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Overexpression of Arabidopsis NLP7 improves plant growth under both nitrogen-limiting and -sufficient conditions by enhancing nitrogen and carbon assimilation

机译:拟南芥NLP7的过表达通过增强氮和碳同化作用来改善氮素限制和充足条件下的植物生长

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摘要

Nitrogen is essential for plant survival and growth. Excessive application of nitrogenous fertilizer has generated serious environment pollution and increased production cost in agriculture. To deal with this problem, tremendous efforts have been invested worldwide to increase the nitrogen use ability of crops. However, only limited success has been achieved to date. Here we report that NLP7 (NIN-LIKE PROTEIN 7) is a potential candidate to improve plant nitrogen use ability. When overexpressed in Arabidopsis, NLP7 increases plant biomass under both nitrogen-poor and -rich conditions with better-developed root system and reduced shoot/root ratio. NLP7–overexpressing plants show a significant increase in key nitrogen metabolites, nitrogen uptake, total nitrogen content, and expression levels of genes involved in nitrogen assimilation and signalling. More importantly, overexpression of NLP7 also enhances photosynthesis rate and carbon assimilation, whereas knockout of NLP7 impaired both nitrogen and carbon assimilation. In addition, NLP7 improves plant growth and nitrogen use in transgenic tobacco (Nicotiana tabacum). Our results demonstrate that NLP7 significantly improves plant growth under both nitrogen-poor and -rich conditions by coordinately enhancing nitrogen and carbon assimilation and sheds light on crop improvement.
机译:氮对植物的生存和生长至关重要。氮肥的过量施用已造成严重的环境污染,并增加了农业生产成本。为了解决该问题,世界范围内为提高农作物的氮利用能力付出了巨大的努力。但是,迄今为止仅取得了有限的成功。在这里,我们报道NLP7(NIN-LIKE蛋白7)是提高植物氮素利用能力的潜在候选者。当在拟南芥中过表达时,NLP7会在氮贫和富氮条件下增加植物生物量,并具有更好的根系发育和降低的茎/根比。过表达NLP7的植物显示关键氮代谢物,氮吸收,总氮含量以及参与氮同化和信号转导的基因的表达水平显着增加。更重要的是,NLP7的过表达还增强了光合作用和碳同化作用,而敲除NLP7则损害了氮和碳同化作用。另外,NLP7改善了转基因烟草(Nicotiana tabacum)中的植物生长和氮素利用。我们的结果表明,NLP7通过协调增强氮和碳同化作用,显着改善了贫氮和富氮条件下的植物生长,并为作物改良提供了参考。

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