:在大豆,小麦和玉米的细胞悬浮培养物中,在标准条件下(40 mt烧瓶,I ppm,48 h)研究了马来酰肼的代谢。将马来酰肼转化为其β-D-葡萄糖苷,成为主要的可溶性代谢产物,产率为2%至15%。后者在模拟胃条件下(pH 1,37摄氏度,24小时)完全裂解。此外,高达18%的马来酰肼与不可提取的残留物结合在一起。在模拟的胃部条件下,大豆细胞中的残留物只能溶解至低水平(约3%)。木质素和半纤维素成分似乎在来自大豆细胞的不可提取残渣中包含大部分放射性。结论是,培养的植物细胞中的代谢类似于整个植物中的代谢,并且马来酰肼的β-D-葡糖苷属于酸不稳定的农药结合物的一小群。

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