[1] |
HUSSAIN S, HABIB M, AHMED Z, et al. Genotyping-by-sequencing based molecular genetic diversity of Pakistani bread wheat (Triticum aestivum L.) accessions[J]. Frontiers in Genetics, 2022, 13: 772517.
|
[2] |
ZHANG X Y, GENG L P, GAO P P, et al. Bioimaging of Pb by LA-ICP-MS and Pb isotopic compositions reveal distributions and origins of Pb in wheat grain[J]. Science of the Total Environment, 2022, 802: 149729. doi: 10.1016/j.scitotenv.2021.149729
|
[3] |
CHEN H Y, TENG Y G, LU S J, et al. Contamination features and health risk of soil heavy metals in China[J]. Science of the Total Environment, 2015, 512/513: 143-153. doi: 10.1016/j.scitotenv.2015.01.025
|
[4] |
JOSEPH T, DUBEY B, McBEAN E A. Human health risk assessment from arsenic exposures in Bangladesh[J]. Science of the Total Environment, 2015, 527/528: 552-560. doi: 10.1016/j.scitotenv.2015.05.053
|
[5] |
国家统计局. 中国第三产业统计年鉴-2022[M]. 北京: 中国统计出版社, 2022: 12.
National Bureau of Statistics. China statistical yearbook of the tertiary industry[M]. Beijing: China Statistics Press, 2022: 12 (in Chinese).
|
[6] |
马传鑫, 汪志荣, 高琼, 等. 天津市典型污灌区冬小麦各生育期的重金属分析[J]. 环境化学, 2010, 29(1): 44-47.
MA C X, WANG Z R, GAO Q, et al. Heavy metal analysis of winter wheat at each stage in typical sewage irrigated area of Tianjin[J]. Environmental Chemistry, 2010, 29(1): 44-47 (in Chinese).
|
[7] |
周亚龙, 杨志斌, 王乔林, 等. 雄安新区农田土壤-农作物系统重金属潜在生态风险评估及其源解析[J]. 环境科学, 2021, 42(4): 2003-2015.
ZHOU Y L, YANG Z B, WANG Q L, et al. Potential ecological risk assessment and source analysis of heavy metals in soil-crop system in Xiong’an new district[J]. Environmental Science, 2021, 42(4): 2003-2015 (in Chinese).
|
[8] |
XUE P Y, ZHAO Q L, SUN H X, et al. Characteristics of heavy metals in soils and grains of wheat and maize from farmland irrigated with sewage[J]. Environmental Science and Pollution Research, 2019, 26(6): 5554-5563. doi: 10.1007/s11356-018-3997-4
|
[9] |
刘娜, 张少斌, 郭欣宇, 等. 小麦籽粒镉含量影响因素Meta分析和决策树分析[J]. 环境科学, 2023, 44(4): 2265-2274.
LIU N, ZHANG S B, GUO X Y, et al. Influencing factors of cadmium content in wheat grain: A meta-analysis and decision tree analysis[J]. Environmental Science, 2023, 44(4): 2265-2274 (in Chinese).
|
[10] |
尚二萍, 许尔琪, 张红旗, 等. 中国粮食主产区耕地土壤重金属时空变化与污染源分析[J]. 环境科学, 2018, 39(10): 4670-4683.
SHANG E P, XU E Q, ZHANG H Q, et al. Spatial-temporal trends and pollution source analysis for heavy metal contamination of cultivated soils in five major grain producing regions of China[J]. Environmental Science, 2018, 39(10): 4670-4683 (in Chinese).
|
[11] |
和君强, 刘代欢, 邓林, 等. 农田土壤镉生物有效性及暴露评估研究进展[J]. 生态毒理学报, 2017, 12(6): 69-82.
HE J Q, LIU D H, DENG L, et al. Bioavailability and exposure assessment of cadmium in farmland soil: A review[J]. Asian Journal of Ecotoxicology, 2017, 12(6): 69-82 (in Chinese).
|
[12] |
LIU N, HUANG X M, SUN L M, et al. Screening stably low cadmium and moderately high micronutrients wheat cultivars under three different agricultural environments of China[J]. Chemosphere, 2020, 241: 125065. doi: 10.1016/j.chemosphere.2019.125065
|
[13] |
李浩杰, 钞锦龙, 姚万程, 等. 小麦籽粒重金属含量特征及人体健康风险评价: 以河南省北部某县为例[J]. 环境化学, 2022, 41(4): 1158-1167. doi: 10.7524/j.issn.0254-6108.2021092306
LI H J, CHAO J L, YAO W C, et al. Characteristics of heavy metal content in wheat grains and human health risk assessment—a County in northern Henan Province[J]. Environmental Chemistry, 2022, 41(4): 1158-1167 (in Chinese). doi: 10.7524/j.issn.0254-6108.2021092306
|
[14] |
LIU Y M, LIU D Y, ZHANG W, et al. Health risk assessment of heavy metals (Zn, Cu, Cd, Pb, As and Cr) in wheat grain receiving repeated Zn fertilizers[J]. Environmental Pollution, 2020, 257: 113581. doi: 10.1016/j.envpol.2019.113581
|
[15] |
WU C, DUN Y, ZHANG Z J, et al. Foliar application of selenium and zinc to alleviate wheat (Triticum aestivum L.) cadmium toxicity and uptake from cadmium-contaminated soil[J]. Ecotoxicology and Environmental Safety, 2020, 190: 110091.
|
[16] |
LI L P, ZHANG Y Q, IPPOLITO J A, et al. Lead smelting alters wheat flour heavy metal concentrations and health risks[J]. Journal of Environmental Quality, 2021, 50(2): 454-464. doi: 10.1002/jeq2.20198
|
[17] |
GIORDANO D, BLANDINO M. Arsenic, lead and cadmium distribution in the pearled fractions of different winter wheat cultivars (Triticum aestivum L.)[J]. Journal of Cereal Science, 2018, 80: 94-101.
|
[18] |
ISMAEL M A, ELYAMINE A M, MOUSSA M G, et al. Cadmium in plants: Uptake, toxicity, and its interactions with selenium fertilizers[J]. Metallomics, 2019, 11(2): 255-277. doi: 10.1039/C8MT00247A
|
[19] |
YAN B F, ISAURE M P, MOUNICOU S, et al. Cadmium distribution in mature durum wheat grains using dissection, laser ablation-ICP-MS and synchrotron techniques[J]. Environmental Pollution, 2020, 260: 113987. doi: 10.1016/j.envpol.2020.113987
|
[20] |
MOORE K L, SCHRÖDER M, LOMBI E, et al. NanoSIMS analysis of arsenic and selenium in cereal grain[J]. New Phytologist, 2010, 185(2): 434-445. doi: 10.1111/j.1469-8137.2009.03071.x
|
[21] |
MA C, LIU F Y, JIN K, et al. Effects of atmospheric fallout on lead contamination of wheat tissues based on stable isotope ratios[J]. Bulletin of Environmental Contamination and Toxicology, 2019, 103(5): 676-682. doi: 10.1007/s00128-019-02702-1
|
[22] |
肖冰, 王秋实, 高培培, 等. 叶面调理剂对复合污染农田小麦籽粒Cd、As和Pb累积的阻控效应[J]. 环境科学, 2024, 45(3): 1812-1820.
XIAO B, WANG Q S, GAO P P, et al. Blocking Effects of foliar conditioners on cadmium, arsenic, and lead accumulation in wheat grain in compound-contaminated farmland[J]. Environmental Science, 2024, 45(3): 1812-1820(in Chinese).
|
[23] |
ONIPE O O, JIDEANI A I O, BESWA D. Composition and functionality of wheat bran and its application in some cereal food products[J]. International Journal of Food Science & Technology, 2015, 50(12): 2509-2518.
|
[24] |
CURTI E, CARINI E, BONACINI G, et al. Effect of the addition of bran fractions on bread properties[J]. Journal of Cereal Science, 2013, 57(3): 325-332. doi: 10.1016/j.jcs.2012.12.003
|
[25] |
田潇凌, 王晓曦. 机械力化学研究现状及其在小麦制粉中的应用前景[J]. 食品科学, 2021, 42(9): 275-282.
TIAN X L, WANG X X. Current status of mechanochemistry and its application prospects in wheat milling[J]. Food Science, 2021, 42(9): 275-282 (in Chinese).
|
[26] |
DELCOUR J A, ROUAU X, COURTIN C M, et al. Technologies for enhanced exploitation of the health-promoting potential of cereals[J]. Trends in Food Science & Technology, 2012, 25(2): 78-86.
|
[27] |
魏帅, 魏益民, 郭波莉. 小麦制粉系统各粉路产品铅、镉含量特征[J]. 中国食品学报, 2016, 16(9): 206-210.
WEI S, WEI Y M, GUO B L. Pb and Cd concentration in different flour flow of wheat milling system[J]. Journal of Chinese Institute of Food Science and Technology, 2016, 16(9): 206-210 (in Chinese).
|
[28] |
刘思彤. 不同筋力面筋蛋白组分对馒头加工品质和冻藏品质影响的研究[D]. 邯郸: 河北工程大学, 2021: 3-4.
LIU S T. Study on the effects of different gluten protein components on the processing and frozen storage quality of steamed bread[D]. HanDan: Hebei University of Engineering, 2021: 3-4(in Chinese).
|
[29] |
HE M C, YANG J R, CHA Y. Distribution and protein-binding forms of heavy metals in polluted wheat seed[J]. Journal of Environmental Science and Health, Part A, 2000, 35(10): 1891-1899. doi: 10.1080/10934520009377084
|
[30] |
马斯霜, 白海波, 惠建, 等. 小麦主要品质性状研究进展[J]. 中国农学通报, 2021, 37(24): 1-5.
MA S S, BAI H B, HUI J, et al. Main quality characters of wheat: A review[J]. Chinese Agricultural Science Bulletin, 2021, 37(24): 1-5 (in Chinese).
|
[31] |
贾峰, 周晓配, 秦梦梦, 等. 一种微量有效检测小麦面粉筋力的方法[J]. 河南工业大学学报(自然科学版), 2016, 37(1): 1-4.
JIA F, ZHOU X P, QIN M M, et al. An effective determination method of the wheat flour gluten with micro scale by UV spectrophotometry[J]. Journal of Henan University of Technology (Natural Science Edition), 2016, 37(1): 1-4 (in Chinese).
|
[32] |
BASNET P, AMARASIRIWARDENA D, WU F C, et al. Investigation of tissue level distribution of functional groups and associated trace metals in rice seeds (Oryza sativa L.) using FTIR and LA-ICP-MS[J]. Microchemical Journal, 2016, 127: 152-159.
|
[33] |
GAO P P, XUE P Y, DONG J W, et al. Contribution of PM2.5-Pb in atmospheric fallout to Pb accumulation in Chinese cabbage leaves via stomata[J]. Journal of Hazardous Materials, 2021, 407: 124356. doi: 10.1016/j.jhazmat.2020.124356
|
[34] |
董俊文, 高培培, 孙洪欣, 等. 设施叶菜类蔬菜重金属镉、铅和砷累积特征及健康风险评价[J]. 环境科学, 2022, 43(1): 481-489.
DONG J W, GAO P P, SUN H X, et al. Characteristics and health risk assessment of cadmium, lead, and arsenic accumulation in leafy vegetables planted in a greenhouse[J]. Environmental Science, 2022, 43(1): 481-489 (in Chinese).
|
[35] |
国家卫生健康委员会, 国家市场监督管理总局. 食品安全国家标准 食品中污染物限量: GB 2762—2022[S]. 北京: 中国标准出版社, 2023: 2-7.
National Health Commission of the People’s Republic of China, State Administration for Market Regulation, National food safety standard-Limits of contaminants in food: GB 2762—2022[S]. Beijing: Standards Press of China, 2023: 2-7 (in Chinese).
|
[36] |
肖冰, 薛培英, 韦亮, 等. 基于田块尺度的农田土壤和小麦籽粒镉砷铅污染特征及健康风险评价[J]. 环境科学, 2020, 41(6): 2869-2877.
XIAO B, XUE P Y, WEI L, et al. Characteristics of Cd, As, and Pb in soil and wheat grains and health risk assessment of grain-Cd/As/Pb on the field scale[J]. Environmental Science, 2020, 41(6): 2869-2877 (in Chinese).
|
[37] |
王伟全, 徐冬莹, 黄青青, 等. 污灌区土壤: 小麦系统中重金属富集特征及其对人体健康风险评价[J]. 环境化学, 2022, 41(10): 3231-3243. doi: 10.7524/j.issn.0254-6108.2021070604
WANG W Q, XU D Y, HUANG Q Q, et al. Characteristics of heavy metals in the soil-wheat system of sewage irrigation area and its health risk assessment[J]. Environmental Chemistry, 2022, 41(10): 3231-3243 (in Chinese). doi: 10.7524/j.issn.0254-6108.2021070604
|
[38] |
王世玉, 吴文勇, 刘菲, 等. 典型污灌区土壤与作物中重金属健康风险评估[J]. 中国环境科学, 2018, 38(4): 1550-1560.
WANG S Y, WU W Y, LIU F, et al. Assessment of human health risks of heavy metals in the typical sewage irrigation areas[J]. China Environmental Science, 2018, 38(4): 1550-1560 (in Chinese).
|
[39] |
ORGANIZATION W H. Evaluation of certain food additive and contaminants[J]. World Health Organization Technical Report Series, 2011(960): 1-226.
|
[40] |
李春芳, 曹见飞, 吕建树, 等. 不同土地利用类型土壤重金属生态风险与人体健康风险[J]. 环境科学, 2018, 39(12): 5628-5638.
LI C F, CAO J F, LÜ J S, et al. Ecological risk assessment of soil heavy metals for different types of land use and evaluation of human health[J]. Environmental Science, 2018, 39(12): 5628-5638 (in Chinese).
|
[41] |
代俊利, 李保云, 姚大年. 小麦近等基因系高分子量谷蛋白亚基对品质的影响[J]. 中国农业大学学报, 2013, 18(4): 13-19.
DAI J L, LI B Y, YAO D N. Influence of high molecular weight glutenin subunits near-isogenic lines onwheat quality[J]. Journal of China Agricultural University, 2013, 18(4): 13-19 (in Chinese).
|
[42] |
DELCOUR J A, JOYE I J, PAREYT B, et al. Wheat gluten functionality as a quality determinant in cereal-based food products[J]. Annual Review of Food Science and Technology, 2012, 3: 469-492. doi: 10.1146/annurev-food-022811-101303
|
[43] |
马冬云, 郭天财, 张剑, 等. 不同筋力小麦磨粉各出粉点小麦粉品质特性分析[J]. 中国粮油学报, 2010, 25(7): 11-14,20.
MA D Y, GUO T C, ZHANG J, et al. Flour properties of different milling streams for wheat of different gluten strength[J]. Journal of the Chinese Cereals and Oils Association, 2010, 25(7): 11-14,20 (in Chinese).
|
[44] |
杨月月. 不同面筋含量小麦淀粉及蛋白质特性分析[D]. 郑州: 河南工业大学, 2018: 4-5.
YANG Y Y. Analyses of starch and protein characteristics of wheat with different gluten contents[D]. Zhengzhou: Henan University of Technology, 2018: 4-5 (in Chinese).
|
[45] |
WEI S A, GUO B L, FENG L X , et al. Cadmium distribution and characteristics of cadmium-binding proteins in rice (Oryza sativa L. ) kernel[J]. Food Science and Technology Research, 2017, 23(5): 661-668.
|
[46] |
王珏旸, 林欣颖, 宋维昊, 等. 市售面粉及面制品中镉的人体健康风险研究[J]. 环境化学, 2019, 38(6): 1232-1240. doi: 10.7524/j.issn.0254-6108.2018090101
WANG J Y, LIN X Y, SONG W H, et al. Human health risk assessment of cadmium in commercial wheat flour and products[J]. Environmental Chemistry, 2019, 38(6): 1232-1240 (in Chinese). doi: 10.7524/j.issn.0254-6108.2018090101
|
[47] |
GU Y, WANG P, ZHANG S, et al. Chemical speciation and distribution of cadmium in rice grain and implications for bioavailability to humans[J]. Environmental Science & Technology, 2020, 54(19): 12072-12080.
|
[48] |
van MALDEREN S J M, LAFORCE B, van ACKER T , et al. Imaging the 3D trace metal and metalloid distribution in mature wheat and rye grains via laser ablation-ICP-mass spectrometry and micro-X-ray fluorescence spectrometry[J]. Journal of Analytical Atomic Spectrometry, 2017, 32(2): 289-298.
|
[49] |
梁晓聪, 王辛, 唐丽, 等. 2002—2018年陕西省市售谷物中铅、镉、总汞和总砷污染状况及暴露评估[J]. 卫生研究, 2021, 50(5): 827-831,836.
LIANG X C, WANG X, TANG L, et al. Pollution status and exposure assessment of lead, cadmium, total mercury and total arsenic in grains on sale from Shaanxi Province, 2002-2018[J]. Journal of Hygiene Research, 2021, 50(5): 827-831,836 (in Chinese).
|
[50] |
李艳飞, 谢昌平, 李德洁, 等. 柳州地区自产大米中镉、铅和砷污染状况及其健康风险评价[J]. 中国卫生检验杂志, 2020, 30(24): 3026-3029.
LI Y F, XIE C P, LI D J, et al. Cadmium, lead and arsenic pollution and health risk assessment of rice produced in Liuzhou area[J]. Chinese Journal of Health Laboratory Technology, 2020, 30(24): 3026-3029 (in Chinese).
|