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Research Article

Mycorrhizae enhance minituber weight and nutrient content in potatoes transferred from in vitro to hydroponic culture under different phosphorus levels

, ORCID Icon, , &
Received 25 Jan 2023, Accepted 27 Feb 2024, Published online: 30 Apr 2024

References

  • Adavi, Z., and M. R. Tadayoun. 2014. Effect of mycorrhiza application on plant growth and yield in potato production under field conditions. Iranian Journal of Plant Physiology 4 (3):1087–93.
  • Alloway, B. J. 2008. Zinc in soils and crop nutrition. 2nd ed., 139. Brussels, Belgium and Paris, France: IZA and IFA.
  • Barben, S. B., B. G. Hopkins, V. D. Jolley, B. L. Webb, and B. A. Nichols. 2010a. Phosphorus and zinc interactions in chelator-buffered solution grown Russet Burbank potato. Journal of Plant Nutrition 33 (4):587–601. doi: 10.1080/01904160903506308.
  • Barben, S. T., B. G. Hopkins, V. D. Jolley, B. L. Webb, and B. A. Nichols. 2010b. Phosphorus and manganese interactions and their relationships with zinc in chelator-buffered solution grown russet Burbank potato. Journal of Plant Nutrition 33 (5):752–69. doi: 10.1080/01904160903575964.
  • Biermann, B., and R. G. Linderman. 1981. Quantifying vesicular-arbuscular mycorrhizae: A proposed method towards standardization. New Phytologist 87 (1):63–7. doi: 10.1111/j.1469-8137.1981.tb01690.x.
  • Caris, C., W. Hördt, H.-J. Hawkins, V. Römheld, and E. George. 1998. Studies of iron transport by arbuscular mycorrhizal hyphae from soil to peanut and sorghum plants. Mycorrhiza 8 (1):35–9. doi: 10.1007/s005720050208.
  • Chapman, H. D., and P. F. Pratt. 1962. Methods of analysis for soils, plants and waters. Soil Science 93 (1):68.
  • Chifetete, V. W., and JF. Dames. 2020. Mycorrhizal interventions for sustainable potato production in Africa. Frontiers in Sustainable Food Systems 4:593053. doi: 10.3389/fsufs.2020.593053.
  • Coccina, A., Cavagnaro, T. R. Pellegrino, E. Ercoli, L. McLaughlin, M. J. Watts-Williams, and J. Stephanie. 2019. The mycorrhizal pathway of zinc uptake contributes to zinc accumulation in barley and wheat grain. BMC Plant Biology 19 (1):133. doi: 10.1186/s12870-019-1741-y.
  • Cochran, W. G., and G. M. Cox. 1948. Experimental designs. North Carolina State University. Dept. of Statistics.
  • Degryse, F., R. Baird, and M. J. McLaughlin. 2015. Diffusion and solubility control of fertilizer-applied zinc: Chemical assessment and visualization. Plant and Soil 386 (1–2):195–204. doi: 10.1007/s11104-014-2266-7.
  • Ekelof, J. 2014. Phosphorus application strategies in potato. Ph. D Thesis. Department of Biosystems and Technology, Swedish University of Agricultural Science.
  • Ewing, E. E. 1997. Potato. In Wien, H.C., ed. The physiology of vegetable crop, 295–344. Wallingford, UK: CAB International.
  • FAO, IFAD, UNICEF, WFP and WHO. 2019. The State of Food Security and Nutrition in the World 2019. In Safeguarding Against Economic Slowdowns and Downturns. Rome: FAO.
  • FAO. 2018. FAOSTAT. In: FAOSTAT Stat. Databases. http://www.fao.org/faostat/en/#data/QC
  • FAO. 2021. FAOSTAT. In: FAOSTAT Stat. Databases. https://www.fao.org/faostat/en/#data/QCL
  • Gallou, A., H. P. Lucero Mosquera, S. Cranenbrouck, J. P. Suárez, and S. Declerck. 2011. Mycorrhiza induced resistance in potato plantlets challenged by Phytophthora infestans. Physiological and Molecular Plant Pathology 76 (1):20–6. doi: 10.1016/j.pmpp.2011.06.005.
  • Genre, A., and P. Bonfante. 2010. The making of symbiotic arbuscular mycorrhizal roots. In Arbuscular Mycorrhizas: Physiology and Function, edited by H. Koltai and Y. Kapulnik. Dordrecht: Springer. doi: 10.1007/978-90-481-9489-6_3.
  • Ghobadi, M., M. Movahhedi Dehnavi, A. R. Yadavi, K. Parvizi, and D. Zafari. 2020. Reduced P fertilization improves Fe and Zn uptake in potato when inoculated with AMF in P, Fe and Zn deficient soil. Rhizosphere 15:100239. doi: 10.1016/j.rhisph.2020.100239.
  • Gholamhoseini, M., A. Ghalavand, A. Dolatabadian, E. Jamshidi, and A. Khodaei-Joghan. 2013. Effects of arbuscular mycorrhizal inoculation on growth, yield, nutrient uptake and irrigation water productivity of sunflowers grown under drought stress. Agricultural Water Management 117:106–14. doi: 10.1016/j.agwat.2012.11.007.
  • Heidari, M., and V. Karami. 2014. Effects of different mycorrhiza species on grain yield, nutrient uptake and oil content of sunflower under water stress. Journal of the Saudi Society of Agricultural Sciences 13 (1):9–13. doi: 10.1016/j.jssas.2012.12.002.
  • Hoagland, D. R., and D. I. Arnon. 1950. The water culture method for growing plants without soil. Circular (California Agricultural Experiment Station) 347 (2nd edit).
  • Hoffland, E., C. Wei, and M. Wissuwa. 2006. Organic anion exudation by lowland rice (Oryza sativa L.) at zinc and phosphorus deficiency. Plant and Soil 283 (1–2):155–62. doi: 10.1007/s11104-005-3937-1.
  • Izsáki, Z. 2014. Effect of phosphorus supplies on the nutritional status of maize (Zea mays L.). Communications in Soil Science and Plant Analysis 45 (4):516–29. doi: 10.1080/00103624.2013.863910.
  • Koenig, R., and C. Johnson. 1942. Colorimetric determination of phosphorus in biological materials. Industrial & Engineering Chemistry Analytical Edition 14 (2):155–6. doi: 10.1021/i560102a026.
  • Lekamge, D., T. Sasahara, S. I. Yamamoto, M. Hatamoto, T. Yamaguchi, and S. Maki. 2021. Effect of enhanced CaCl2, MgSO4, and KH2PO4 on improved in vitro growth of potato. Plant Biotechnology (Tokyo, Japan) 38 (4):401–8. doi: 10.5511/plantbiotechnology.21.0830a.
  • Liu, C., S. Ravnskov, F. Liu, G. H. Rubæk, and M. N. Andersen. 2018. Arbuscular mycorrhizal fungi alleviate abiotic stresses in potato plants caused by low phosphorus and deficit irrigation/partial rootzone drying. Journal of Agricultural Science 156 (1):46–58. doi: 10.1017/S0021859618000023.
  • Lodwing-Muller, J. 2010. Hormonal responses in host plants triggered by arbuscular mycorrhizal fungi. In Arbuscular Mycorrhizas: Physiology and Function, edited by H. Koltai and Y. Kapulnik. Dordrecht: Springer. doi: 10.1007/978-90-481-9489-6_8.
  • Lombardo, S., A. Scavo, C. Abbate, G. Pandino, B. Parisi, and G. Mauromicale. 2021. Mycorrhizal inoculation improves mineral content of organic potatoes grown under calcareous soil. Agriculture 11 (4):333. doi: 10.3390/agriculture11040333.
  • Lone, R., A. Alaklabi, J. A. K. Malik, and K. Koul. 2020. Mycorrhizal influence on storage metabolites and mineral nutrition in seed propagated potato (Solanum tuberosum L.) plant. Journal of Plant Nutrition 43 (14):2164–75. doi: 10.1080/01904167.2020.1766075.
  • McArthur, D. A. J, and N. R. Knowles. 1993. Influence of vesicular-arbuscular mycorrhizal fungi on the response of potato to phosphorus deficiency. Plant Physiology 101 (1):147–60. doi: 10.1104/pp.101.1.147.
  • Murashige, T., and F. Skoog. 1962. A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiologia Plantarum 15 (3):473–97. doi: 10.1111/j.1399-3054.1962.tb08052.x.
  • Neumann, E., and E. George. 2010. Nutrient uptake: The arbuscular mycorrhiza fungal symbiosis as a plant nutrient acquisition strategy. In Arbuscular Mycorrhizas: Physiology and Function, edited by H. Koltai and Y. Kapulnik. Dordrecht: Springer. doi: 10.1007/978-90-481-9489-6_7.
  • Nurbaity, A., E. T. Sofyan, and J. S. Hamdani. 2016. Application of Glomus ssp. and Pseudomonas iminuta reduce the use of chemical fertilizers in production of potato grown on different soil types. 2nd International Conference on Agricultural and Biological Sciences.
  • Ova, E. A., U. B. Kutman, L. Ozturk, and I. Cakmak. 2015. High phosphorus supply reduced zinc content of wheat in native soil but not in autoclaved soil or nutrient solution. Plant and Soil 389 (1):1–16.
  • Parvizi, K., Y. Parvizi, and A. Navaei. 2017. Effect of arbuscular mycorrhizal (AM) fungus (Rhizophagus irregularis) inoculation in different levels of water deficit on minituber production in potato. Plant Production (Scientific Journal of Agriculture) 40 (3):15–27.
  • Phillips, J. M., and D. S. Hayman. 1970. Improved procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British Mycological Society 55 (1):158–IN18. doi: 10.1016/S0007-1536(70)80110-3.
  • Pittman, Y. K. 2005. Research review: Managing the manganese: Molecular mechanisms of manganese transport and homeostasis. The New Phytologist 167 (3):733–42. doi: 10.1111/j.1469-8137.2005.01453.x.
  • Sarikhani, M. R., and N. Aliasgharzad. 2012. Comparative effects of two arbuscular mycorrhizal fungi and K fertilizer on tuber starch and potassium uptake by potato (Solanum tuberosum L.). International Journal of Agriculture: Research and Review 2 (3):125–34.
  • Soratto, R., P. C. Pilon, A. M. Fernandes, and L. A. Moreno. 2015. Phosphorus uptake, use efficiency, and response of potato cultivars to phosphorus levels. Potato Research 58 (2):121–34. doi: 10.1007/s11540-015-9290-8.
  • Statistical Analysis System Institute. 1999. SAS/STAT user’s guide (Vol. 3). SAS Publ.
  • Struik, P. C., and S. G. Wiersema. 1999. Seed potato technology. Wageningen: Wageningen Press.
  • Watts-Williams, S. J., F. A. Smith, M. J. McLaughlin, A. F. Patti, and T. R. Cavagnaro. 2015. How important is the mycorrhizal pathway for plant Zn uptake. Plant and Soil 390 (1–2):157–66. doi: 10.1007/s11104-014-2374-4.
  • Yang, Q., S. Ravnskov, and M. N. Andersen. 2020. Nutrient uptake and growth of potato Arbuscular mycorrhiza symbiosis interacts with quality and quantity of amended biochars. Journal of Plant Nutrition and Soil Science 183 (2):220–32. doi: 10.1002/jpln.201900205.
  • Yang, X. W., X. H. Tian, X. C. Lu, Y. S. Cao, and Z. H. Chen. 2011. Impacts of phosphorus and zinc levels on phosphorus and zinc nutrition and phytic acid content in wheat (Triticum aestivum L. Journal of the Science of Food and Agriculture 91 (13):2322–8. doi: 10.1002/jsfa.4459.
  • Zhang, Y. Q., Y. Deng, R. Y. Chen, Z. I. Cui, X. P. Chen, R. Yost, F. S. Zhang, and C. Q. Zou. 2012. The reduction in zinc content of wheat grain upon increased phosphorus-fertilization and its mitigation by foliar zinc application. Plant and Soil 361 (1–2):143–52. doi: 10.1007/s11104-012-1238-z.
  • Zhang, W., D. Liu, Y. Liu, Z. Cui, X. Chen, and C. Zou. 2016. Zinc uptake and accumulation in winter wheat relative to changes in root morphology and mycorrhizal colonization following varying phosphorus application on calcareous soil. Field Crops Research 197:74–82. doi: 10.1016/j.fcr.2016.08.010.

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