首页> 美国卫生研究院文献>Plant Physiology >A Possible Role for Indoleacetic Acid Low Temperature and Phospholipid Metabolism in the Induction of GA3 Responsiveness in GA3 Insensitive (Rht3-Containing) Dwarf Wheat Aleurone
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A Possible Role for Indoleacetic Acid Low Temperature and Phospholipid Metabolism in the Induction of GA3 Responsiveness in GA3 Insensitive (Rht3-Containing) Dwarf Wheat Aleurone

机译:吲哚乙酸低温和磷脂代谢在GA3不敏感(含Rht3的矮秆小麦Aleurone)诱导GA3反应性中的可能作用

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摘要

Preincubation of dwarf, Rht3-containing deembryonated seed for 4 hours in 342 nanomolar indoleacetic acid (IAA) induced maximum sensitivity to GA3. In addition, the 4-hour IAA pretreatment caused a 2-fold increase in total phospholipids which coincided identically on a temporal basis with the induced GA3 sensitivity. Changes in absolute levels of individual phospholipids and their acyl groups were recorded and compared with the changes observed in several Rht-containing aleurone tissues which were induced to develop GA3 sensitivity by exposure to low temperature (5°C). Several distinct similarities between all tissues were recorded as they develop GA3 sensitivity. One parameter, the percentage phospholipid composition, was quite similar in all tissues after they had become maximally sensitive to GA3, suggesting that there is at least one membrane phospholipid composition which is particularly responsive to GA3. The results indicate that (a) the basis of the GA3 insensitivity of the Rht mutation resides in an aberrant phospholipid/fatty acid composition and/or metabolism; (b) exposure to low temperature (5°C) for 20 hours or longer, or 342 nanomolar IAA for 4 hours or longer reverses or corrects the genetic lesion, enabling the tissue to adopt a GA3 responsive membrane composition. Finally, an hypothesis is discussed which indicates that IAA may play a controlling role in the mobilization of endospermal reserves, at least in Rht3-containing wheat aleurone.
机译:在342纳摩尔的吲哚乙酸(IAA)中将含Rht3的矮化脱胚种子预孵育4小时,从而诱导对GA3的最大敏感性。此外,IAA的4小时预处理导致总磷脂增加了2倍,这在时间上与诱导的GA3敏感性一致。记录单个磷脂及其酰基的绝对水平的变化,并将其与在几个含Rht的糊粉组织中观察到的变化进行比较,这些组织通过暴露于低温(5°C)引起GA3敏感性。记录了所有组织发展为GA3敏感性的几个明显相似之处。在它们对GA3变得最大敏感之后,所有组织中的一个参数,即磷脂成分的百分率,在所有组织中都非常相似,这表明存在至少一种对GA3特别敏感的膜磷脂成分。结果表明:(a)Rht突变的GA3不敏感性的基础在于异常的磷脂/脂肪酸组成和/或代谢; (b)暴露于低温(5°C)20小时或更长时间,或342纳摩尔IAA 4小时或更长时间,可以逆转或纠正遗传病变,使组织能够采用GA3响应膜成分。最后,讨论了一个假说,该假说表明IAA至少在含Rht3的小麦糊粉中可以在胚乳储备的动员中发挥控制作用。

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