Deficit irrigation maintains maize yield through improved soil water extraction and stable canopy radiation interception Academic Article uri icon

abstract

  • AbstractDeficit irrigation (DI) is an effective way to save irrigation water while maintaining sustainable yield in irrigated crops. However, limited information is available related to canopy structure and solar radiation use under DI condition. In this study, our objective was to assess maize hybrids for leaf development, photosynthetically active radiation (PAR) interception and water use under DI condition. Field experiments were conducted in 2016 and 2017 in four maize hybrids at wellwatered (I100, referring to 100% evapotranspiration [ET] requirement) and DI (I75, referring to 75% ET requirement) water regimes. Compared to I100, I75 did not reduce maize biomass and grain yield. Although DI reduced the leaf appearance rates (1.5% in 2016 and 7.6% in 2017) and resulted in greater variations in leaf area index (LAI) among hybrids, the amount of PAR interception was not affected during the growing season. DI significantly reduced the seasonal ET in both years (19.8% in 2016 and 26.6% in 2017). All the hybrids extracted more soil water (29mm in 2016 and 27mm in 2017) at I75 than at I100. Maize plants at I75 had greater water use efficiency (WUE) (1.68kgm3) than those at I100 (1.41kgm3). However, DI did not affect radiation use efficiency (RUE). In conclusion, DI at I75 maintained grain yield through improved soil water extraction and WUE but stable canopy radiation interception and RUE.

published proceedings

  • JOURNAL OF AGRONOMY AND CROP SCIENCE

author list (cited authors)

  • Zhao, J., Xue, Q., Jessup, K. E., Marek, T. H., Xu, W., & Bell, J.

citation count

  • 1

publication date

  • February 2023

publisher