Molybdenum as a context-dependent lever for crop nitrogen use efficiency: a review

Molybdenum (Mo), an essential cofactor for nitrate reductase and nitrogenase, has demonstrated variable crop responses across soil conditions, crop species, application methods, and environmental stress factors. We conducted a Scopus-based scoping review and evidence mapping of studies published from 2015 to 2025 that evaluated Mo effects on NUE-related agronomic, physiological, biochemical, and symbiotic outcomes. Rather than pooling effect sizes, we applied context-stratified direction-of-effect coding and quality-sensitivity analyses. Of the 495 records identified, 141 reports were retained, and the cleaned dataset comprised 249 coded observations, including 233 route-assigned observations. Mixed responses represented the predominant pattern across all coded observations (114/249; 45.8%), whereas clearly positive responses accounted for 86/249 (34.5%). This imbalance indicates that Mo responses are strongly conditional rather than reliably positive. Mixed responses also persisted after lower-support evidence was excluded (97/215; 45.1%), and no conventional application route showed consistent superiority. More importantly, nano-Mo did not demonstrate a favorable route-level pattern: none of the 13 route-assigned observations was clearly positive, whereas 11 (84.6%) were categorized as mixed. The evidence is therefore insufficient to support field-scale recommendation of nano-Mo. Mo management should be guided by constraint-based diagnosis, route- and dose-specific calibration, and field validation using yield, N uptake, and standardized NUE-related endpoints.

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Publication Details

Journal
ENGINEERING Agriculture
Published
2026-09-15
DOI
https://doi.org/10.15302/j-fase-2027737
Primary Topic
Metalloenzymes and iron-sulfur proteins
Type
article
Field-Weighted Citation Impact
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article

Molybdenum as a context-dependent lever for crop nitrogen use efficiency: a review

Mochammad Roviq, Moch Dawam Maghfoer, Nur Izzatul MAULIDAH, Ridho Victory NAZARA et al.
ENGINEERING Agriculture
Metalloenzymes and iron-sulfur proteins
article

Molybdenum as a context-dependent lever for crop nitrogen use efficiency: a review

Mochammad Roviq, Moch Dawam Maghfoer, Nur Izzatul MAULIDAH, Ridho Victory NAZARA, Nurul AINI, Andi KURNIAWAN
article en

Abstract

Molybdenum (Mo), an essential cofactor for nitrate reductase and nitrogenase, has demonstrated variable crop responses across soil conditions, crop species, application methods, and environmental stress factors. We conducted a Scopus-based scoping review and evidence mapping of studies published from 2015 to 2025 that evaluated Mo effects on NUE-related agronomic, physiological, biochemical, and symbiotic outcomes. Rather than pooling effect sizes, we applied context-stratified direction-of-effect coding and quality-sensitivity analyses. Of the 495 records identified, 141 reports were retained, and the cleaned dataset comprised 249 coded observations, including 233 route-assigned observations. Mixed responses represented the predominant pattern across all coded observations (114/249; 45.8%), whereas clearly positive responses accounted for 86/249 (34.5%). This imbalance indicates that Mo responses are strongly conditional rather than reliably positive. Mixed responses also persisted after lower-support evidence was excluded (97/215; 45.1%), and no conventional application route showed consistent superiority. More importantly, nano-Mo did not demonstrate a favorable route-level pattern: none of the 13 route-assigned observations was clearly positive, whereas 11 (84.6%) were categorized as mixed. The evidence is therefore insufficient to support field-scale recommendation of nano-Mo. Mo management should be guided by constraint-based diagnosis, route- and dose-specific calibration, and field validation using yield, N uptake, and standardized NUE-related endpoints.

ENGINEERING AgricultureVol. 14(3)
University of Brawijaya (ID), Universitas Sumatera Utara (ID), Universitas Muhammadiyah Malang (ID), Universitas Muhammadiyah Jember (ID)
Lembaga Pengelola Dana Pendidikan
Openalex Percentile: Top 30%
Metalloenzymes and iron-sulfur proteins
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