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Micro-irrigation strategies to improve water-use efficiency of cherry trees in Northern China

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  • Liao, Renkuan
  • Wu, Wenyong
  • Hu, Yaqi
  • Xu, Di
  • Huang, Qiannan
  • Wang, Shiyu

Abstract

Extensive irrigation strategies are commonly and widely used for orchards in Northern China, leading to low water-use efficiency (WUE) and potential fertilizer pollution of underground water. Effective micro-irrigation strategies for orchards remain unclear and require further investigation to assist in developing orchard water-saving irrigation systems. In this study, compared with local traditional furrow irrigation, six micro-irrigation strategies (with or without mulch film) were applied to a 6-year-old cherry (Prunus avium L.) field for three years (2015–2017). The moisture spatial distribution of soil profile, water consumption, yield, and fruit quality were measured to evaluate the effectiveness of different irrigation strategies on growth and WUE of cherry trees. The results showed that the strongest variability of moisture in soil profile was in the 0–60 cm soil layer, indicating the water uptake of cherry trees is closely related to the soil moisture content in this region. Compared with furrow irrigation, micro-irrigation strategies can significantly (P < 0.05) reduce the water consumption of cherry trees without reducing yield, and treatments with mulch film will further enhance this effect. Ring drip irrigation with mulch film and parallel drip irrigation with mulch film significantly (P < 0.05) improved WUE. Furthermore, parallel drip irrigation with mulch film at a designed wetting depth of 60 cm was suggested irrigation strategy for a 6-year-old cherry field in terms of WUE, yield, fruit quality, and maintenance cost. The findings of this study provide a typical reference for further research on water-saving irrigation systems of perennial fruit trees.

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  • Liao, Renkuan & Wu, Wenyong & Hu, Yaqi & Xu, Di & Huang, Qiannan & Wang, Shiyu, 2019. "Micro-irrigation strategies to improve water-use efficiency of cherry trees in Northern China," Agricultural Water Management, Elsevier, vol. 221(C), pages 388-396.
  • Handle: RePEc:eee:agiwat:v:221:y:2019:i:c:p:388-396
    DOI: 10.1016/j.agwat.2019.05.017
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    1. Yuan, Bao-Zhong & Nishiyama, Soichi & Kang, Yaohu, 2003. "Effects of different irrigation regimes on the growth and yield of drip-irrigated potato," Agricultural Water Management, Elsevier, vol. 63(3), pages 153-167, December.
    2. Mark E. Ledger & Lee E. Brown & François K. Edwards & Alexander M. Milner & Guy Woodward, 2013. "Drought alters the structure and functioning of complex food webs," Nature Climate Change, Nature, vol. 3(3), pages 223-227, March.
    3. Tiwari, K. N. & Singh, Ajai & Mal, P. K., 2003. "Effect of drip irrigation on yield of cabbage (Brassica oleracea L. var. capitata) under mulch and non-mulch conditions," Agricultural Water Management, Elsevier, vol. 58(1), pages 19-28, January.
    4. Livellara, N. & Saavedra, F. & Salgado, E., 2011. "Plant based indicators for irrigation scheduling in young cherry trees," Agricultural Water Management, Elsevier, vol. 98(4), pages 684-690, February.
    5. Cao, Xiaoqing & Yang, Peiling & Engel, Bernard A. & Li, Pingfeng, 2018. "The effects of rainfall and irrigation on cherry root water uptake under drip irrigation," Agricultural Water Management, Elsevier, vol. 197(C), pages 9-18.
    6. Sarkar, S. & Goswami, S.B. & Mallick, S. & Nanda, M.K., 2008. "Different indices to characterize water use pattern of micro-sprinkler irrigated onion (Allium cepa L.)," Agricultural Water Management, Elsevier, vol. 95(5), pages 625-632, May.
    7. Çolak, Yeşim Bozkurt & Yazar, Attila & Gönen, Engin & Eroğlu, E. Çağlar, 2018. "Yield and quality response of surface and subsurface drip-irrigated eggplant and comparison of net returns," Agricultural Water Management, Elsevier, vol. 206(C), pages 165-175.
    8. Ibragimov, Nazirbay & Evett, Steven R. & Esanbekov, Yusupbek & Kamilov, Bakhtiyor S. & Mirzaev, Lutfullo & Lamers, John P.A., 2007. "Water use efficiency of irrigated cotton in Uzbekistan under drip and furrow irrigation," Agricultural Water Management, Elsevier, vol. 90(1-2), pages 112-120, May.
    9. Reynolds, Curt & Yitayew, Muluneh, 1995. "Low-head bubbler irrigation systems. Part II. Air lock problems," Agricultural Water Management, Elsevier, vol. 29(1), pages 25-35, December.
    10. Gardenas, A.I. & Hopmans, J.W. & Hanson, B.R. & Simunek, J., 2005. "Two-dimensional modeling of nitrate leaching for various fertigation scenarios under micro-irrigation," Agricultural Water Management, Elsevier, vol. 74(3), pages 219-242, June.
    11. Jalota, S.K. & Sood, Anil & Chahal, G.B.S. & Choudhury, B.U., 2006. "Crop water productivity of cotton (Gossypium hirsutum L.)-wheat (Triticum aestivum L.) system as influenced by deficit irrigation, soil texture and precipitation," Agricultural Water Management, Elsevier, vol. 84(1-2), pages 137-146, July.
    12. Reynolds, Curt & Yitayew, Muluneh & Petersen, Margaret, 1995. "Low-head bubbler irrigation systems. Part I: Design," Agricultural Water Management, Elsevier, vol. 29(1), pages 1-24, December.
    13. Zhang, You-Liang & Wang, Feng-Xin & Shock, Clinton Cleon & Yang, Kai-Jing & Kang, Shao-Zhong & Qin, Jing-Tao & Li, Si-En, 2017. "Influence of different plastic film mulches and wetted soil percentages on potato grown under drip irrigation," Agricultural Water Management, Elsevier, vol. 180(PA), pages 160-171.
    14. Chaoqing Yu, 2011. "China's water crisis needs more than words," Nature, Nature, vol. 470(7334), pages 307-307, February.
    15. Yang, Kaijing & Wang, Fengxin & Shock, Clinton C. & Kang, Shaozhong & Huo, Zailin & Song, Na & Ma, Dan, 2017. "Potato performance as influenced by the proportion of wetted soil volume and nitrogen under drip irrigation with plastic mulch," Agricultural Water Management, Elsevier, vol. 179(C), pages 260-270.
    16. Robles, J.M. & Botía, P. & Pérez-Pérez, J.G, 2016. "Subsurface drip irrigation affects trunk diameter fluctuations in lemon trees, in comparison with surface drip irrigation," Agricultural Water Management, Elsevier, vol. 165(C), pages 11-21.
    17. C. J. Vörösmarty & P. B. McIntyre & M. O. Gessner & D. Dudgeon & A. Prusevich & P. Green & S. Glidden & S. E. Bunn & C. A. Sullivan & C. Reidy Liermann & P. M. Davies, 2010. "Global threats to human water security and river biodiversity," Nature, Nature, vol. 467(7315), pages 555-561, September.
    18. Qin, Shujing & Li, Sien & Kang, Shaozhong & Du, Taisheng & Tong, Ling & Ding, Risheng, 2016. "Can the drip irrigation under film mulch reduce crop evapotranspiration and save water under the sufficient irrigation condition?," Agricultural Water Management, Elsevier, vol. 177(C), pages 128-137.
    19. Hanjra, Munir A. & Qureshi, M. Ejaz, 2010. "Global water crisis and future food security in an era of climate change," Food Policy, Elsevier, vol. 35(5), pages 365-377, October.
    20. Reyes-Cabrera, Joel & Zotarelli, Lincoln & Dukes, Michael D. & Rowland, Diane L. & Sargent, Steven A., 2016. "Soil moisture distribution under drip irrigation and seepage for potato production," Agricultural Water Management, Elsevier, vol. 169(C), pages 183-192.
    21. Koumanov, K. S. & Hopmans, J. W. & Schwankl, L. J. & Andreu, L. & Tuli, A., 1997. "Application efficiency of micro-sprinkler irrigation of almond trees," Agricultural Water Management, Elsevier, vol. 34(3), pages 247-263, October.
    22. Shilong Piao & Philippe Ciais & Yao Huang & Zehao Shen & Shushi Peng & Junsheng Li & Liping Zhou & Hongyan Liu & Yuecun Ma & Yihui Ding & Pierre Friedlingstein & Chunzhen Liu & Kun Tan & Yongqiang Yu , 2010. "The impacts of climate change on water resources and agriculture in China," Nature, Nature, vol. 467(7311), pages 43-51, September.
    23. Li, Xianyue & Yang, Peiling & Ren, Shumei & Li, Yunkai & Liu, Honglu & Du, Jun & Li, Pingfeng & Wang, Caiyuan & Ren, Liang, 2010. "Modeling cherry orchard evapotranspiration based on an improved dual-source model," Agricultural Water Management, Elsevier, vol. 98(1), pages 12-18, December.
    24. Fang, Qin & Zhang, Xiying & Shao, Liwei & Chen, Suying & Sun, Hongyong, 2018. "Assessing the performance of different irrigation systems on winter wheat under limited water supply," Agricultural Water Management, Elsevier, vol. 196(C), pages 133-143.
    25. Freire-González, Jaume & Decker, Christopher & Hall, Jim W., 2017. "The Economic Impacts of Droughts: A Framework for Analysis," Ecological Economics, Elsevier, vol. 132(C), pages 196-204.
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