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Optimizing nitrogen fertilization in mustard through GreenSeeker-based precision agriculture: Impacts on productivity, economics, and environmental sustainability.

Created on 24 Sep 2026

Authors

V D Meena, M L Dotaniya, M D Meena, R S Jat, M K Meena, R L Choudhary, H V Singh, H S Meena, B L Meena, V V Singh

Published in

PloS one. Volume 21. Issue 9. Pages e0358762. Epub Sep 23, 2026.

Abstract

Excessive nitrogen (N) fertilization is a major challenge to sustainable agriculture, adversely affecting crop productivity, soil quality, and environmental health, emits a potent greenhouse gas nitrous oxide (N2O), and nearly 80% of sectoral emissions linked to nutrient inputs applied during crop production. The escalating use of N fertilizers further amplifies N2O emissions, undermining soil sustainability and contributing to environmental degradation. So, the hypothesis used behind the study is increasing nitrogen use efficiency from its current level (approx. 30-40%) would reduce the need for N fertilizer requirement, resulting in more cost-effective and environmentally sustainable production system with no yield penalty. With this objective, a field study was executed in rabi 2021-2024, consisting of nine N management treatments and one unfertilized treatment as control, randomized in complete block design in three replicates. To overcome this problem, first we standardized NDVI based N application and developed a Nitrogen Estimation Rate Chart (NERC) for precision N management in real time for specific set target yield. Results showed that sensor based N application enhanced growth and yield attributes, registered 22.75% seed yield enhancement with 18.7% N saving over RDF and 34.4 & 30.2% increment in NMR and BCR. This treatment augmented AEN and PFPN by 14.18 to 124.7% and 1.78 to 51.1%, respectively achieved higher NRE (35-69.5%). The per cent enrichment in SOC content was found superior in RDN100 + 2% Urea FS (52.6%) followed by RDN100 + 1.5% KNO3 FS (39.4%) statistically comparable to RDF (38.1%). The fertilizers contributed largest share of total carbon emissions, accounting for 45.6-52.3%. NDVI based N management reduced GHGs emissions by approximately 11.23% over RDF. The mean biological yield (seed + stover) unveiled positive correlation to total nitrogen (r2 = 98), total phosphorus (r2 = 95) and total potassium (r2 = 98) uptake. This innovative technology enables farmers to prevent excessive N fertilization, thereby reducing resource wastage and minimizing nitrous oxide emission. This technology provides insight on N need of crop in real time in right quantity.

PMID:
42777166
Bibliographic data and abstract were imported from PubMed on 24 Sep 2026.

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