Biotechnology Research Center, The University of Tokyo, Yayoi 1-1-1, Tokyo, Japan.
J Exp Bot. 2021 Jul 28;72(15):5735-5750. doi: 10.1093/jxb/erab246.
Upon sensing nitrate, NODULE INCEPTION (NIN)-like protein (NLP) transcription factors alter gene expression to promote nitrate uptake and utilization. Of the nine NLPs in Arabidopsis, the physiological roles of only three NLPs (NLP6-NLP8) have been characterized to date. To evaluate the unique and redundant roles of Arabidopsis NLPs, we assessed the phenotypes of single and higher order nlp mutants. Unlike other nlp single mutants, nlp2 and nlp7 single mutants showed a reduction in shoot fresh weight when grown in the presence of nitrate as the sole nitrogen source, indicating that NLP2, like NLP7, plays a major role in vegetative growth. Interestingly, the growth defect of nlp7 recovered upon the supply of ammonium or glutamine, whereas that of nlp2 did not. Furthermore, complementation assays using chimeric constructs revealed that the coding sequence, but not the promoter region, of NLP genes was responsible for the differences between nlp2 and nlp7 single mutant phenotypes, suggesting differences in protein function. Importantly, nitrate utilization was almost completely abolished in the nlp septuple mutant (nlp2 nlp4 nlp5 nlp6 nlp7 nlp8 nlp9), suggesting that NLPs other than NLP2 and NLP7 also assist in the regulation of nitrate-inducible gene expression and nitrate-dependent promotion of vegetative growth in Arabidopsis.
当感知到硝酸盐时,根瘤起始(NIN)样蛋白(NLP)转录因子改变基因表达以促进硝酸盐的吸收和利用。在拟南芥的 9 个 NLPs 中,迄今为止仅对 3 个 NLP(NLP6-NLP8)的生理作用进行了表征。为了评估拟南芥 NLPs 的独特和冗余作用,我们评估了单突变体和更高阶突变体的表型。与其他 nlp 单突变体不同,当以硝酸盐作为唯一氮源生长时,nlp2 和 nlp7 单突变体的地上部分鲜重减少,表明 NLP2 与 NLP7 一样,在营养生长中发挥主要作用。有趣的是,nlp7 的生长缺陷在供应铵或谷氨酰胺时得到恢复,而 nlp2 的生长缺陷则没有。此外,使用嵌合构建体的互补测定表明,NLP 基因的编码序列而不是启动子区域负责 nlp2 和 nlp7 单突变体表型之间的差异,表明蛋白功能的差异。重要的是,在 nlp 七重突变体(nlp2 nlp4 nlp5 nlp6 nlp7 nlp8 nlp9)中,硝酸盐的利用几乎完全被废除,这表明除了 NLP2 和 NLP7 之外,NLPs 还协助调控硝酸盐诱导的基因表达,并促进拟南芥中硝酸盐依赖的营养生长。