首页> 美国卫生研究院文献>Plant Physiology >Proline Accumulation in Maize (Zea mays L.) Primary Roots at Low Water Potentials (I. Requirement for Increased Levels of Abscisic Acid).
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Proline Accumulation in Maize (Zea mays L.) Primary Roots at Low Water Potentials (I. Requirement for Increased Levels of Abscisic Acid).

机译:低水势下玉米(Zea mays L.)初级根中脯氨酸的积累(I.增加脱落酸水平的要求)。

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摘要

Previous work showed that the concentration of proline (Pro) increases greatly in the primary root tip of maize (Zea mays L.) at low water potentials ([psi]w). It was also shown that the maintenance of root elongation at low [psi]w depends on increased levels of abscisic acid (ABA). In this study we have assessed whether ABA is required for the increase in Pro concentration. Seedlings were grown in vermiculite of various [psi]w, and endogenous ABA levels were decreased using either fluridone (FLU) or the vp5 mutant to inhibit carotenoid (and ABA) synthesis. In both treatments, Pro concentrations at low [psi]w were substantially decreased throughout the apical centimeter, which encompassed the elongation zone. Pro concentrations in FLU-treated roots were restored by addition of 7 [mu]M ABA to the vermiculite, which raised the internal ABA content to the level in untreated roots at the same [psi]w. Pro and water content profiles were combined with published growth-velocity distributions to calculate the distribution of net Pro and water deposition rates using the continuity equation. At a [psi]w of -1.6 MPa, the rate of Pro deposition in the root tip was decreased by 75% in FLU-treated compared to untreated roots. FLU treatment increased root diameter and, therefore, water content per unit length, but water deposition rates decreased due to the dominant influence of reduced longitudinal expansion. Thus, the decrease in Pro concentration was attributable entirely to the decrease in Pro deposition. The results demonstrate that increased ABA is required for high rates of Pro deposition and, thereby, high Pro concentrations in the growing region of maize primary roots at low [psi]w.
机译:先前的工作表明,在低水势(psiw)下,玉米(Zea mays L.)的初级根尖中脯氨酸(Pro)的浓度大大增加。还显示出在低psiw下根伸长的维持取决于脱落酸(ABA)水平的增加。在这项研究中,我们评估了Pro浓度增加是否需要ABA。使幼苗生长在各种[w的ul石中,并使用氟啶酮(FLU)或vp5突变体抑制类胡萝卜素(和ABA)的合成来降低内源性ABA水平。在两种处理中,低psiw的Pro浓度在整个心尖厘米(包括延伸区)中都显着降低。通过向7石中添加7μMABA来恢复在FLU处理的根中的Pro浓度,这将内部ABA的含量提高到未处理根中的相同psiw水平。 Pro和水含量曲线与已发布的生长速度分布相结合,以使用连续性方程计算净Pro和水沉积速率的分布。在-1.6 MPa的psiw下,与未处理的根相比,FLU处理的根尖中的Pro沉积速率降低了75%。 FLU处理增加了根部直径,因此增加了单位长度的水分含量,但是由于纵向膨胀减少的主要影响,水的沉积速率降低了。因此,Pro浓度的降低完全归因于Pro沉积的减少。结果表明,高的Pro沉积速率需要增加ABA,因此在低psiw的玉米初生根生长区域中需要高的Pro浓度。

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