Transcriptomic and network analyses reveal distinct nitrate responses in light and dark in rice leaves (Oryza sativa Indica var. Panvel1)

Author:

Pathak Ravi Ramesh,Jangam Annie Prasanna,Malik Aakansha,Sharma Narendra,Jaiswal Dinesh Kumar,Raghuram Nandula

Abstract

AbstractNitrate (N) response is modulated by light, but not understood from a genome-wide perspective. Comparative transcriptomic analyses of nitrate response in light-grown and etiolated rice leaves revealed 303 and 249 differentially expressed genes (DEGs) respectively. A majority of them were exclusive to light (270) or dark (216) condition, whereas 33 DEGs were common. The latter may constitute response to N signaling regardless of light. Functional annotation and pathway enrichment analyses of the DEGs showed that nitrate primarily modulates conserved N signaling and metabolism in light, whereas oxidation–reduction processes, pentose-phosphate shunt, starch-, sucrose- and glycerolipid-metabolisms in the dark. Differential N-regulation of these pathways by light could be attributed to the involvement of distinctive sets of transporters, transcription factors, enriched cis-acting motifs in the promoters of DEGs as well as differential modulation of N-responsive transcriptional regulatory networks in light and dark. Sub-clustering of DEGs-associated protein–protein interaction network constructed using experimentally validated interactors revealed that nitrate regulates a molecular complex consisting of nitrite reductase, ferredoxin-NADP reductase and ferredoxin. This complex is associated with flowering time, revealing a meeting point for N-regulation of N-response and N-use efficiency. Together, our results provide novel insights into distinct pathways of N-signaling in light and dark conditions.

Funder

Department of Biotechnology , Ministry of Science and Technology

Department of Science and Technology, India

GGS Indraprastha University, New Delhi India

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference82 articles.

1. Sutton, M. et al. The nitrogen fix: from nitrogen cycle pollution to nitrogen circular economy-frontiers 2018/19: emerging issues of environmental concern chapter 4. Frontiers 2018/19: Emerging Issues of Environmental Concern (2019).

2. Abrol, Y. P. et al. in The Indian nitrogen assessment: Sources of reactive nitrogen, environmental and climate effects, management options, and policies (Elsevier, 2017).

3. Wang, R. et al. Genomic analysis of the nitrate response using a nitrate reductase-null mutant of Arabidopsis. Plant Physiol. 136, 2512–2522 (2004).

4. Pathak, R. R., Ahmad, A., Lochab, S. & Raghuram, N. Molecular physiology of plant nitrogen use efficiency and biotechnological options for its enhancement. Curr. Sci. 1, 1394–1403 (2008).

5. O’Brien, J. A. et al. Nitrate transport, sensing, and responses in plants. Mol. Plant. 9, 837–856 (2016).

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