3,5-二异丙基水杨酸酯和光照对玉米胚囊影响的31P NMR直接观察

SneŽana ObrenoviĆ , R. George Ratcliffe , Timothy E. Southon
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引用次数: 1

摘要

采用体内31p核磁共振光谱法观察了3,5-二异丙基水杨酸酯(DIPS)和光照对黄化玉米胚芽的代谢影响。200 μM的DIPS诱导了核苷酸三磷酸(NTP)共振的减少和核苷酸二磷酸己糖(ndp -己糖)信号的增加,部分细胞发生了细胞质酸化。在间歇性蓝光下,磷酸己糖和ndp -己糖信号增加,胞质Pi共振降低,而在红光下,只有己糖- p信号增加,胞质Pi信号降低。这些结果为DIPS与光在分子水平上的相似作用提供了证据,而红光和蓝光的类似作用与光敏色素作为负责代谢变化的主要光感受器是相容的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct Observation of the Effects of 3,5-Diisopropylsalicylate and Light on Maize Coleoptiles using 31P NMR

Metabolic effects caused by 3,5-diisopropylsalicylate (DIPS) and light were observed in etiolated maize coleoptiles using in vivo31P NMR spectroscopy. A decrease in the nucleotide triphosphate (NTP) resonances and an increase in nucleotide diphosphate hexose (NDP-hexose) signals were induced by 200 μM DIPS, with an acidification of the cytoplasm occurring in a fraction of the cells. Increased hexose phosphate and NDP-hexose signals, accompanied by a decreased cytoplasmic Pi resonance, were observed under intermittent blue light, while in red light only the increase of the hexose-P and decrease in cytoplasmic Pi signals occurred. These results provide evidence for an analogy between the action of DIPS and light at the molecular level, while the similar effects of red and blue light are compatible with phytochrome as the principal photoreceptor responsible for the metabolic changes.

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