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首页> 外文期刊>Bioresource Technology >THE KINETICS OF NITRATE UPTAKE FROM FLOWING SOLUTIONS BY RICE - INFLUENCE OF PRETREATMENT AND LIGHT
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THE KINETICS OF NITRATE UPTAKE FROM FLOWING SOLUTIONS BY RICE - INFLUENCE OF PRETREATMENT AND LIGHT

机译:水稻流动溶液中硝酸盐吸收的动力学-预处理和光的影响。

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The kinetics of nitrate (NO3-) uptake by intact 23 day old lice plants was studied by measuring the depletion of NO3- in solutions flowing over the plant roots. A Michaelis-Menten kinetic model was applied allowing the uptake kinetics to be characterized by two parameters: the apparent half-velocity constant, K-m, and the apparent maximum uptake rate, V-max A propagation of uncertainty calculation revealed that the kinetic parameters could be determined with a high degree of accuracy; the standard deviation in K-m was typically 15% of the K-m value; the standard deviation in V-max was typically 7% of the V-max value. The plants were exposed to full nutrient solutions containing NO3- at 50, 200, 500 and 800 mu M for 24 h prior to kinetic testing, and both K-m and V-max were found to vary with pretreament NO3- concentration, [NO3-]; plants pretreated at high [NO3-] had lower V-max and higher K-m values than plants pretreated at lower [NO3-]. However tile variations in V,, were more consistent than those in K-m. These changes in the kinetic parameters reflect an uptake system which is capable of compensating for changes in the external [NO3-] to maintain a virtually constant NO3- uptake rate in the range studied. Changes in K-m and V-max begin within 4 h of a change in [NO3-]. Light deprivation during pretreatment in 200 mu M NO3- resulted in a complete cessation of NO3- uptake; 4-8 h of illumination were required before the uptake resumed, and uptake rates had not yet reached normal levels 8 h after the resumption of illumination. [References: 36]
机译:通过测量流过植物根部的溶液中NO3-的消耗,研究了完整的23日龄虱子植物吸收硝酸盐(NO3-)的动力学。应用了Michaelis-Menten动力学模型,可以用两个参数来表征吸收动力学:表观半速度常数Km和表观最大吸收速率V-max。不确定性的传播表明,动力学参数可以是高度准确地确定; K-m的标准偏差通常为K-m值的15%; V-max的标准偏差通常为V-max值的7%。在进行动态测试之前,将植物暴露于50、200、500和800μM的含有NO3-的完全营养液中24小时,然后发现Km和V-max随预处理NO3-浓度的变化而变化[NO3-]。 ;高[NO3-]预处理的植物比低[NO3-]预处理的植物具有更低的V-max和更高的K-m值。但是,V i中的瓦片变化比K m中的变化更一致。动力学参数的这些变化反映了一种吸收系统,该系统能够补偿外部[NO3-]的变化,从而在研究范围内将NO3-的吸收率维持在恒定水平。 K-m和V-max的变化在[NO3-]变化的4小时内开始。在200μM NO3-预处理期间,光剥夺导致NO3-吸收完全停止。恢复摄取之前需要4-8小时的光照,并且在恢复光照8小时后摄取率尚未达到正常水平。 [参考:36]

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