首页> 美国卫生研究院文献>Plant Physiology >Comparative Induction of Nitrate and Nitrite Uptake and Reduction Systems by Ambient Nitrate and Nitrite in Intact Roots of Barley (Hordeum vulgare L.) Seedlings.
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Comparative Induction of Nitrate and Nitrite Uptake and Reduction Systems by Ambient Nitrate and Nitrite in Intact Roots of Barley (Hordeum vulgare L.) Seedlings.

机译:大麦(Hordeum vulgare L.)完整根中环境硝酸盐和亚硝酸盐的硝酸盐和亚硝酸盐吸收和还原系统的比较诱导。

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摘要

The induction by ambient NO3- and NO2- of the NO3- and NO2- uptake and reduction systems in roots of 8-d-old intact barley (Hordeum vulgare L.) seedlings was studied. Seedlings were induced with concentrations of NaNO3 or NaNO2 ranging from 0.25 to 1000 [mu]M. Uptake was determined by measuring the depletion of either NO3- or NO2- from uptake solutions. Enzyme activities were assayed in vitro using cell-free extracts. Uptake and reduction systems for both NO3- and NO2- were induced by either ion. The Km values for NO3- and NO2- uptake induced by NO2- were similar to those for uptake induced by NO3-. Induction of both the uptake and reduction systems was detected well before any NO3- or NO2- was found in the roots. At lower substrate concentrations of both NO3- and NO2- (5-10 [mu]M), the durations of the lag periods preceding induction were similar. Induction of uptake, as a function of concentration, proceeded linearly and similarly for both ions up to about 10 [mu]M. Then, while induction by NO3- continued to increase more slowly, induction by NO2- sharply decreased between 10 and 1000 [mu]M, apparently due to NO2- toxicity. In contrast, induction of NO3- reductase (NR) and NO2- reductase (NiR) by NO2- did not decrease above 10 [mu]M but rather continued to increase up to a substrate concentration of 1000 [mu]M. NO3- was a more effective inducer of NR than was NO2-; however, both ions equally induced NiR. Cycloheximide inhibited the induction of both uptake systems as well as NR and NiR activities whether induced by NO3- or NO2-. The results indicate that in situ NO3- and NO2- induce both uptake and reduction systems, and the accumulation of the substrates per se is not obligatory.
机译:研究了环境NO3-和NO2-对8 d龄完整大麦(Hordeum vulgare L.)幼苗根系中NO3-和NO2-吸收和还原系统的诱导作用。用浓度范围为0.25至1000μM的NaNO 3或NaNO 2诱导幼苗。通过测量摄取溶液中NO3-或NO2-的消耗来确定摄取。使用无细胞提取物体外测定酶活性。任一离子都诱导了NO3-和NO2-的吸收和还原系统。由NO 2-诱导的NO 3-和NO 2-吸收的K m值类似于由NO 3-诱导的Km值。在根部未发现任何NO3-或NO2-之前,就已经检测到吸收系统和还原系统的诱导。在较低的NO 3-和NO 2-(5-10μM)底物浓度下,诱导之前的滞后时间的持续时间相似。对于浓度高达约10μM的两种离子,吸收的诱导与浓度成线性关系并且类似地进行。然后,尽管NO 3的诱导继续缓慢增加,但NO 2的诱导明显在10至1000μM之间急剧下降,这显然是由于NO 2毒性所致。相反,NO 2-诱导的NO 3-还原酶(NR)和NO 2-还原酶(NiR)没有降低至10μM以上,而是持续增加直至底物浓度为1000μM。 NO3-比NO2-是更有效的NR诱导剂。但是,两种离子均能诱导NiR。环己酰亚胺可抑制摄取系统的诱导以及NR和Ni2-诱导的NR和NiR活性。结果表明,原位NO3-和NO2-均可诱导吸收和还原系统,并且底物本身的积累不是必须的。

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