Global-scale prevalence of low nutrient use efficiency across major crops

J Ji Liu H Hai Wang (Key Lab of Biomass Chemical Engineering of Ministry of Education and College of Chemical and Biological Engineering) J Josep Peñuelas J Juan Mou M Manuel Delgado-Baquerizo (Laboratorio de Biodiversidad y Funcionamiento Ecosistémico, Instituto de Recursos Naturales y Agrobiología de Sevilla, Consejo Superiorde Investigaciones Científicas,) J Jordi Sardans F Fernando Coello Z Zhi Quan T Tianyi Qiu Y Yanyan Li (Department of Chemical Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, Guangdong, China.) Y Yahui Guo Z Ziying Hu Y Yanrui Ying J Jingyi Lv Y Yufeng Zhang W Wenfeng Tan G Guiyao Zhou (Laboratorio de Biodiversidad y Funcionamiento Ecosistémico, Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), Consejo Superior de Investigaciones Científicas (CSIC)) L Lu-Jun Li L Linchuan Fang (Key Laboratory of Green Utilization of Critical Non-metallic Mineral Resources, School of Resources and Environmental Engineering, Wuhan University of Technology)

Abstract

Abstract Enhancing nitrogen (N) and phosphorus (P) use efficiency (NUE and PUE) is essential for advancing sustainable agriculture and reducing dependency on non-renewable fertilizers. However, the long-term dynamics of NUE and PUE across major crops remain poorly understood at a global scale. Here, we compile a comprehensive global database encompassing 3360 observations across 205 countries to analyze trends in NUE and PUE for major crops from 1961 to 2018. Today, PUE and NUE are still suboptimal, particularly in developing regions, emphasizing the need for context-specific strategies to improve nutrient use efficiency. Global mapping shows that NUE and PUE are highly context-dependent, with variations observed by crop type and region. For instance, rice achieves optimal NUE and PUE in tropical zones, while wheat performs best in temperate climates. Notably, maize continues to exhibit significant nutrient inefficiencies, especially in China and the United States, with considerable N and P surpluses. Taken together, this global analysis provides spatially explicit insights to guide region-specific efforts toward improving nutrient use efficiency, supporting sustainable agricultural practices and reducing global fertilizer dependence.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

J

Ji Liu

H

Hai Wang

Key Lab of Biomass Chemical Engineering of Ministry of Education and College of Chemical and Biological Engineering

J

Josep Peñuelas

J

Juan Mou

M

Manuel Delgado-Baquerizo

Laboratorio de Biodiversidad y Funcionamiento Ecosistémico, Instituto de Recursos Naturales y Agrobiología de Sevilla, Consejo Superiorde Investigaciones Científicas,

J

Jordi Sardans

F

Fernando Coello

Z

Zhi Quan

T

Tianyi Qiu

Y

Yanyan Li

Department of Chemical Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, Guangdong, China.

Y

Yahui Guo

Z

Ziying Hu

Y

Yanrui Ying

J

Jingyi Lv

Y

Yufeng Zhang

W

Wenfeng Tan

G

Guiyao Zhou

Laboratorio de Biodiversidad y Funcionamiento Ecosistémico, Instituto de Recursos Naturales y Agrobiología de Sevilla (IRNAS), Consejo Superior de Investigaciones Científicas (CSIC)

L

Lu-Jun Li

L

Linchuan Fang

Key Laboratory of Green Utilization of Critical Non-metallic Mineral Resources, School of Resources and Environmental Engineering, Wuhan University of Technology