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Unique status of NIA2 in nitrate assimilation

机译:NIA2在硝酸盐同化中的独特地位

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摘要

Light perceived by phytochromes will induce genes of nitrogen assimilation, however, transducing components in the signaling cascades to these genes are hardly known. Recently the bZIP transcription factors HY5 (LONG HYPOCOTYL5) and HYH (HOMOLOG OF HY5) were identified as positive regulators in light activation of NIA2 (nitrate reductase 2). The bHLH transcription factor PIF4 (PHYTOCHROME INTERACTING FACTOR 4) was revealed as an inhibitor of NIA2 expression. In contrast to NIA2, expression of other genes of nitrogen assimilation, NRT1.1 (dual-affinity nitrate transporter 1.1), NIA1 (nitrate reductase 1), NIR (nitrite reductase), GLN2 (glutamine synthetase 2) and GLU1 (glutamate synthase 1) were not promoted by HY5/HYH or inhibited by PIF4. NIA2 as the outstanding gene of nitrate assimilation regarding HY5/HYH and PIFs may have evolved in connection with the cytosolic leaf localization of nitrate reductase, and adverse effects of the products, nitrite, nitric oxide and active oxygen species formed by the enzyme.
机译:植物色素所感知的光将诱导氮同化的基因,但是,几乎不知道信号级联中的转导成分。最近,bZIP转录因子HY5(长HYPOCOTYL5)和HYH(HY5的同源物)被鉴定为NIA2(硝酸还原酶2)的光激活中的正调控因子。揭示了bHLH转录因子PIF4(植物染色体相互作用因子4)是NIA2表达的抑制剂。与NIA2相反,其他基因的氮同化,NRT1.1(双亲和硝酸盐转运蛋白1.1),NIA1(硝酸还原酶1),NIR(亚硝酸还原酶),GLN2(谷氨酰胺合成酶2)和GLU1(谷氨酸合成酶1)的表达)不受HY5 / HYH促进或不受PIF4抑制。 NIA2是有关HY5 / HYH和PIF的硝酸盐同化的杰出基因,可能与硝酸盐还原酶的胞浆叶定位以及产物,亚硝酸盐,一氧化氮和该酶形成的活性氧的不利影响有关。

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