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Research Article

Fiber Quality of Colored Cotton As a Function of Potassium Fertilization in the Semi-Arid Region

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References

  • Allen, R. G., L. S. Pereira, D. Raes, and M. Smith. 1998. Crop Evapotranspiration: Guidelines for Computing Crop Water Requirements. Rome: FAO.
  • Almeida, D. M., M. M. Oliveira, and N. J. Saibo. 2017. “Regulation of Na+ and K+ Homeostasis in Plants: Towards Improved Salt Stress Tolerance in Crop Plants.” Genetics and Molecular Biology 40 (1): 326–11. https://doi.org/10.1590/1678-4685-GMB-2016-0106.
  • Alvares, C. A., J. L. Stape, P. C. Sentelhas, G. Moraes, J. Leonardo, and G. Sparovek. 2013. “Köppen’s Climate Classification Map for Brazil.” Meteorologische Zeitschrift 22 (6): 711–728. https://doi.org/10.1127/0941-2948/2013/0507.
  • Araújo, L. F., C. H. C. Bertini, E. Bleicher, F. C. Vidal Neto, and W. S. Almeida. 2013. “Características fenológicas, agronômicas e tecnológicas da fibra em diferentes cultivares de algodoeiro herbáceo.” Revista Brasileira de Ciências Agrárias - Brazilian Journal of Agricultural Sciences 8 (3): 448–453. https://doi.org/10.5039/agraria.v8i3a2732.
  • Araújo, A. F. B., E. S. Cavalcante, C. F. Lacerda, F. A. Albuquerque, J. R. Silva Sales, F. B. Lopes, J. F. Silva Ferreira, et al. 2022. “Fiber Quality, Yield, and Profitability of Cotton in Response to Supplemental Irrigation with Treated Wastewater and NPK Fertilization.” Agronomy 12 (10): 2527. https://doi.org/10.3390/agronomy12102527.
  • Bachelier, B., and J. Gourlot. 2018. “A fibra do algodão.” In Manual da qualidade de fibra, edited by J. Belot, 29–153. Cuiabá: IMAmt.
  • Carvalho, L. P., F. P. Andrade, and J. L. Silva Filho. 2011. “Cultivares de algodão colorido no Brasil.” Revista Brasileira de Oleaginosas e Fibrosas 15 (1): 37–44.
  • Chen, M., T. T. Zhang, L. He, K. Wang, and Y. Chen. 2021. “Qualitative Analysis of Cotton Fiber Pigment Composition.” Textile Research Journal 91 (3–4): 456–463. https://doi.org/10.1177/0040517520932234.
  • Darawsheh, M. K., D. Beslemes, V. Kouneli, E. Tigka, D. Bilalis, I. Roussis, and I. Kakabouki. 2022. “Environmental and Regional Effects on Fiber Quality of Cotton Cultivated in Greece.” Agronomy 12 (4): 943. https://doi.org/10.3390/agronomy12040943.
  • Ferreira, D. F. 2019. “Sisvar: A Computer Analysis System to Fixed Effects Split Plot Type Designs.” Revista Brasileira de Biometria 37 (4): 529–535. https://doi.org/10.28951/rbb.v37i4.450.
  • Galdi, L. V., C. F. S. Cordeiro, B. Senna, B. D. E Silva, E. J. R. La Torre, and F. R. Echer. 2022. “Interactive Effects of Increased Plant Density, Cultivars and N Rates in Environments with Different Cotton Yield Recovery Potential.” Industrial Crops and Products 176:114394. https://doi.org/10.1016/j.indcrop.2021.114394.
  • Gomes, R. V., and J. L. B. Coutinho. 2008. “Algodão herbáceo/Algodão herbáceo irrigado.” In Recomendações de adubação para o Estado de Pernambuco: 2ª aproximação, edited by C. F. J. A. Cavalcanti, 114–115. 3nd ed. Recife: IPA.
  • Gonçalo-Filho, F., M. Ferreira-Neto, C. S. Fernandes, N. S. Dias, J. S. Holanda, A. P. Barros-Júnior, J. F. Medeiros, and F. V. S. Sá. 2023. “Domestic Sewage Effluent Increases Plant Growth, Yield, and Fiber Quality of Cotton Cv. BRS 335.” Journal of Natural Fibers 20 (1): 1–12. https://doi.org/10.1080/15440478.2022.2146914.
  • Guo, K., L. Tu, Y. He, J. Deng, M. Wang, H. Huang, Z. Li, and X. Zhang. 2017. “Interaction Between Calcium and Potassium Modulates Elongation Rate in Cotton Fiber Cells.” Journal of Experimental Botany 68 (18): 5161–5175. https://doi.org/10.1093/jxb/erx346.
  • Li, X., Y. Lei, Y. Han, Z. Wang, G. Wang, L. Feng, W. Du, et al. 2021. “The Relative Impacts of Changes in Plant Density and Weather on Cotton Yield Variability.” Field Crops Research 270:108202. https://doi.org/10.1016/j.fcr.2021.108202.
  • Mitra, A., and A. Majumdar. 2023. “Determination of Quality Value of Cotton Fiber Using Integrated Best-Worst Method-Revised Analytic Hierarchy Process.” Journal of Natural Fibers 20 (2): 1–14. https://doi.org/10.1080/15440478.2023.2210324.
  • Nawaz, S., T. Ahmad Malik, F. Ahmad, and H. M. Imran. 2019. “Correlation of Some Morphological Traits in Upland Cotton (G. Hirsutum L.).” International Journal of Scientific & Research Publications (IJSRP) 9 (3): 144–147. https://doi.org/10.29322/IJSRP.9.03.2019.p8725.
  • Pedroso Neto, J. C., J. Fallieri, N. M. Silva, and J. B. Laca. 1999. “Algodão.” In Recomendações para o uso de corretivos e fertilizantes em Minas Gerais - 5ª aproximação, edited by A. C. Ribeiro, P. T. G. Guimarães, and V. V. H. Alvarez, 278–279. Viçosa: Comissão de Fertilidade do solo do estado de Minas Gerais.
  • Rêgo, L. G. S., C. M. Martins, E. F. Silva, J. J. Silva, and R. N. S. Lima. 2016. “Pedogenesis and Soil Classification of an Experimental Farm in Mossoró, State of Rio Grande Do Norte, Brazil.” Revista Caatinga 29 (4): 1036–1042. https://doi.org/10.1590/1983-21252016v29n430rc.
  • Santos, M. G., G. L. Santos, L. R. F. C. Bezerra, A. P. Barros Júnior, L. M. Silveira, F. L. Tartaglia, H. A. Lins, et al. 2023. “Yield and Quality of Naturally Colored Cotton Fiber Fertilized with Phosphorus Rates in the Brazilian Semiarid.” Journal of Natural Fibers 20 (2): 1–14. https://doi.org/10.1080/15440478.2023.2214385.
  • Soares, L. A. A., P. D. Fernandes, G. S. Lima, S. S. Silva, R. C. L. Moreira, and T. L. F. Medeiros. 2021. “Phytomass and Production Components of Colored Cotton Under Salt Stress in Different Phenological Stages.” Revista Brasileira de Engenharia Agrícola e Ambiental 25 (2): 132–138. https://doi.org/10.1590/1807-1929/agriambi.v25n2p132-138.
  • Soares, L. A. A., P. D. Fernandes, G. S. Lima, J. F. Suassuna, M. E. Brito, and F. V. S. Sá. 2018. “Growth and Fiber Quality of Colored Cotton Under Salinity Management Strategies.” Revista Brasileira de Engenharia Agrícola e Ambiental 22 (5): 332–337. https://doi.org/10.1590/1807-1929/agriambi.v22n5p332-337.
  • Tariq, M., M. N. Afzal, D. Muhammad, S. Ahmad, A. N. Shahzad, A. Kiran, and A. Wakeel. 2018. “Relationship of Tissue Potassium Content with Yield and Fiber Quality Components of Bt Cotton as Influenced by Potassium Application Methods.” Field Crops Research 229:37–43. https://doi.org/10.1016/j.fcr.2018.09.012.
  • Veloso, L. L. S. A., C. A. V. Azevedo, R. G. Nobre, G. S. Lima, J. R. C. Bezerra, A. A. R. Silva, R. T. Fátima, et al. 2023. “Production and Fiber Characteristics of Colored Cotton Cultivares Under Salt Stress and H2O2.” Plants 12 (11): 2090. https://doi.org/10.3390/plants12112090.
  • Yang, J. S., W. Hu, W. Zhao, Y. Meng, B. Chen, Y. Wang, and Z. Zhou. 2016. “Soil Potassium Deficiency Reduces Cotton Fiber Strength by Accelerating and Shortening Fiber Development.” Scientific Reports 6 (1): 28856. https://doi.org/10.1038/srep28856.
  • Yu, K., F. Ju, Z. Wang, L. Sun, Y. Huo, J. Zhu, J. Pang, et al. 2022. “Potassium Ameliorates Cotton (Gossypium Hirsutum L.) Fiber Length by Regulating Osmotic and K+/Na+ Homeostasis Under Salt Stress.” Physiologia plantarum 175 (1): e13842. https://doi.org/10.1111/ppl.13842.
  • Zhang, S., Y. Han, G. Wang, L. Feng, Y. Lei, Z. Wang, S. Xiong, et al. 2023. “Long-Term Assessments of Cotton Fiber Quality in Response to Plant Population Density: Reconciling Fiber Quality and Its Temporal Stability.” Industrial Crops and Products 198:1–9. https://doi.org/10.1016/j.indcrop.2023.116741.
  • Zhao, W., H. Dong, R. Zahoor, Z. Zhou, J. L. Snider, Y. Chenc, K. H. M. Siddiquec, and Y. Wang. 2019. “Ameliorative Effects of Potassium on Drought-Induced Decreases in Fiber Length of Cotton (Gossypium Hirsutum L.) Are Associated with Osmolyte Dynamics During Fiber Development.” Crop Journal 7 (5): 619–634. https://doi.org/10.1016/j.cj.2019.03.008.