Abstract

The free aluminum (Al) content in soil can reach levels that are toxic to plants, and this has frequently limited increased productivity of cultures. Four genes encoding nitrate reductase (NR) were identified, named ZmNR1–4. With the aim of evaluating NR activity and the transcriptional modulation of the ZmNR1, ZmNR2, ZmNR3, and ZmNR4 genes in leaves, 30-day-old hybrid maize BRAS 3010 plants were irrigated with a solution of Al2(SO4)3.18H2O for 16 days. The transcriptional levels of ZmNR2, ZmNR3, and ZmNR4 and NR activity will exhibit standard changes similar in the leaves, where, from the second week of stress onwards, there was a decrease in enzymatic activity and in the accumulation of transcripts. An increase ZmNR1 mRNA levels were observed, indicating that this gene may be associated with other metabolic pathways. This study resulted in the identification and characterization of different genes that encode NR and are involved in nitrogen metabolism in maize, in which the ZmNR2, ZmNR3, and ZmNR4 genes regulate the activity of NR in response to aluminum stress. The characterization of these genes may help in our understanding of the genetic-molecular and physiological mechanisms of maize subjected to aluminum stress. Key words: Abiotic stress, Al, gene expression, nitrogen, metal toxicity, mineral nutrition.

Highlights

  • Maize (Zea mays) is the main cereal produced in Brazil

  • With the aim of evaluating nitrate reductase (NR) activity and the transcriptional modulation of the ZmNR1, ZmNR2, ZmNR3, and ZmNR4 genes in leaves, 30-day-old hybrid maize BRAS 3010 plants were irrigated with a solution of Al2(SO4)3.18H2O for 16 days

  • This study resulted in the identification and characterization of different genes that encode NR and are involved in nitrogen metabolism in maize, in which the ZmNR2, ZmNR3, and ZmNR4 genes regulate the activity of NR in response to aluminum stress

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Summary

Introduction

Maize (Zea mays) is the main cereal produced in Brazil. In 2015/2016 season, the cultivated area of maize was 15.7 million hectares with a total production of 76.2 million tons of grain (CONAB, 2016). Brazil is the world’s third largest producer of maize, only behind the United States and China (USDA, 2016). The economic importance of maize is due to the different ways it is used, including its wide consumption as food.

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