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Research Article

Changes in yield of tomato irrigated with salty water varied by soil properties and irrigation practices: A meta-analysis

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Pages 2300-2313 | Received 09 Jul 2022, Accepted 20 Nov 2022, Published online: 29 Nov 2022

References

  • Abu Glion H, Alkalai-Tuvia S, Zaaroor-Presman M, Chalupowicz D, Zanbar M, Amichai M, Cohen S, Shemer T, Sarig S, Fallik E. 2019. Effects of rootstock/scion combination and two irrigation water qualities on cherry tomato yield and postharvest fruit quality. Horticulturae. 5(2):35. doi:10.3390/horticulturae5020035.
  • Aiello R, Cirelli GL, Consoli S. 2007. Effects of reclaimed wastewater irrigation on soil and tomato fruits: a case study in Sicily (Italy). Agric Water Manage. 93(1–2):65–72. doi:10.1016/j.agwat.2007.06.008.
  • Alkhasha A, Al-Omran A, Louki I. 2019. Impact of deficit irrigation and addition of biochar and polymer on soil salinity and tomato productivity. Can J Soil Sci. 99(4):380–394. doi:10.1139/cjss-2019-0016.
  • Arvidsson J, Håkansson I. 2014. Response of different crops to soil compaction – short-term effects in Swedish field experiments. Soil Tillage Res. 138:56–63. doi:10.1016/j.still.2013.12.006.
  • Azouzi R, Charef A, Zaghdoudi S, Khadhar S, Shabou N, Boughanmi H, Hjiri B, Hajjaj S. 2016. Effect of long-term irrigation with treated wastewater of three soil types on their bulk densities, chemical properties and PAHs content in semi-arid climate. Arab J Geosci. 9(1):3. doi:10.1007/s12517-015-2085-z.
  • Bao H, Li Y. 2010. Effect of stage-specific saline irrigation on greenhouse tomato production. Irrig Sci. 28(5):421–430. doi:10.1007/s00271-009-0204-x.
  • Bar-El Dadon S, Abbo S, Reifen R. 2017. Leveraging traditional crops for better nutrition and health - The case of chickpea. Trends Food Sci Technol. 64:39–47. doi:10.1016/j.tifs.2017.04.002.
  • Bidkhani NOG, Mobasheri MR. 2018. Influence of soil texture on the estimation of bare soil moisture content using MODIS images. Eur J Remote Sens. 51(1):911–920. doi:10.1080/22797254.2018.1514986.
  • Borenstein M, Hedges LV, Higgins JPT, Rothstein HR. 2009. Introduction to Meta-Analysis. West Sussex (UK): Wiley.
  • Canbolat MY, Bilen S, Ҫakmakҫı R, Şahin F, Aydın A. 2006. Effect of plant growth-promoting bacteria and soil compaction on barley seedling growth, nutrient uptake, soil properties and rhizosphere microflora. Biol Fertil Soils. 42(4):350–357. doi:10.1007/s00374-005-0034-9.
  • Cheng M, Wang H, Fan J, Wang X, Sun X, Yang L, Zhang S, Xiang Y, Zhang F. 2021. Crop yield and water productivity under salty water irrigation: a global meta-analysis. Agric Water Manage. 256:107105. doi:10.1016/j.agwat.2021.107105.
  • Choudhary OP, Ghuman BS, Dhaliwal MS, Chawla N. 2010. Yield and quality of two tomato (Solanum lycopersicum L.) cultivars as influenced by drip and furrow irrigation using waters having high residual sodium carbonate. Irrig Sci. 28(6):513–523. doi:10.1007/s00271-010-0211-y.
  • Cuartero J, Fernández-Muñoz R. 1999. Tomato and salinity. Sci Hortic. 78(1–4):83–125. doi:10.1016/S0304-4238(98)00191-5.
  • De Marins AC, Reichert JM, Secco D, Rosa HA, Veloso G. 2018. Crambe grain yield and oil content affected by spatial variability in soil physical properties. Renew Sust Energ Rev. 81:464–472. doi:10.1016/j.rser.2017.08.003.
  • De Pascale S, Graziani G, Graziani G, Maggio A. 2003. Effect of salt stress on water relations and antioxidant activity in tomato. Acta Hortic. 613(613):39–46. doi:10.17660/ActaHortic.2003.613.3.
  • Dong Q, Li N, Zhang Y, Sun Z. 2021. RZWQM simulation of soil moisture and maize yield in newly cultivated land with different soil bulk density. Commun Soil Sci Plant Anal. 52(8):832–842. doi:10.1080/00103624.2020.1869767.
  • Du Y, Niu W, Gu X, Zhang Q, Cui B, Zhao Y. 2018. Crop yield and water use efficiency under aerated irrigation: a meta-analysis. Agric Water Manage. 210:158–164. doi:10.1016/j.agwat.2018.07.038.
  • El-Mogy MM, Garchery C, Stevens R. 2018. Irrigation with salt water affects growth, yield, fruit quality, storability and marker-gene expression in cherry tomato. Acta Agric Scand Sect B-Soil Plant Sci. 68(8):727–737.
  • Ersahin S, Gunal H, Kutlu T, Yetgin B, Coban S. 2006. Estimating specific surface area and cation exchange capacity in soils using fractal dimension of particle-size distribution. Geoderma. 136(3–4):588–597. doi:10.1016/j.geoderma.2006.04.014.
  • FAOSTAT. 2022. Crops and livestock products. [accessed 2022 Mar 29]. https://www.fao.org/faostat/en/#data/QCL/visual-ize/.
  • Fraser EDG. 2020. The challenge of feeding a diverse and growing population. Physiol Behav. 221:112908. doi:10.1016/j.physbeh.2020.112908.
  • Gao Y, Shao G, Wu S, Wang X, Lu J, Cui J. 2021. Changes in soil salinity under treated wastewater irrigation: a meta-analysis. Agric Water Manage. 255:106986. doi:10.1016/j.agwat.2021.106986.
  • Glass GV. 1976. Primary, secondary, and meta-analysis of research. Educ Res. 5(10):3–8. doi:10.3102/0013189X005010003.
  • Hamoud YA, Guo X, Wang Z, Shaghaleh H, Chen S, Hassan A, Bakour A. 2019. Effects of irrigation regime and soil clay content and their interaction on the biological yield, nitrogen uptake and nitrogen-use efficiency of rice grown in southern China. Agric Water Manage. 213:934–946. doi:10.1016/j.agwat.2018.12.017.
  • Hedges LV, Gurevitch J, Curtis PS. 1999. The meta-analysis of response ratios in experimental ecology. Ecology. 80(4):1150–1156. doi:10.1890/0012-9658(1999)080[1150:TMAORR]2.0.CO;2.
  • Huang C, Peng F, You Q, Xue X, Wang T, Liao J. 2016. Growth, yield and fruit quality of cherry tomato irrigated with saline water at different developmental stages. Acta Agric Scand Sect B-Soil Plant Sci. 66(4):317–324.
  • Jeffery S, Abalos D, Prodana M, Bastos AC, van Groenigen Jw, Hungate BA, Verheijen F, van Groenigen JW. 2017. Biochar boosts tropical but not temperate crop yields. Environ Res Lett. 12(5):053001. doi:10.1088/1748-9326/aa67bd.
  • Kahlon MS, Josan AS, Khera KL. 2008. A comparative study on soil and plant parameters under furrow and drip irrigated tomatoes with poor quality water. Res Crops. 9(1):61–72.
  • Kamaluldeen J, Yunusa IAM, Zerihun A, Bruhl JJ, Kristiansen P. 2014. Uptake and distribution of ions reveal contrasting tolerance mechanisms for soil and water salinity in okra (Abelmoschus esculentus) and tomato (Solanum esculentum). Agric Water Manage. 146:95–104. doi:10.1016/j.agwat.2014.07.027.
  • Karlberg L, Rockström J, Annandale JG, Steyn JM. 2007. Low-cost drip irrigation – a suitable technology for Southern Africa? An example with tomatoes using saline irrigation water. Agric Water Manage. 89(1–2):59–70. doi:10.1016/j.agwat.2006.12.011.
  • Langeroodi ARS, Campiglia E, Mancinelli R, Radicetti E. 2019. Can biochar improve pumpkin productivity and its physiological characteristics under reduced irrigation regimes? Sci Hortic. 247:195–204. doi:10.1016/j.scienta.2018.11.059.
  • Leisner CP. 2020. Review: climate change impacts on food security - focus on perennial cropping systems and nutritional value. Plant Sci. 293:110412. doi:10.1146/annurev.arplant.59.032607.092911.
  • Li D, Wan S, Kang Y, Li X. 2020. Effects of water-salt regulation on tomato growth and quality under drip irrigation with brackish water in coastal saline-alkali soil. J Irrig Drain. Chinese. 39(7):39–50. doi:10.13522/j.cnki.ggps.2019408.
  • Li J, Chen J, Qu Z, Wang S, He P, Zhang N. 2019a. Effects of alternating irrigation with fresh and saline water on the soil salt, soil nutrients, and yield of tomatoes. Water. 11(8):1693. doi:10.3390/w11081693.
  • Li J, Gao Y, Zhang X, Tian P, Li J, Tian Y. 2019b. Comprehensive comparison of different saline water irrigation strategies for tomato production: soil properties, plant growth, fruit yield and fruit quality. Agric Water Manage. 213:521–533. doi:10.1016/j.agwat.2018.11.003.
  • Lu J, Shao G, Cui J, Wang X, Keabetswe L. 2019. Yield, fruit quality and water use efficiency of tomato for processing under regulated deficit irrigation: a meta-analysis. Agric Water Manage. 222:301–312. doi:10.1016/j.agwat.2019.06.008.
  • Lu J, Shao G, Gao Y, Zhang K, Wei Q, Cheng J. 2021. Effects of water deficit combined with soil texture, soil bulk density and tomato variety on tomato fruit quality: a meta-analysis. Agric Water Manage. 243:106427. doi:10.1016/j.agwat.2020.106427.
  • Li Z, Zou B, Xia H, Ding Y, Tan W, Fu S. 2008. Role of low-molecule-weight organic acids and their salts in regulating soil pH. Pedosphere. 18(2):137–148. doi:10.1016/S1002-0160(08)60001-6.
  • Maggio A, De Pascale S, Fagnano M, Barbieri G. 2007. Can salt stress-induced physiological responses protect tomato crops from ozone damages in Mediterranean environments? Eur J Argon. 26(4):454–461.
  • Maksimović I, Putnik-Delić M, Gani I, Marić J, IIin Ž. 2010. Growth, ion composition, and stomatal conductance of peas exposed to salinity. Cent Eur J Biol. 5(5):682–691.
  • Malash NM, Ali FA, Fatahalla MA, Khatab EA, Hatem MK, Tawfic S. 2008. Response of tomato to irrigation with saline water applied by different irrigation methods and water management strategies. Int J Plant Prod. 2(2):101–116.
  • Malash N, Flowers TJ, Ragab R. 2005. Effect of irrigation systems and water management practices using saline and non-saline water on tomato production. Agric Water Manage. 78(1–2):25–38. doi:10.1016/j.agwat.2005.04.016.
  • Mitchell JP, Shennan C, Grattan SR, May DM. 1991. Tomato fruit yields and quality under water deficit and salinity. J Amer Soc Hort Sci. 116(2):215–221. doi:10.21273/JASHS.116.2.215.
  • Mostafazadeh-Fard B, Mansouri H, Mousavi SF, Feizi M. 2009. Effects of different levels of irrigation water salinity and leaching on yield and yield components of wheat in an arid region. J Irrig Drain Eng. 135(1):32–38. doi:10.1061/(ASCE)0733-9437(2009)135:1(32).
  • Munns R, Tester M. 2008. Mechanisms of salinity tolerance. Annu Rev Plant Biol. 59:651–681.
  • Murtaza G, Ghafoor A, Qadir M. 2006. Irrigation and soil management strategies for using saline-sodic water in cotton-wheat rotation. Agric Water Manage. 81(1–2):98–114. doi:10.1016/j.agwat.2005.03.003.
  • Nadian H, Smith SE, Alston AM, Murray RS. 1996. The effect of soil compaction on growth and P uptake by Trifolium subterraneum: interactions with mycorrhizal colonisation. Plant Soil. 182(1):39–49. doi:10.1007/BF00010993.
  • Ni Z, Shi Y, Zhang M. 2017. Effects of salt accumulation on acidification and acid composition in protected soils. Bull soil water conserv. Chinese. 37(6):43–48. doi:10.13961/j.cnki.stbctb.2017.06.007.
  • Noshadi M, Fahandej S, Sepaskhah AR. 2013. Effects of salinity and irrigation water management on soil and tomato in drip irrigation. Int J Plant Prod. 7(2):295–312.
  • Obalum SE, Watanabe Y, Igwe CA, Obi ME, Wakatsuki T. 2013. Improving on the prediction of cation exchange capacity for highly weathered and structurally contrasting tropical soils from their fine-earth fractions. Commun Soil Sci Plant Anal. 44(12):1831–1848. doi:10.1080/00103624.2013.790401.
  • Pasternak D, De Malach Y. 1995. Irrigation with brackish water under desert conditions X. Irrigation management of tomatoes (Lycopersicon esculentum Mills) on desert sand dunes. Agric Water Manage. 28(2):121–132. doi:10.1016/0378-3774(95)01171-E.
  • Pérez-Pérez JG, Robles JM, García-Sánchez F, Botía P. 2016. Comparison of deficit and saline irrigation strategies to confront water restriction in lemon trees grown in semi-arid regions. Agric Water Manage. 164:46–57. doi:10.1016/j.agwat.2015.08.015.
  • Rahil M, Hajjeh H, Qanadillo A. 2013. Effect of saline water application through different irrigation intervals on tomato yield and soil properties. Open J Soil Sci. 3(3):143–147. doi:10.4236/ojss.2013.33016.
  • She D, Sun X, Gamareldawla AHD, Nazar EA, Hu W, Edith K, Yu S. 2018. Benefits of soil biochar amendments to tomato growth under saline water irrigation. Sci Rep. 8(1):14743. doi:10.1038/s41598-018-33040-7.
  • Soil Survey Staff. 2014. Keys to Soil Taxonomy. Washington DC:USDA-Natural Resources Conservation Service.
  • Stanley TD. 2001. Wheat from chaff: meta-analysis as quantitative literature review. J Econ Perspect. 15(3):131–150. doi:10.1257/jep.15.3.131.
  • Suzuki LEAS, Reichert JM, Reinert DJ. 2013. Degree of compactness, soil physical properties and yield of soybean in six soils under no-tillage. Soil Res. 51(4):311–321. doi:10.1071/SR12306.
  • Tian P, Li J, Gao Y. 2018. Effects of brackish water irrigation on tomato yield and fruit sucrose metabolism in sunlight greenhouse. J Zhejiang Univ (Agric & Life Sci). Chinese. 44(6):667–677. doi:10.3785/j.issn.1008-9209.2017.06.211.
  • UN. 2019. World Population Prospects 2019: highlights. [accessed 2022 Oct 28]. https://population.un.org/wpp/.
  • Vrindts E, Mouazen AM, Reyniers M, Maertens K, Maleki MR, Ramon H, De Baerdemaeker J. 2005. Management zones based on correlation between soil compaction, yield and crop data. Biosyst Eng. 92(4):419–428. doi:10.1016/j.biosystemseng.2005.08.010.
  • Wang J, Liu C. 2019. The present situation, problems and countermeasures of the utilization of non-conventional water resources. Chin Water Resour. 17: 21–24. Chinese.
  • Wang Q, Shan Y. 2015. Review of research development on water and soil regulation with brackish water irrigation. Trans Chin Soc Agric Mach. Chinese. 46(12):117–126. doi:10.6041/j.issn.1000-1298.2015.12.017.
  • Wang Y, Tian J, Gao Y, Li J. 2014. Brackish water irrigation of greenhouse tomato in non-cultivated land. J Irrig Drain. Chinese. 33(1):12–16. doi:10.7631/j.issn.1672-3317.2014.01.003.
  • Wan S, Kang Y, Wang D, Liu S. 2008. Effect of saline water on tomato growth and yield by drip irrigation in semi-humid regions of north China. Trans Chin Soc Agric Eng. Chinese. 24(8):30–35. doi:10.3321/j.issn:1002-6819.2008.08.007.
  • Wan S, Kang Y, Wang D, Liu S, Feng L. 2007. Effect of drip irrigation with saline water on tomato (Lycopersicon esculentum Mill) yield and water use in semi-humid area. Agric Water Manage. 90(1–2):63–74. doi:10.1016/j.agwat.2007.02.011.
  • Xu X, Wang J, Wu H, Yuan Q, Wang JH, Cui J, Lin A. 2022. Effects of selenium fertilizer application and tomato varieties on tomato fruit quality: a meta-analysis. Sci Hortic. 304:111242. doi:10.1016/j.scienta.2022.111242.
  • Yuan C, Feng S, Wang J, Huo Z, Ji Q. 2018. Effects of irrigation water salinity on soil salt content distribution, soil physical properties and water use efficiency of maize for seed production in arid Northwest China. Int J Agric Biol Eng. 11(3):137–145.
  • Zhai Y, Yang Q, Hou M. 2015. The effects of saline water drip irrigation on tomato yield, quality, and blossom-end rot incidence – a 3a case study in the south of China. PLoS One. 10(11):e0142204. doi:10.1371/journal.pone.0142204.
  • Zhai Y, Yang Q, Wu Y. 2016. Soil salt distribution and tomato response to saline water irrigation under straw mulching. PLoS One. 11(11):e0165985. doi:10.1371/journal.pone.0165985.
  • Zhang R, Liang X, Jin M, Wan L, Yu Q. 2011. [Fundamentals of Hydrogeology]. Beijing: Geological Publishing House. Chinese.
  • Zhang F, Niu J, Zhang W, Chen X, Li C, Yuan L, Xie J. 2010a. Potassium nutrition of crops under varied regimes of nitrogen supply. Plant Soil. 335(1–2):21–34. doi:10.1007/s11104-010-0323-4.
  • Zhang J, Sun J, Zhang J, Gao Y, Liu H. 2010b. Status and prospect of research on saline water irrigation techniques for cotton. Water Sav Irrig. Chinese. 10:56–63. doi:CNKI:SUN:JSGU.0.2010-10-016.

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