Dzuibany C, Haupt S, Fock H, Biehler K, Migge A, Becker T W
Universität Kaiserslautern, Germany.
Planta. 1998 Nov;206(4):515-22. doi: 10.1007/s004250050428.
The regulation by glutamine of the leaf transcript level corresponding to the Arabidopsis thaliana (L.) Heynh. nitrate reductase gene nia2 was examined using a novel approach: we took advantage of the ability of a ferredoxin-dependent glutamate synthase-deficient gluS mutant of A. thaliana to accumulate glutamine in the leaves when illuminated under conditions that favour photorespiration. The accumulation of glutamine in gluS mutant leaves and the concomitant decline in the leaf glutamate pool were not correlated with a reduction in the foliar nia2 transcript level. This result indicates that glutamine may not exert a negative control of the leaf nia2 transcript pool. The pattern of diurnal nia2 mRNA oscillation did not change upon illumination of the gluS mutant in air, although the leaf glutamine level remained high during the diurnal cycle. The amplitude of the diurnal fluctuation in nia2 transcript abundance, therefore, does not seem to depend on the size of the leaf glutamine pool (which normally fluctuates in opposite phase). This result also appears to argue against a role of glutamine as an effective repressor of nia2 transcript accumulation. The application of a solution containing 100 mM glutamine to the roots of A. thaliana resulted in an increase in the leaf glutamine level and in a decrease in the leaf nia2 transcript level. Net CO2 uptake and chlorophyll fluorescence quenching by attached leaves of A. thaliana were determined as a control of the physiological status of the plants and remained unaffected by the glutamine treatment. However, there was a decrease in the foliar nitrate level. The negative effect on the nia2 transcript pool exerted by exogeneous glutamine may, therefore, be explained as a result of the down-regulation of nitrate-uptake permeases in the roots by glutamine.
利用一种新方法研究了谷氨酰胺对拟南芥(Arabidopsis thaliana (L.) Heynh.)硝酸盐还原酶基因nia2相应叶片转录水平的调控:我们利用了拟南芥铁氧还蛋白依赖性谷氨酸合酶缺陷型gluS突变体在有利于光呼吸的条件下光照时在叶片中积累谷氨酰胺的能力。gluS突变体叶片中谷氨酰胺的积累以及叶片谷氨酸池的相应下降与叶片nia2转录水平的降低无关。这一结果表明谷氨酰胺可能不会对叶片nia2转录本库施加负调控。在空气中光照gluS突变体时,nia2 mRNA的昼夜振荡模式没有改变,尽管在昼夜周期中叶片谷氨酰胺水平一直很高。因此,nia2转录本丰度的昼夜波动幅度似乎不取决于叶片谷氨酰胺池的大小(其通常呈相反相位波动)。这一结果似乎也反对谷氨酰胺作为nia2转录本积累的有效阻遏物的作用。向拟南芥根部施用含有100 mM谷氨酰胺的溶液导致叶片谷氨酰胺水平升高,叶片nia2转录水平降低。测定了拟南芥附着叶片的净二氧化碳吸收和叶绿素荧光猝灭作为植物生理状态的对照,其不受谷氨酰胺处理的影响。然而,叶片硝酸盐水平有所下降。因此,外源谷氨酰胺对nia2转录本库的负面影响可能是由于谷氨酰胺对根部硝酸盐吸收通透酶的下调所致。