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Research Note

Distribution characteristics of selenium and influencing factors in the plant–soil system of an arid oasis

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Received 05 Mar 2024, Accepted 23 Jul 2024, Published online: 02 Aug 2024

References

  • Burkhard, L. P. 2021. Evaluation of published bioconcentration factor (BCF) and bioaccumulation factor (BAF) data for per- and polyfluoroalkyl substances across aquatic species. Environmental Toxicology and Chemistry 40 (6):1530–43. doi: 10.1002/ETC.5010.
  • Bekier, J., E. Jamroz, K. Walenczak-Bekier, and M. Uściła. 2023. Organic matter composition in urban soils: A study of Wrocław agglomeration, SW Poland. Sustainability 15 (3):2277. doi: 10.3390/su15032277.
  • Borgo, L., F. H. S. Rabêlo, M. L. Rossi, F. H. Santos, M. L. G. Nogueira, L. R. F. Alleoni, F. S. Linhares, J. Vangronsveld, and J. Lavres. 2023. Effect of selenium and soil pH on cadmium phytoextraction by Urochloa decumbens grown in Oxisol. Journal of Hazardous Materials 447 (1):130771. doi: 10.1016/J.JHAZMAT.2023.130771.
  • Chen, Y. F., J. L. Zhou, Y. Y. Zeng, S. T. Wang, J. Y. Du, Y. Sun, and S. B. Gu. 2020. Spatial distribution of soil arsenic and arsenic enrichment characteristics of crops in the oasis area at the southeastern margin of the Tarim Basin. Huan Jing ke Xue 41 (1):438–48. doi: 10.13227/j.hjkx.201907016.
  • Cheng, X. M., R. R. Ma, M. Peng, K. Yang, K. Li, H. Y. Wang, C. Wu, and Z. Yang. 2019. Characterization of selenium content in bulk crops and rhizosphere soils in China and proposal of selenium-enriched soil standards. Physical and Chemical Exploration 43 (4):1367–72. doi: 10.11720/wtyht.2019.0187.
  • Cardoso, B. R., C. Cominetti, and L. A. Seale. 2021. Editorial: Selenium, human health and chronic disease. Frontiers in Nutrition 8 (1):827759. doi: 10.3389/FNUT.2021.827759.
  • Fu, Z. B., N. J. He, Z. Y. Bao, H. Tian, M. Ma, and G. G. Chen. 2019. Analysis of factors affecting selenium content in rice-root soil system in Gannan. Geoscience and Technology Intelligence 38 (5):220–9. doi: 10.19509/j.cnki.dzkq.2019.0523.
  • Feng, Z. W., H. Sun, Y. Q. Qin, Y. Zhou, H. H. Zhu, and Q. Yao. 2023. A synthetic community of siderophore-producing bacteria increases soil selenium bioavailability and plant uptake through regulation of the soil microbiome. The Science of the Total Environment 871 (8):162076. doi: 10.1016/J.SCITOTENV.2023.162076.
  • Hao, L. T., J. D. Zhang, S. X. Zhang, S. M. Ma, B. Li, J. Long, J. S. Fan, and K. L. Luo. 2020. Distribution characteristics and main influencing factors of selenium in surface soil of natural selenium-rich area: A case study in Langao County, China. Environmental Geochemistry and Health 43 (1):333–46. doi: 10.1007/s10653-020-00711-2.
  • Gao, Y., C. Hu, C. L. Zhang, and S. X. Cha. 2022. Discussion on the distribution of selenium-enriched soil and selenium enrichment and migration law in Shitai area of Anhui Province. Northwest Geology 55 (2):284–91. doi: 10.19751/j.cnki.61-1149/p.2022.02.025.
  • Hu, Z. Y., F. Q. Li, Y. S. Zhang, L. Y. Zhou, L. Guo, Y. C. Duan, Q. H. Deng, X. W. Y. Wang, Y. Zhao, and Q. Chen. 2022. Soil Se characteristics and the possible influencing factors in Lanshan District of Linyi, Shandong, China. Water, Air, & Soil Pollution 233 (7):1–14. doi: 10.1007/s11270-022-05704-8.
  • Li, J., X. Y. Wang, L. Wang, Y. W. Hu, and Z. H. Tang. 2024. Geochemical characteristics, source analysis, influencing factors, and reserves of soil Selenium in Wuming, Guangxi, China. Environmental Geochemistry and Health 46 (7):215. doi: 10.1007/S10653-024-01999-0.
  • Li, X. M., and Y. G. Shu. 2023. Soil nutrient variation and ecological stoichiometry characteristics under different land use types. Chinese Journal of Agronomy 39 (28):62–9. doi: 10.11924/j.issn.1000-6850.casb2022-0827.
  • Li, A., X. Qiao, H. Ji, and R. Ren. 2020. Investigation report on the effects of selenium on human health in Guanzhong area. IOP Conference Series: Earth and Environmental Science 514 (5):052029. doi: 10.1088/1755-1315/514/5/052029.
  • Liu, S., Z. C. Guo, M. Halder, H. X. Zhang, J. Six, and X. H. Peng. 2021. Impacts of residue quality and soil texture on soil aggregation pathways by using rare earth oxides as tracers. Geoderma 399 (1):115114. doi: 10.1016/j.geoderma.2021.115114.
  • Liu, Y., B. Jiang, H. R. Zhang, Z. B. Sun, and S. T. Wang. 2022. Geochemical characterization of selenium in surface soil of Qingzhou City, Shandong Province. Modern Geology 36 (6):933–40. doi: 10.19657/j.geoscience.1000-8527.2022.03.13.
  • Liang, Y., H. Y. Zhou, Y. Liu, W. L. Tang, H. Zhong, and P. Lei. 2022. Effects of exogenous sulfur inputs on soil selenium loss from paddy fields. Environmental Chemistry 41 (1):1–8. doi: 10.7524/j.issn.0254-6108.2020090702.
  • Lutz, S. 2016. Dietary selenium and human health. Nutrients 9 (1):22. doi: 10.3390/nu9010022.
  • Meng, L., T. L. Zhao, Q. He, X. H. Yang, A. B. Y. M. Baimaiti, F. Yang, C. L. Zhou, W. Huo, M. Z. Wang, H. L. Pan, et al. 2022. Climatic characteristics of dusty weather and persistent dust stagnation in the Tarim Basin in the last 30 years. Journal of Meteorology 80 (2):322–33. doi: 10.11676/qxxb2022.022.
  • MLRP. 2016a. Specification for geochemical evaluation of land quality. Beijing, China: Ministry of Land and Resources of the People’s Republic of China.
  • MLRP. 2016b. Methods for analyzing regional geochemical samples. Beijing, China: Ministry of Land and Resources of the People’s Republic of China.
  • MOHURD. 2019. Standard for geotechnical test methods. Beijing, China: Ministry of Housing and Urban-Rural Development of the People’s Republic of China.
  • Mu, Y. G., Q. X. Chen, L. B. Li, C. L. Tu, and X. H. Lu. 2022. Spatial variability of surface soil selenium and its influencing factors in Huaxi District, Guiyang City. Journal of Environmental Science 42 (08):415–24. doi: 10.13671/J.Hjkxxb.2021.0570.
  • NRCG. 2013. Rock mineral analysis. 4th ed. Beijing, China: National Research Center for Geoanalysis of China.
  • Preda, C., I. Vasiliu, O. Bredetean, C. D. Gabriela, M. C. Ungureanu, E. L. Leustean, A. Grigorovici, C. Oprisa, and C. Vulpoi. 2015. Selenium in the environment: Essential or toxic to human health? Environmental Engineering and Management Journal 15 (4):913–21. doi: 10.30638/eemj.2016.099.
  • Pajuk, G. J., J. M. Hao, N. Wang, Y. Y. Shi, J. Y. Zhang, and T. S. Ayi. 2021. Transformation of land use and its ecological and environmental effects based on the function of “three living things” – A case study of Yuli County. Arid Zone Geography 44 (6):1612–22. doi: 10.1103/org20210915.1511.002.
  • Preda, C., I. Vasiliu, L. Mihalache, I. Armasu, I. L. Serban, D. N. Serban, B. Stoica, D. G. Ciobanu, O. Bredetean, S. A. Strungaru, et al. 2017. Selenium-essential antioxidant element. The example of autoimune thyroiditis. Revista de Chimie 68 (7):1617–21. doi: 10.37358/RC.17.7.5729.
  • Pankaj, P., P. Sharmistha, V. Sudhir, L. Nancy, R. V. Med, V. K. Bhatt, and N. K. Sharma. 2021. Long-term impact of forest-based land uses on soil quality indicators in Himalayan Region. Agricultural Research 11 (2):204–14. doi: 10.1007/s40003-021-00556-w.
  • Shang, J. M., W. Luo, G. H. Wu, L. Xu, J. J. Gao, P. R. Kong, X. Bi, and Z. G. Cheng. 2015. Distribution and influencing factors of soil selenium (Se) in different land use types in Yanghe River Basin. Environmental Science 36 (1):301–8. doi: 10.13227/j.hjkx.2015.01.040.
  • Sun, Y. K., and B. Q. Zhai. 2022. Analysis of evolutionary characteristics of urban historic landscape in ancient southern border region. Chinese Garden 38 (4):80–5. doi: 10.19775/j.cla.2022.04.0080.
  • Song, T. J., G. Cui, X. S. Su, J. He, S. Z. Tong, and Y. Liu. 2020. The origin of soil selenium in a typical agricultural area in Hamatong River Basin, Sanjiang Plain, China. Catena 185 (1):104355. doi: 10.1016/j.catena.2019.104355.
  • Su, Y. Z., X. Yang, and R. Yang. 2014. Effects of soil texture on soil nitrogen accumulation and groundwater nitrogen pollution in the desert-oasis unsaturated zone on the edge of the middle reaches of the Heihe River. Environmental Science 35 (10):3683–91. doi: 10.13227/j.hjkx.2014.10.007.
  • Tolu, J., S. Bouchet, J. Helfenstein, O. Hausheer, S. Chékifi, E. Frossard, F. Tamburini, O. A. Chadwick, and L. H. E. Winkel. 2022. Understanding soil selenium accumulation and bioavailability through size resolved and elemental characterization of soil extracts. Nature Communications 13 (1):6974. doi: 10.1038/S41467-022-34731-6.
  • Tufa, T. 2019. Role of integrated nutrient management on nutrient uptake, soil physicochemical properties and maize yield improvement: Review. Journal of Biology, Agriculture and Healthcare 9 (17):14–21. doi: 10.7176/JBAH.
  • Wang, Q. Y., J. B. Zhang, B. Z. Zhao, X. L. Xin, X. H. Deng, and H. L. Zhang. 2016. Influence of long-term fertilization on selenium accumulation in soil and uptake by crops. Pedosphere 26 (1):120–9. doi: 10.1016/S1002-0160(15)60028-5.
  • Wang, X. Q., Q. Q. Liu, H. L. Liu, Q. H. Hu, H. Wu, and W. Wang. 2021. Key elements and life health: Is Chinese cropland selenium deficient? Geological Frontiers 28 (3):412–23. doi: 10.13745/j.esf.sf.2021.1.13.
  • Yang, H. L., B. Yao, Y. Z. Su, and Y. L. Li. 2024. Distribution pattern of soil physical and chemical properties of plantation in northern agro-pastoral ecotone. China Desert 44 (02):283–94. doi: 10.7522/j.issn.1000-694X.2024.00023.
  • Zhang, Y. X., X. Y. Sun, L. Zhang, and S. Y. Li. 2013. Stable carbon isotope characterization of soil organic matter in different types of grassland soils in Northwest China. Soil Bulletin 44 (2):348–54. doi: 10.19336/j.cnki.trtb.2013.02.015.
  • Zhang, L., N. M. Zhang, Y. J. Zhang, H. Deng, and H. Y. Yang. 2021. Study on spatial distribution of soil selenium content and its influencing factors in arable land in Yunnan. Soil 53 (3):578–84. doi: 10.13758/j.cnki.tr.2021.03.018.
  • Zhang, H. Y., A. R. Zhang, Q. B. Lu, X. A. Zhang, Z. J. Zhang, X. G. Guan, T. L. Che, Y. Yang, H. Li, W. Liu, et al. 2021. Association between fatality rate of COVID-19 and selenium deficiency in China. BMC Infectious Diseases 21 (1):452. doi: 10.1186/S12879-021-06167-8.
  • Zhang, L. T., Z. J. Wang, Y. C. Liu, X. Wang, X. Y. Xie, and L. Zhang. 2023. Distribution pattern and influencing factors of soil selenium in Northern Hebei Province, China. Geochemistry International 61 (7):750–67. doi: 10.1134/S0016702923070066.
  • Zhong, Q. X., Y. Zhang, Z. Tao, Y. C. He, D. Wu, and P. S. Lin. 2023. Progress in the study of selenium transport and transformation mechanisms in soil-plant systems. Progress in Earth Science 38 (1):44–56. doi: 10.11867/j.issn.1001-8166.2022.090.
  • Zhou, H., and W. Li. 2013. The effects of oasis ecosystem hydrological processes on soil salinization in the lower reaches of the Tarim River, China. Ecohydrology 6 (6):1009–20. doi: 10.1002/eco.1415.

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