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Effect of Light/Dark Cycles on Expression of Nitrate Assimilatory Genes in Maize Shoots and Roots

机译:光/暗周期对玉米芽和根中硝酸盐同化基因表达的影响

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摘要

The level of nitrate reductase (NR) and nitrite reductase (NiR) varied in both shoot and root tissue from nitrate-fed Zea mays L. grown under a 16-hour light/8-hour dark regime over a 10-day period postgermination, with peak activity occurring in days 5 to 6. To study the effect of different light regimes on NR and NiR enzyme activity and mRNA levels, 6-day-old plants were grown in the presence of continuous KNO3 (10 millimolar). Both shoot NRA and mRNA varied considerably, peaking 4 to 8 hours into the light period. Upon transferring plants to continuous light, the amplitude of the peaks increased, and the peaks moved closer together. In continuous darkness, no NR mRNA or NR enzyme activity could be detected by 8 hours and 12 hours, respectively. In either a light/dark or continuous light regime, root NRA and mRNA did not vary substantially. However, when plants were placed in continuous darkness, both declined steadily in the roots, although some remained after 48 hours. Although there was no obvious cycling of NiR enzyme activity in shoot tissue, changes in mRNA mimicked those seen for NR mRNA. The expression of NR and NiR genes is affected by the light regime adopted, but light does not have a direct effect on the expression of these genes.
机译:萌发后的10天内,在16小时光照/ 8小时黑暗条件下生长的硝酸盐饲喂的玉米(Zea mays L.)在枝条和根部组织的茎和根组织中硝酸盐还原酶(NR)和亚硝酸盐还原酶(NiR)的水平均发生变化,在第5至6天出现峰值活性。为研究不同光照方案对NR和NiR酶活性及mRNA水平的影响,在连续KNO3(10毫摩尔)存在下生长6天大的植物。芽的NRA和mRNA都有很大差异,在光照期4至8小时达到峰值。在将植物转移到连续光下时,峰的振幅增加,并且峰移得更近。在连续黑暗中,分别在8小时和12小时之前未检测到NR mRNA或NR酶活性。在明/暗或连续光照条件下,根部NRA和mRNA均无明显变化。但是,当植物连续处于黑暗中时,尽管它们在48小时后仍然保留,但它们的根部都稳定地下降。尽管在芽组织中没有明显的NiR酶活性循环,但是mRNA的变化模仿了NR mRNA的变化。 NR和NiR基因的表达受所采用的光照机制的影响,但是光照对这些基因的表达没有直接影响。

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