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Research Article

Effects of irrigation and nitrogen on growth and water productivity of maize grown in saline soil

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Pages 1223-1235 | Received 14 Dec 2021, Accepted 15 May 2022, Published online: 24 May 2022

References

  • Attia A, El-Hendawy S, Al-Suhaibani N, Alotaibi M, Tahir M, Kamal K. 2021. Evaluating deficit irrigation scheduling strategies to improve yield and water productivity of maize in arid environment using simulation. Agric Water Manage. 249:106812. doi:10.1016/j.agwat.2021.106812.
  • Bandyopadhyay PK, Mallick S, Rana SK. 2005. Water balance and crop coefficients of summer-grown peanut (Arachis hypogaea L.) in a humid tropical region of India. Irrigation Sci. 23(4):161–169. doi:10.1007/s00271-005-0104-7.
  • Barati V, Ghadiri H. 2017. Assimilate and nitrogen remobilization of six-rowed and two-rowed winter barley under drought stress at different nitrogen fertilization. Arch Agron Soil Sci. 63(6):841–855. doi:10.1080/03650340.2016.1238075.
  • Chen XP, Cui ZL, Vitousek PM, Cassman KG, Matson PA, Bai JS, Meng QF, Hou P, Yue SC, Römheld V, et al. 2011. Integrated soil-crop system management for food security. P Natl A Sci. 108(16):6399–6404. doi:10.1073/pnas.1101419108.
  • Di Paolo E, Rinaldi M. 2008. Yield response of corn to irrigation and nitrogen fertilization in a Mediterranean environment. Field Crops Res. 105(3):202–210. doi:10.1016/j.fcr.2007.10.004.
  • El Jaouhari N, Abouabdillah A, Bouabid R, Bourioug M, Aleya L, Chaoui M. 2018. Assessment of sustainable deficit irrigation in a Moroccan apple orchard as a climate change adaptation strategy. Sci Total Environ. 642:574–581. doi:10.1016/j.scitotenv.2018.06.108.
  • Faloye OT, Alatise MO, Ajayi AE, Ewulo BS. 2019. Effects of biochar and inorganic fertiliser applications on growth, yield and water use efficiency of maize under deficit irrigation. Agric Water Manage. 217:165–178. doi:10.1016/j.agwat.2019.02.044.
  • Fayez KA, Bazaid SA. 2014. Improving drought and salinity tolerance in barley by application of salicylic acid and potassium nitrate. J Saudi Society Agric Sci. 13:45–55.
  • Feng GX, Zhang ZY, Wan CY, Lu PR, Bakour A. 2017. Effects of saline water irrigation on soil salinity and yield of summer maize (Zea mays L.) in subsurface drainage system. Agric Water Manage. 193:205–213. doi:10.1016/j.agwat.2017.07.026.
  • Fu X, Yang SQ, Liu DP, Liu M, Han TK. 2018. Responses of soil microbes to N fertilizers in two saline soils. J Plant Nutr Fert. 24:661–667. doi:10.11674/zwyf.17355.
  • García JM, Hueso A, Gómez-del-Campo M. 2020. Deficit irrigation during the oil synthesis period affects olive oil quality in high-density orchards (cv. Arbequina). Agric Water Manage. 230:105858. doi:10.1016/j.agwat.2019.105858.
  • Guo JH, Liu XJ, Zhang Y, Shen JL, Han WX, Zhang WF, Christie P, Goulding KWT, Vitousek PM, Zhang FS. 2010. Significant acidification in major Chinese croplands. Science. 327(5968):1008–1010. doi:10.1126/science.1182570.
  • Hanjra MA, Qureshi ME. 2010. Global water crisis and future food security in an era of climate change. Food Policy. 35(5):365–377. doi:10.1016/j.foodpol.2010.05.006.
  • Jiang J, Huo ZL, Feng SY, Zhang CB. 2012. Effect of irrigation amount and water salinity on water consumption and water productivity of spring wheat in Northwest China. Field Crop Res. 137:78–88. doi:10.1016/j.fcr.2012.08.019.
  • Jiang J, Zhai DP, Zhang CB. 2019. Effects of irrigation and fertilizer levels on the distribution of water and salt in saline field and maize yield. Chin J Appl Ecol. 30:1207–1217.
  • Kang SZ, Hao XM, Du TS, Tong L, Su XL, Lu HN, Li XL, Huo ZL, Li S, Ding RS. 2017. Improving agricultural water productivity to ensure food security in China under changing environment: from research to practice. Agric Water Manage. 179:5–17. doi:10.1016/j.agwat.2016.05.007.
  • Li GH, Zhao B, Dong ST, Zhang JW, Liu P, Lu WP. 2020. Controlled-release urea combining with optimal irrigation improved grain yield, nitrogen uptake, and growth of maize. Agric Res Arid Areas. 227:105834. doi:10.1016/j.agwat.2019.105834.
  • Li C, Wang QS, Luo S, Quan H, Wang NJ, Luo XQ, Zhang TB, Ding DY, Dong QG, Feng H. 2021. Reducing water and nitrogen inputs combined with plastic mulched ridge-furrow irrigation improves soil water and salt status in arid saline areas, China. J Arid Land. 13(8):761–776. doi:10.1007/s40333-021-0015-3.
  • Lian YH, Meng XP, Yang Z, Wang TL, Ali S, Yang BP, Zhang P, Han QF, Jia ZK, Ren XL. 2017. Strategies for reducing the fertilizer application rate in the ridge and furrow rainfall harvesting system in semiarid regions. Sci Rep. 7(1):2644. doi:10.1038/s41598-017-02731-y.
  • Memon SA, Sheikh IA, Talpur MA, Mangrio MA. 2021. Impact of deficit irrigation strategies on winter wheat in semi-arid climate of sindh. Agric Water Manage. 243:106389. doi:10.1016/j.agwat.2020.106389.
  • Min D, Wang ZH, Li YN, Zhang D. 2020. Effects of different irrigation and nitrogen application levels on the yield and water and nitrogen use efficiency of spring maize. Agric Res Arid Areas. 38:153–160.
  • Munoz P, Anton A, Paranjpe A, Arino J, Montero JI. 2008. High decrease in nitrate leaching by lower N input without reducing greenhouse tomato yield. Agron Sustain Dev. 28(4):489–495. doi:10.1051/agro:2008024.
  • Ning DF, Qin AZ, Duan AW, Xiao JF, Zhang JY, Liu ZG, Zhao B, Liu ZD, Liu Z. 2019. Deficit irrigation combined with reduced N-fertilizer rate can mitigate the high nitrous oxide emissions from Chinese drip-fertigated maize field. Glob Ecol Conserv. 20:e00803. doi:10.1016/j.gecco.2019.e00803.
  • Pandey RK, Maranville JW, Admou A. 2000. Deficit irrigation and nitrogen effects on maize in a Sahelian environment: i. Grain yield and yield components. Agric Water Manage. 46(1):1–13. doi:10.1016/S0378-3774(00)00073-1.
  • Qi WZ, Liu HH, Liu P, Dong ST, Zhao BQ, So HB, Li G, Liu HD, Zhang JW, Zhao B. 2012. Morphological and physiological characteristics of corn (Zea mays L.) roots from cultivars with different yield potentials. Eur J Agron. 38:54–63. doi:10.1016/j.eja.2011.12.003.
  • Qi DL, Hu TT, Song X. 2020. Effects of nitrogen application rates and irrigation regimes on grain yield and water use efficiency of maize under alternate partial root-zone irrigation. J Integr Agric. 19(11):2792–2806. doi:10.1016/S2095-3119(20)63205-1.
  • Shi JC, Yasuor H, Yermiyahu U, Zuo Q, Ben-Gal A. 2014. Dynamic responses of wheat to drought and nitrogen stresses during re-watering cycles. Agric Water Manage. 146:163–172. doi:10.1016/j.agwat.2014.08.006.
  • Talebnejad R, Sepaskhah AR. 2015. Effect of deficit irrigation and different saline groundwater depths on yield and water productivity of quinoa. Agric Water Manage. 159:225–238. doi:10.1016/j.agwat.2015.06.005.
  • Tian XM, Guo Y, Wang QM, Zhou N, Zhao C, Fan ZL, Fan H, Chai Q. 2019. Response of water and nitrogen productivity to irrigation and nitrogen application level of spring wheat under no-tillage and rotation with plastic film maize. J Triticeae Crop. 39:818–825.
  • Wang X, Shi Y, Guo ZJ, Zhang YL, Yu ZW. 2015. Water use and soil nitrate nitrogen changes under supplemental irrigation with nitrogen application rate in wheat field. Field Crop Res. 183:117–125. doi:10.1016/j.fcr.2015.07.021.
  • Wang YS, Janz B, Engedal T, Neergaard AD. 2017. Effect of irrigation regimes and nitrogen rates on water use efficiency and nitrogen uptake in maize. Agric Water Manage. 179:271–276. doi:10.1016/j.agwat.2016.06.007.
  • Wang LL, Palta JA, Chen W, Chen YL, Deng XP. 2018. Nitrogen fertilization improved water-use efficiency of winter wheat through increasing water use during vegetative rather than grain filling. Agric Water Manage. 197:41–53. doi:10.1016/j.agwat.2017.11.010.
  • Wu XY, Cai X, Li QQ, Ren BZ, Bi YP, Zhang JP, Wang D. 2021. Effects of nitrogen application rate on summer maize (Zea mays L.) yield and water–nitrogen use efficiency under micro–sprinkling irrigation in the Huang–Huai–Hai Plain of China. Arch Agron Soil Sci. 1–15. doi:10.1080/03650340.2021.1939867.
  • Xu R, Zhao H, Liu G, You Y, Zhang Y, Liu N, Zhang Y. 2021. Effects of nitrogen and maize plant density on forage yield and nitrogen uptake in an alfalfa–silage maize relay intercropping system in the North China Plain. Field Crop Res. 263:108068. doi:10.1016/j.fcr.2021.108068.
  • Yan JW, Shi HB. 2014. Effect of nitrogen fertilizer on yield of wheat and soil moisture and salinity of different salinity soil. J Irrig Drain. 33:50–53.
  • Yuan CF, Feng SY, Huo ZL, Ji QY. 2019. Effects of deficit irrigation with saline water on soil water-salt distribution and water use efficiency of maize for seed production in arid Northwest China. Agric Water Manage. 212:424–432. doi:10.1016/j.agwat.2018.09.019.
  • Zhang YQ, Wang JD, Gong SH, D X, Sui J. 2017. Nitrogen fertigation effect on photosynthesis, grain yield and water use efficiency of winter wheat. Agric Water Manage. 179:277–287. doi:10.1016/j.agwat.2016.08.007.
  • Zhang Y, Ma Q, Liu DH, Sun LF, Ren XL, Ali S, Zhang P, Jia ZK. 2018. Effects of different fertilizer strategies on soil water utilization and maize yield in the ridge and furrow rainfall harvesting system in semiarid regions of China. Agric Water Manage. 208:414–421. doi:10.1016/j.agwat.2018.06.032.
  • Zhang XD, Li ZM, Siddique KHM, Shayakhmetova A, Jia ZK, Han QF. 2020. Increasing maize production and preventing water deficits in semi-arid areas: a study matching fertilization with regional precipitation under mulch planting. Agric Water Manage. 241:106347. doi:10.1016/j.agwat.2020.106347.
  • Zheng LF, Wu SD, Dang TH. 2019. Effect of different fertilization modes on spring maize yield, water use efficiency and nitrate nitrogen residue. J Soil Water Conserv. 33:221–227.
  • Zou YF, Qaisar S, Ajaz A, Xu JT, Muhammad IK, Qing M, Muhammad A, Cai HJ, Kadambot H MS. 2021. Deficit irrigation improves maize yield and water use efficiency in a semi-arid environment. Agric Water Manage. 243:106483. doi:10.1016/j.agwat.2020.106483.

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