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The Physiological Role of Abscisic Acid in Eliciting Turion Morphogenesis.

机译:脱落酸在促动Turion形态发生中的生理作用。

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摘要

The exogenous application of hormones has led to their implication in a number of processes within the plant. However, proof of their function in vivo depends on quantitative data demonstrating that the exogenous concentration used to elicit a response leads to tissue hormone levels within the physiological range. Such proof is often lacking in many investigations. We are using abscisic acid (ABA)-induced turion formation in Spirodela polyrrhiza L. to investigate the mechanism by which a hormone can trigger a morphogenic switch. In this paper, we demonstrate that the exogenous concentration of ABA used to induce turions leads to tissue concentrations of ABA within the physiological range, as quantified by both enzyme-linked immunosorbent assay and high-performance liquid chromatography/gas chromatography-electron capture detection analysis. These results are consistent with ABA having a physiological role in turion formation, and they provide an estimate of the changes in endogenous ABA concentration required if environmental effectors of turion formation (e.g. nitrate deficiency, cold) act via an increased level of ABA. In addition, we show that the (+)- and (-)-enantiomers of ABA are equally effective in inducing turions. Moreover, comparison of the ABA; levels attained after treatment with (+)-, (-)-, and ([plus or minus])-ABA and their effect on turion induction and comparison of the effectiveness of ABA on turion induction under different pH regimes suggest that ABA most likely interacts with a plasmalemma-located receptor system to induce turion formation.
机译:激素的外源应用导致它们牵涉到植物内的许多过程中。但是,它们在体内功能的证明取决于定量数据,该数据证明了用于引起反应的外源浓度导致组织激素水平在生理范围内。在许多调查中通常缺乏这种证据。我们正在使用脱落酸(ABA)诱导螺旋藻中的扭体形成,以研究激素可以触发形态发生转换的机制。在本文中,我们证明了通过诱导酶促旋转的ABA的外源浓度导致了生理范围内的ABA浓度,如通过酶联免疫吸附测定和高效液相色谱/气相色谱-电子捕获检测分析所定量的。这些结果与在变扭形成中具有生理学作用的ABA一致,并且它们提供了如果变扭形成的环境效应子(例如硝酸盐缺乏,寒冷)通过增加的ABA水平起作用所需的内源ABA浓度变化的估计。另外,我们表明ABA的(+)-和(-)-对映异构体在诱导扭绞中同样有效。而且,ABA的比较; (+)-,(-)-和([+或负])-ABA处理后达到的水平及其对扭线诱导的影响以及在不同pH方案下ABA对扭线诱导的有效性的比较表明ABA最有可能与定位于质膜障碍的受体系统相互作用,诱导旋转体形成。

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