Characteristics and influencing factors of selenium content in soils and crops in typical high-selenium-content regions of western Hubei Province, China
QIN Hao-Lin1(), LI Ming-Long2,3(), ZHENG De-Shun1, SUN Feng-Bo1, ZHANG Kai3
1. School of Resources and Environment, Henan Polytechnic University, Jiaozuo 454000, China 2. Hubei Key Laboratory of Resource and Eco-Environment Geology (Hubei Geological Bureau), Wuhan 430034, China 3. Second Geological Brigade of Hubei Geological Bureau, Enshi 445000, China
Understanding the distribution patterns of selenium in soils and crops is critical to developing selenium-rich industries. Enshi City in Hubei Province is known for its extensive selenium-rich soils, establishing this city as a promising area for selenium-rich agriculture. This study investigated Xintang Township in Enshi. Based on the organization and analysis of the geochemical data of 2 469 soil samples and 237 crop samples of maize, potatoes, rice, radish, cabbage, and tea, this study offered a systematic summary of the selenium distribution in soils and factors influencing selenium content in crops in the study area. The results indicate that the topsoils exhibit selenium content ranging from 0.14×10-6 to 25.74×10-6, with a background value of 0.81×10-6, which is 3.7 times the national background of selenium content in soils. Selenium-rich soils cover 86.23% of the total area of the study area, and two NEE-directed selenium-rich belts are found. The spatial distribution of selenium in soils is closely related to soil-forming parent materials. Soils with Permian black rock series as parent materials exhibit notably higher selenium content, with an enrichment coefficient of 3.74. In high-selenium-content areas, rice, radish, and cabbage exhibit selenium enrichment rates exceeding 65%. Except for potatoes, crops display positive correlations between their selenium content and the selenium content in their root soils, with tea showing the highest correlation (P<0.01, R=0.84). This suggests a close relationship between the selenium content in crops and their root soils. The crops in cultivated areas with Permian black rock series and Triassic carbonate rock series as soil-forming parent materials exhibit high bioconcentration factors of selenium, with soils and crops with Permian black rock series as soil-forming parent materials presenting the highest average selenium content. This highlights the significant impacts of soil-forming parent materials on crop selenium content.
秦浩林, 李明龙, 郑德顺, 孙风波, 张凯. 鄂西典型高硒区土壤和农作物硒含量特征及其影响因素研究[J]. 物探与化探, 2025, 49(2): 490-499.
QIN Hao-Lin, LI Ming-Long, ZHENG De-Shun, SUN Feng-Bo, ZHANG Kai. Characteristics and influencing factors of selenium content in soils and crops in typical high-selenium-content regions of western Hubei Province, China. Geophysical and Geochemical Exploration, 2025, 49(2): 490-499.
Rayman M P. The Importance of selenium to human health[J]. Clinical Toxicology, 1980, 17(2):171-230.
[2]
中国环境监测总站. 中国土壤元素背景值[M]. 北京: 中国环境科学出版社, 1990.
[2]
China National Environmental Monitoring Centre. Background value of soil elements in China[M]. Beijing: China Environmental Science Press, 1990.
[3]
Yang G, Chen J, Wen Z, et al. The role of selenium in Keshan disease[J]. Advances in Nutritional Research, 1985, 6(1):203-231.
[4]
Ning Y, Hu M, Chen S, et al. Investigation of selenium nutritional status and dietary pattern among children in Kashin-beck disease endemic areas in Shaanxi Province,China using duplicate portion sampling method[J]. Environment International, 2022, 164:107255-107255.
[5]
Yang G, Wang S, Zhou R, et al. Endemic Se intoxication of humans in China[J]. American Journal of Clinical Nutrition, 1983, 37(5):872-881.
pmid: 6846228
He D, Qi S S, Zheng H X, et al. Physiological functions of selenium and selenium-enriched products:A review[J]. Food Research and Development, 2023, 44(1):191-196.
Zhou S Y, Li M, Zhou C N, et al. Flow of selenium in the “soil-crop-food-human” Chain[J]. Food Science, 2023, 44(9):231-244.
doi: 10.7506/spkx1002-6630-20220716-184
[8]
Khanam A, Platel K. Bioaccessibility of selenium,selenomethionine and selenocysteine from foods and influence of heat processing on the same[J]. Food Chemistry, 2016, 194(1):1293-1299.
[9]
Sharma N, Prakash R, Srivastava A, et al. Profile of selenium in soil and crops in seleniferous area of Punjab,India by neutron activation analysis[J]. Journal of Radioanalytical and Nuclear Chemistry, 2009, 281(1):59-62.
Hao L T, Zhang S X, Luo K L. Study on spatial distribution of typical high-selenium soil and content characteristics and main sources of selenium in main crops in Shaanxi Province[J]. Research of Environmental Sciences, 2023, 36(5):1032-1041.
Zhou W H, Li X Z, Li Y C, et al. Geochemical characteristics of selenium in soils and crops andits significance in Yuanzhou District,Guyuan,Ningxia[J]. Geological Review, 2023, 69(2):795-808.
[12]
Jiang C, Zhou W, Yang L, et al. Geochemical relationship and profile distribution of selenium and cadmium in typical selenium-enriched areas in Enshi[J]. Chemosphere, 2023, 338:139423-139423.
[13]
Zhu J, Wang N, Li S, et al. Distribution and transport of selenium in Yutangba,China:Impact of human activities[J]. Science of the Total Environment, 2007, 392(2):252-261.
[14]
Cui L, Zhao J, Chen J, et al. Translocation and transformation of selenium in hyperaccumulator plant Cardamine enshiensis from Enshi,Hubei,China[J]. Plant and Soil, 2018, 425(1/2):577-588.
[15]
Wang M, Li B Q, Li S, et al. Selenium in wheat from farming to food[J]. Journal of Agricultural and Food Chemistry, 2021, 69(51):15458-15467.
doi: 10.1021/acs.jafc.1c04992
pmid: 34907773
Zeng Q L, Yu T, Wang R. The influencing factors of selenium in soils and classifying the selenium-rich soil resources in the typical area of Enshi,Hubei[J]. Geoscience, 2018, 32(1):105-112.
Guo Y. Geochemistry of selenium in Enshi area and experimental study of selenium-enriched crop cultivation[D]. Wuhan: China University of Geosciences (Wuhan), 2012.
Li M L. Geochemical characteristics and ecological effects of Se and heavy metals in supergene environmental media:A case study of Enshi City,Hubei Province[D]. Chengdu: Chengdu University of Technology, 2021.
Ministry of Land and Resources of the People's Republic of China. DZ T 0258—2014 Specification of multi-purpose regional geochemical survey(1:250,000)[S]. 2014.
[20]
中国地质调查局. DD2005-03生态地球化学评价样品分析技术要求(试行)[S]. 2005.
[20]
China Geological Survey. DD2005-03 Technical requirements for sample analysis of ecological geochemical evaluation (Trial)[S]. 2005.
[21]
Zoller W, Duce R. Atmospheric concentrations and sources of trace metals at the south Pole[J]. Science, 1974, 183(4121):198-200.
pmid: 17777264
[22]
Qin H B, Zhu J M, Liang L, et al. The bioavailability of selenium and risk assessment for human selenium poisoning in high-Se areas,China[J]. Environment International, 2013, 52(1):66-74.
Chi F Q, Xu Q, Kuang E J, et al. Distribution of selenium and its influencing factors in soils of Heilongjiang Province,China[J]. Acta Pedologica Sinica, 2016, 53(5):1262-1274.
Zhang H B, Luo Y M, Wu L H, et al. Hong Kong soil reserches II:Distribution and contect of selenium in soils[J]. Acta Pedologica Sinica, 2005, 42(3):404-410.
[25]
侯青叶. 中国土壤地球化学参数[M]. 北京: 地质出版社, 2020.
[25]
Hou Q Y. Soil geochemical parameters in China[M]. Beijing: Geological Publishing House, 2020.
[26]
Gabos M B, Alleoni L R F, Abreu C A. Background levels of selenium in some selected Brazilian tropical soils[J]. Journal of Geochemical Exploration, 2014, 145(1):35-39.
[27]
Fordyce F M. Selenium deficiency and toxicity in the environment[M]. Belin: Springer Netherlands, 2012:375-416.
Tian J A, Zhu W Y, Li R B, et al. New progress in the causal association of Keshan disease with environmental selenium in China[J]. China Jousal of Endemiology, 1991, 10(5):15-20.
[30]
Chang H, Zhu J M, Lin Z Q, et al. Topographic constraints on the distribution of selenium in the supergene environment:A case study at Yutangba,China[J]. Environmental pollution, 2023:121026-121026.
[31]
Gong J J, Yang J Z, Wu H, et al. Distribution of soil selenium and its relationship with parent rocks in Chengmai County,Hainan Island,China[J]. Applied Geochemistry, 2022, 136:105147.
[32]
Liu W H, Wu Y Q, Zhong Y Z, et al. Concentrations,distribution and influencing factors of selenium (Se) in soil of arid and semi-arid climate:A case from Zhangye-Yongchang Region,North-Western China[J]. Journal of Geochemical Exploration, 2023, 250:107239.
Li M L, Xu H, Xu K Y, et al. Discussion on distribution regularity and controlling factors of selenium-rich strata in Enshi,Hubei Province[J]. Resources Environment & Engineering, 2018, 32(4):557-562.
[34]
中华全国供销合作总社. GH/T 1135—2017富硒农产品[S]. 2017.
[34]
All China Federation of Supply and Marketing Cooperatives. GH/T 1135—2017 Se-enriched agricultural products[S]. 2017.
[35]
湖北省卫生健康委员会. DBS42/002—2022富有机硒食品硒含量要求[S]. 2022.
[35]
Health Commission of Hubei Province. DBS42/002—2022 Selenium content requirements of organic selenium rich food[S]. 2022.
[36]
Dinh Q T, Wang M K, Tran T A T, et al. Bioavailability of selenium in soil-plant system and a regulatory approach[J]. Critical Reviews in Environmental Science and Technology, 2019, 49(6):443-517.
Lyu Y Y. The regulation mechanism of selenium bioavailability in typical ecological landscape[D]. Beijing: China University of Geosciences (Beijing), 2016.