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胁迫诱导的 ABA 和脯氨酸积累与离体大麦叶片中 ABA 诱导的脯氨酸积累之间的关系。

Relationship between Stress-Induced ABA and Proline Accumulations and ABA-Induced Proline Accumulation in Excised Barley Leaves.

机构信息

Department of Botany, Iowa State University, Ames, Iowa 50011.

出版信息

Plant Physiol. 1985 Sep;79(1):24-7. doi: 10.1104/pp.79.1.24.

Abstract

When excised second leaves from 2-week-old barley (Hordeum vulgare var Larker) plants were incubated in a wilted condition, abscisic acid (ABA) levels increased to 0.6 nanomole per gram fresh weight at 4 hours then declined to about 0.3 nanomole per gram fresh weight and remained at that level until rehydrated. Proline levels began to increase at about 4 hours and continued to increase as long as the ABA levels were 0.3 nanomole per gram fresh weight or greater. Upon rehydration, proline levels declined when the ABA levels fell below 0.3 nanomole per gram fresh weight.Proline accumulation was induced in turgid barley leaves by ABA addition. When the amount of ABA added to leaves was varied, it was observed that a level of 0.3 nanomole ABA per gram fresh weight for a period of about 2 hours was required before proline accumulation was induced. However, the rate of proline accumulation was slower in ABA-treated leaves than in wilted leaves at comparable ABA levels. Thus, the threshold level of ABA for proline accumulation appeared to be similar for wilted leaves where ABA increased endogenously and for turgid leaves where ABA was added exogenously. However, the rate of proline accumulation was more dependent on ABA levels in turgid leaves to which ABA was added exogenously than in wilted leaves.Salt-induced proline accumulation was not preceded by increases in ABA levels comparable to those observed in wilted leaves. Levels of less than 0.2 nanomole ABA per gram fresh weight were measured 1 hour after exposure to salt and they declined rapidly to the control level by 3 hours. Proline accumulation commenced at about 9 hours. Thus, ABA accumulation did not appear to be involved in salt-induced proline accumulation.

摘要

当从 2 周龄大麦(Hordeum vulgare var Larker)植株上切下的第二片叶子在萎蔫条件下孵育时,脱落酸(ABA)水平在 4 小时时增加到每克鲜重 0.6 纳摩尔,然后下降到约 0.3 纳摩尔每克鲜重,并保持在该水平,直到重新水合。脯氨酸水平在大约 4 小时开始增加,并在 ABA 水平为每克鲜重 0.3 纳摩尔或更高时持续增加。重新水合时,当 ABA 水平降至每克鲜重 0.3 纳摩尔以下时,脯氨酸水平下降。ABA 的添加诱导了膨胀的大麦叶片中脯氨酸的积累。当添加到叶片的 ABA 量变化时,观察到在诱导脯氨酸积累之前,需要约 2 小时每克鲜重 0.3 纳摩尔 ABA 的水平。然而,在可比的 ABA 水平下,ABA 处理的叶片中脯氨酸积累的速度比萎蔫叶片中的速度慢。因此,对于内源 ABA 增加的萎蔫叶片和外源 ABA 添加的膨胀叶片,脯氨酸积累的 ABA 阈值水平似乎相似。然而,脯氨酸积累的速度更依赖于外源添加 ABA 的膨胀叶片中的 ABA 水平,而不是萎蔫叶片。盐诱导的脯氨酸积累之前,ABA 水平没有增加到与萎蔫叶片中观察到的水平相当。暴露于盐后 1 小时测量到的 ABA 水平低于 0.2 纳摩尔每克鲜重,到 3 小时迅速下降到对照水平。脯氨酸积累在大约 9 小时开始。因此,ABA 积累似乎不参与盐诱导的脯氨酸积累。

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