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Research Articles

Nutrient uptake and nutrient use efficiency of Valencia peanut genotypes with different levels of drought tolerance under terminal drought

, , ORCID Icon, , &
Pages 1697-1709 | Received 10 Feb 2023, Accepted 06 Feb 2024, Published online: 03 Apr 2024

References

  • Bonku, R., and J. Yu. 2020. Health aspects of peanuts as an outcome of its chemical composition. Food Science and Human Wellness. Food Science and Human Wellness 9 (1):21–30. doi: 10.1016/j.fshw.2019.12.005.
  • Broekaert, J. A. C. 2002. The development of microplasmas for spectrochemical analysis. Analytical and Bioanalytical Chemistry 374 (2):182–7. doi: 10.1007/s00216-002-1393-9.
  • Carvalho, M. J., N. Vorasoot, N. Puppala, A. Muitia, and S. Jogloy. 2017. Effects of terminal drought on growth, yield and yield components in Valencia peanut genotypes. SABRAO Journal of Breeding and Genetics 49:270–9.
  • Crusciol, C. A. C., J. R. Portugal, J. W. Bossolani, L. G. Moretti, A. M. Fernandes, J. L. N. Garcia, G. L. d B. Garcia, C. Pilon, and H. Cantarella. 2021. Dynamics of macronutrient uptake and removal by modern peanut cultivars. Plants (Basel, Switzerland) 10 (10):2167. doi: 10.3390/plants10102167.
  • Dinh, H. T., W. Kaewpradit, S. Jogloy, N. Vorasoot, and A. Patanothai. 2013. Biological nitrogen fixation of peanut genotypes with different levels of drought tolerance under mid-season drought. SABRAO Journal of Breeding and Genetics 45:491–503.
  • Dinh, H. T., W. Kaewpradit, S. Jogloy, N. Vorasoot, and A. Patanothai. 2014. Nutrient uptake of peanut genotypes with different levels of drought tolerance under midseason drought. Turkish Journal of Agriculture and Forestry 38:495–505. doi: 10.3906/tar-1309-45.
  • Doorenbos, J., and W. O. Pruitt. 1992. Calculation of crop water requirement. In Crop water requirements, 1–65. Italy, Rome: FAO of The United Nation.
  • FAO. 2023. Production quantities and domestic consumptions of peanuts in Thailand from 1994 to 2021. Accessed August 12, 2023. https://www.fao.org/faostat/en/#data/QCL/visualize.
  • Feng, X., F. Chen, W. Liu, M. K. Thu, Z. Zhang, Y. Chen, C. Cheng, Y. Lin, T. Wang, and Z. Lai. 2016. Molecular characterization of MaCCS, a novel copper chaperone gene involved in abiotic and hormonal stress responses in Musa acuminata cv. Tianbaojiao. International Journal of Molecular Sciences 17 (4):441. doi: 10.3390/ijms17040441.
  • Fahad, S., A. A. Bajwa, U. Nazir, S. A. Anjum, A. Farooq, A. Zohaib, S. Sadia, W. Nasim, S. Adkins, S. Saud, et al. 2017. Crop production under drought and heat stress: Plant responses and management options. Frontiers in Plant Science 8:1147. doi: 10.3389/fpls.2017.01147.
  • Freed, R. D., and O. Nissen. 1992. MSTAT-C version 1.42. East Lansing, MI: Michigan State University.
  • Gomez, K. A., and A. A. Gomez. 1984. Statistical procedures for agricultural research. New York: John Wiley and Sons.
  • Gunes, A., N. Cicek, A. Inal, M. Alpaslan, F. Eraslan, E. Guneri, and T. Guzelordu. 2006. Genotypic response of chickpea (Cicer arietinum L.) cultivars to drought stress implemented at pre- and post-anthesis stages and its relations with nutrient uptake and efficiency. Plant, Soil and Environment 52 (8):368–76. doi: 10.17221/3454-PSE.
  • Hampannavar, M. R., and H. Khan. 2019. Association study of morphological and physiological traits with yield in groundnut genotypes under terminal drought condition. International Journal of Current Microbiology and Applied Sciences 8 (01):668–78. doi: 10.20546/ijcmas.2019.801.075.
  • Htoon, W., S. Jogloy, N. Vorasoot, B. Toomsan, W. Kaewpradit, N. Puppala, and A. Patanothai. 2014. Nutrient uptakes and their contributions to yield in peanut genotypes with different levels of terminal drought resistance. Turkish Journal of Agriculture and FORESTRY 38:781–91. doi: 10.3906/tar-1402-26.
  • Janket, A., S. Jogloy, N. Vorasoot, B. Toomsan, W. Kaewpradit, P. Theerakulpisut, C. C. Holbrook, C. K. Kvien, and P. Banterng. 2020. Nutrient uptake and nutrient use efficiency of cassava genotypes with different starch bulking periods as affected by different planting dates. Journal of Plant Nutrition 44 (4):580–99. doi: 10.1080/01904167.2020.1845381.
  • Junjittakarn, J., S. Pimratch, S. Jogloy, W. Htoon, N. Singkham, N. Vorasoot, B. Toomsan, C. C. Holbrook, and A. Patanothai. 2013. Nutrient uptake of peanut genotypes under different water regimes. International Journal of Plant Production 7:677–92. doi: 10.22069/IJPP.2013.1264.
  • Kaewpradit, W., B. Toomsan, G. Cadisch, P. Vityakon, V. Limpinuntana, P. Saenjan, S. Jogloy, and A. Patanothai. 2009. Mixing groundnut residues and rice straw to improve rice yield and N use efficiency. Field Crops Research 110 (2):130–8. doi: 10.1016/j.fcr.2008.07.011.
  • Kramer, P. J., and J. S. Boyer. 1995. Water relations of plants and soils. San Diego: Academic Press.
  • Naabe, R. Y., R. A. Mahama, J. X. Kugbe, and A. Berdjour. 2021. Response of peanut varieties to phosphorus and rhizobium inoculant rates on Haplic Lixisols of Guinea Savanna zone of Ghana. Frontiers in Sustainable Food Systems 5:616033. doi: 10.3389/fsufs.2021.616033.
  • Nigam, S. N., S. Chandra, K. Rupa Sridevi, B. Manohar, A. G. S. Reddy, R. C. Nageswara Rao, G. C. Wright, P. V. Reddy, M. P. Deshmukh, R. K. Mathur, et al. 2005. Efficiency of physiological trait-based and empirical selection approaches for drought tolerance in groundnut. Annals of Applied Biology 146 (4):433–9. doi: 10.1111/j.1744-7348.2005.040076.x.
  • Puangbut, D., S. Jogloy, N. Vorasoot, C. Akkasaeng, T. Kesmala, and A. Patanothai. 2009. Variability in yield responses of peanut (Arachis hypogaea L.) genotypes under early season drought. Asian Journal of Plant Sciences 8 (4):254–64. doi: 10.3923/ajps.2009.254.264.
  • Sathongkaen, W., N. Vorasoot, W. Kaewpradit Polpinit, T. Kesmala, C. K. Kvien, and S. Jogloy. 2020. Biomass, shoot and pod dry weight, and harvest index of Valencia peanut genotypes under terminal drought. Khon Kaen Agriculture Journal 48:907–22. doi: 10.14456/kaj.2020.83.
  • Silva, E. B., E. A. Ferreira, G. A. M. Pereira, D. V. Silva, and A. J. M. Oliveira. 2017. Peanut plant nutrient absorption and growth. Revista Caatinga 30 (3):653–61. doi: 10.1590/1983-21252017v30n313rc.
  • Singh, S., and M. B. Russell. 1981. Water use by maize/pigeonpea intercrop on a deep Vertisol. Proceedings of international workshop on pigeonpeas, vol. 1. 15–19 December 1980. ICRISAT Center Patancheru, Andhra Pradesh, India. 271–82.
  • Tamagno, S., G. R. Balboa, Y. Assefa, P. Kovács, S. N. Casteel, F. Salvagiotti, F. O. García, W. M. Stewart, and I. A. Ciampitti. 2017. Nutrient partitioning and stoichiometry in soybean: A synthesis-analysis. Field Crops Research 200:18–27. doi: 10.1016/j.fcr.2016.09.019.
  • Turner, N. C. 1986. Adaptation to water deficits: A changing perspective. Functional Plant Biology 13 (1):175–90. doi: 10.1071/PP9860175.

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