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Yield and quality of potato tuber and its water productivity are influenced by alternate furrow irrigation in a raised bed system

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  • Sarker, Khokan Kumer
  • Hossain, Akbar
  • Timsina, Jagadish
  • Biswas, Sujit Kumar
  • Kundu, Bimal Chandra
  • Barman, Alak
  • Murad, Khandakar Faisal Ibn
  • Akter, Farzana

Abstract

Scarcity of irrigation water has now become the main constraint for crop production globally. Irrigation water scarcity becomes severe especially during the dry, winter season in South Asia, particularly in Bangladesh due to the decline in groundwater table and drying of surface water resources. In South Asian countries, potato is traditionally grown with furrow irrigation system in dry, winter season in which irrigation water is applied frequently to each and every furrow. Such irrigation method increases water use and lowers irrigation water productivity (WP). We hypothesized that potatoes grown on raised beds, and irrigation water applied to alternate furrows based on the principle of partial root-zone drying, would maintain yield, reduce water use and increase WP, and enhance the quality of potato tubers in drought-prone areas of South Asia. To test this hypothesis, an experiment was conducted in two consecutive dry, winter seasons (2015–16 and 2016–17) at the research field of Irrigation and Water Management Division of the Bangladesh Agricultural Research Institute, Gazipur, Central Bangladesh and assessed crop dry matter and yields, water use and WP, quality, and nutrient concentrations of potato tubers in different irrigation treatments. The experiment consisted of two levels (first, three irrigation at critical growth stages and second, four irrigation at every 12–15 days interval) and three methods (AFI – alternate furrow irrigation; FFI - fixed furrow irrigation; and EFI – every furrow irrigation) of irrigation. Dry matter and tuber yield of potato did not differ significantly (P < 0.05) between AFI and EFI but differed significantly (P < 0.01) when compared to FFI. On average, AFI and EFI had tuber yield of 21.9 and 22.2 t ha−1 with three irrigation and 23.2 t ha−1 and 23.9 t ha−1 with four irrigation, respectively during 2016 and 2017 while AFI and EFI had WP of 14.8 kg m-3 and 9.89 kg m-3 with three irrigation and 14.9 kg m-3 and 9.96 kg m-3 with four irrigation, respectively during 2016 and 2017. On average, AFI saved irrigation water by 35% and irrigation water productivity significantly (P < 0.001) improved by 50% compared to EFI over two years. Total soluble sugar, as an indicator of tuber quality, also varied significantly (P < 0.01) between AFI (6.290 Brix) and EFI (6.370 Brix). Nutrient concentrations of potato tubers were not significantly different (P < 0.05) between irrigation treatments. Results demonstrate that the alternate furrow irrigation can maintain potato tuber yield, and reduce water use and increase irrigation water productivity of potato tubers compared to every or fixed furrow irrigation in Bangladesh. This irrigation method could potentially be an attractive alternative to every or fixed furrow irrigation in South Asian countries where irrigation water is limited and appropriate water-saving irrigation methods are not available.

Suggested Citation

  • Sarker, Khokan Kumer & Hossain, Akbar & Timsina, Jagadish & Biswas, Sujit Kumar & Kundu, Bimal Chandra & Barman, Alak & Murad, Khandakar Faisal Ibn & Akter, Farzana, 2019. "Yield and quality of potato tuber and its water productivity are influenced by alternate furrow irrigation in a raised bed system," Agricultural Water Management, Elsevier, vol. 224(C), pages 1-1.
  • Handle: RePEc:eee:agiwat:v:224:y:2019:i:c:9
    DOI: 10.1016/j.agwat.2019.105750
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    1. Murad, Khandakar Faisal Ibn & Hossain, Akbar & Fakir, Oli Ahmed & Biswas, Sujit Kumar & Sarker, Khokan Kumer & Rannu, Rahena Parvin & Timsina, Jagadish, 2018. "Conjunctive use of saline and fresh water increases the productivity of maize in saline coastal region of Bangladesh," Agricultural Water Management, Elsevier, vol. 204(C), pages 262-270.
    2. 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.
    3. Hu, Tiantian & Kang, Shaozhong & Li, Fusheng & Zhang, Jianhua, 2009. "Effects of partial root-zone irrigation on the nitrogen absorption and utilization of maize," Agricultural Water Management, Elsevier, vol. 96(2), pages 208-214, February.
    4. Ierna, Anita & Mauromicale, Giovanni, 2018. "Potato growth, yield and water productivity response to different irrigation and fertilization regimes," Agricultural Water Management, Elsevier, vol. 201(C), pages 21-26.
    5. Ahmadi, Seyed Hamid & Andersen, Mathias N. & Plauborg, Finn & Poulsen, Rolf T. & Jensen, Christian R. & Sepaskhah, Ali Reza & Hansen, Søren, 2010. "Effects of irrigation strategies and soils on field-grown potatoes: Gas exchange and xylem [ABA]," Agricultural Water Management, Elsevier, vol. 97(10), pages 1486-1494, October.
    6. Zegbe, J. A. & Behboudian, M. H. & Clothier, B. E., 2004. "Partial rootzone drying is a feasible option for irrigating processing tomatoes," Agricultural Water Management, Elsevier, vol. 68(3), pages 195-206, August.
    7. Jensen, Christian R. & Battilani, Adriano & Plauborg, Finn & Psarras, Georgios & Chartzoulakis, Kostas & Janowiak, Franciszek & Stikic, Radmila & Jovanovic, Zorica & Li, Guitong & Qi, Xuebin & Liu, Fu, 2010. "Deficit irrigation based on drought tolerance and root signalling in potatoes and tomatoes," Agricultural Water Management, Elsevier, vol. 98(3), pages 403-413, December.
    8. Onder, Sermet & Caliskan, Mehmet Emin & Onder, Derya & Caliskan, Sevgi, 2005. "Different irrigation methods and water stress effects on potato yield and yield components," Agricultural Water Management, Elsevier, vol. 73(1), pages 73-86, April.
    9. Darwish, T.M. & Atallah, T.W. & Hajhasan, S. & Haidar, A., 2006. "Nitrogen and water use efficiency of fertigated processing potato," Agricultural Water Management, Elsevier, vol. 85(1-2), pages 95-104, September.
    10. Sharma, Bharat R. & Minhas, P.S., 2005. "Strategies for managing saline/alkali waters for sustainable agricultural production in South Asia," Agricultural Water Management, Elsevier, vol. 78(1-2), pages 136-151, September.
    11. Li, Fusheng & Yu, Jiangmin & Nong, Mengling & Kang, Shaozhong & Zhang, Jianhua, 2010. "Partial root-zone irrigation enhanced soil enzyme activities and water use of maize under different ratios of inorganic to organic nitrogen fertilizers," Agricultural Water Management, Elsevier, vol. 97(2), pages 231-239, February.
    12. Badr, M.A. & El-Tohamy, W.A. & Zaghloul, A.M., 2012. "Yield and water use efficiency of potato grown under different irrigation and nitrogen levels in an arid region," Agricultural Water Management, Elsevier, vol. 110(C), pages 9-15.
    13. Ahmadi, Seyed Hamid & Andersen, Mathias N. & Plauborg, Finn & Poulsen, Rolf T. & Jensen, Christian R. & Sepaskhah, Ali Reza & Hansen, Søren, 2010. "Effects of irrigation strategies and soils on field grown potatoes: Yield and water productivity," Agricultural Water Management, Elsevier, vol. 97(11), pages 1923-1930, November.
    14. Yactayo, Wendy & Ramírez, David A. & Gutiérrez, Raymundo & Mares, Víctor & Posadas, Adolfo & Quiroz, Roberto, 2013. "Effect of partial root-zone drying irrigation timing on potato tuber yield and water use efficiency," Agricultural Water Management, Elsevier, vol. 123(C), pages 65-70.
    15. Kashyap, P. S. & Panda, R. K., 2003. "Effect of irrigation scheduling on potato crop parameters under water stressed conditions," Agricultural Water Management, Elsevier, vol. 59(1), pages 49-66, March.
    16. Islam, Talebul & Sarker, Habibullah & Alam, Jahangir & Harun-Ur-Rashid, 1990. "Water use and yield relationships of irrigated potato," Agricultural Water Management, Elsevier, vol. 18(2), pages 173-179, July.
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    2. Sarker, Khokan Kumer & Hossain, Akbar & Timsina, Jagadish & Biswas, Sujit Kumar & Malone, Sparkle L. & Alam, Md. Khairul & Loescher, Henry W. & Bazzaz, Mahfuz, 2020. "Alternate furrow irrigation can maintain grain yield and nutrient content, and increase crop water productivity in dry season maize in sub-tropical climate of South Asia," Agricultural Water Management, Elsevier, vol. 238(C).
    3. Salama A. Abd Elhady & Hany G. Abd El-Gawad & Mohamed F. M. Ibrahim & Soumya Mukherjee & Amr Elkelish & Ehab Azab & Adil A. Gobouri & Reham Farag & Huda A. Ibrahim & Nashwa Abu El-Azm, 2021. "Hydrogen Peroxide Supplementation in Irrigation Water Alleviates Drought Stress and Boosts Growth and Productivity of Potato Plants," Sustainability, MDPI, vol. 13(2), pages 1-16, January.
    4. Wang, Xiukang & Guo, Tao & Wang, Yi & Xing, Yingying & Wang, Yanfeng & He, Xiaolong, 2020. "Exploring the optimization of water and fertilizer management practices for potato production in the sandy loam soils of Northwest China based on PCA," Agricultural Water Management, Elsevier, vol. 237(C).
    5. Zhang, Jing & Wang, Qian & Pang, Xiao Pan & Xu, Hai Peng & Wang, Juan & Zhang, Wen Na & Guo, Zheng Gang, 2021. "Effect of partial root-zone drying irrigation (PRDI) on the biomass, water productivity and carbon, nitrogen and phosphorus allocations in different organs of alfalfa," Agricultural Water Management, Elsevier, vol. 243(C).
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