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哒嗪酮衍生物巴斯夫13 - 338对冬小麦根系亚麻酸合成及抗冻锻炼的同时抑制作用

Simultaneous Inhibition of Linolenic Acid Synthesis in Winter Wheat Roots and Frost Hardening by BASF 13-338, a Derivative of Pyridazinone.

作者信息

Willemot C

机构信息

Canada Agriculture Research Station, 2560 Chemin Gomin, Sainte-Foy, Quebec, Canada GIV 2J3.

出版信息

Plant Physiol. 1977 Jul;60(1):1-4. doi: 10.1104/pp.60.1.1.

Abstract

Treatment of 12-day-old winter wheat (Triticum aestivum) plants with BASF 13-338 {4-chloro-5 (dimethylamino)-2-phenyl-3(2H)-pyridazinone} 36 hours before frost hardening simultaneously and completely inhibits accumulation of linolenic acid in the roots during the hardening period and the acquisition of frost resistance. Increased unsaturation of fatty acids is therefore probably an important part of the mechanism of cold adaptation in winter wheat.BASF 13-338 also prevents the increase in per cent dry weight in roots and shoots during hardening and causes a decrease in root lipid phosphorus and total fatty acids.The concurrent increase in linoleic acid and decrease in linolenic acid in the treated plants, while the level of the other fatty acids is but little affected, suggest that BASF 13-338 specifically inhibits linoleic acid desaturase.

摘要

在抗寒锻炼前36小时用巴斯夫13 - 338(4 - 氯 - 5 -(二甲氨基)- 2 - 苯基 - 3(2H)- 哒嗪酮)处理12日龄冬小麦(普通小麦)植株,会同时且完全抑制锻炼期间根系中亚麻酸的积累以及抗寒性的获得。因此,脂肪酸不饱和度增加可能是冬小麦冷适应机制的重要组成部分。巴斯夫13 - 338还会阻止锻炼期间根和地上部分干重百分比的增加,并导致根中脂质磷和总脂肪酸含量降低。在处理过的植株中,亚油酸增加而亚麻酸减少,同时其他脂肪酸水平受影响较小,这表明巴斯夫13 - 338特异性抑制亚油酸去饱和酶。

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