Citation: | LI S J, LIU Y J, ZHANG Y, et al. Accumulation and Molecular Detection of Pb and Cd in Sweet Corn Inbred Lines [J]. Fujian Journal of Agricultural Sciences,2024,39(3):251−258 doi: 10.19303/j.issn.1008-0384.2024.03.002 |
[1] |
邵云, 郝真真, 王文斐, 等. 土壤重金属污染现状及修复技术研究进展 [J]. 北方园艺, 2016, (17):193−196. doi: 10.11937/bfyy.201617047
SHAO Y, HAO Z Z, WANG W F, et al. Research progress on heavy metal contaminated soils and research advances in remediation technology [J]. Northern Horticulture, 2016(17): 193−196. (in Chinese) doi: 10.11937/bfyy.201617047
|
[2] |
赵鑫娜, 杨忠芳, 余涛. 矿区土壤重金属污染及修复技术研究进展 [J]. 中国地质, 2023, 50(1):84−101. doi: 10.12029/gc20220702001
ZHAO X N, YANG Z F, YU T. Review on heavy metal pollution and remediation technology in the soil of mining areas [J]. Geology in China, 2023, 50(1): 84−101. (in Chinese) doi: 10.12029/gc20220702001
|
[3] |
张小敏, 张秀英, 钟太洋, 等. 中国农田土壤重金属富集状况及其空间分布研究 [J]. 环境科学, 2014, 35(2):692−703.
ZHANG X M, ZHANG X Y, ZHONG T Y, et al. Spatial distribution and accumulation of heavy metal in arable land soil of China [J]. Environmental Science, 2014, 35(2): 692−703. (in Chinese)
|
[4] |
陈文轩, 李茜, 王珍, 等. 中国农田土壤重金属空间分布特征及污染评价 [J]. 环境科学, 2020, 41(6):2822−2833.
CHEN W X, LI Q, WANG Z, et al. Spatial distribution characteristics and pollution evaluation of heavy metals in arable land soil of China [J]. Environmental Science, 2020, 41(6): 2822−2833. (in Chinese)
|
[5] |
唐书源, 赵治书, 易庭辉, 等. 重庆郊县市场玉米的重金属污染及对策 [J]. 农业环境与发展, 2003, 20(2):30.
TANG S Y, ZHAO Z S, YI T H, et al. Heavy metal pollution of corn in suburban market of Chongqing and its countermeasures [J]. Agro-Environment and Development, 2003, 20(2): 30. (in Chinese)
|
[6] |
杨刚, 沈飞, 钟贵江, 等. 西南山地铅锌矿区耕地土壤和谷类产品重金属含量及健康风险评价 [J]. 环境科学学报, 2011, 31(9):2014−2021.
YANG G, SHEN F, ZHONG G J, et al. Concentration and health risk of heavy metals in crops and soils in a zinc-lead mining area in southwest mountainous regions [J]. Acta Scientiae Circumstantiae, 2011, 31(9): 2014−2021. (in Chinese)
|
[7] |
许静, 陈永快, 邹晖. 福建省不同区域土壤、蔬菜重金属污染现状分析 [J]. 福建农业学报, 2011, 26(4):646−651. doi: 10.3969/j.issn.1008-0384.2011.04.030
XU J, CHEN Y K, ZOU H. Regional comparisons for heavy metal contamination in soil and vegetables in Fujian Province [J]. Fujian Journal of Agricultural Sciences, 2011, 26(4): 646−651. (in Chinese) doi: 10.3969/j.issn.1008-0384.2011.04.030
|
[8] |
沈一尘, 涂晨, 邱炜, 等. 镉污染土壤上不同水稻品种的镉积累与减污潜力 [J]. 生态与农村环境学报, 2023, 39(4):547−555.
SHEN Y C, TU C, QIU W, et al. Cadmium accumulation and pollution reduction potential of different rice varieties on cadmium-contaminated soils [J]. Journal of Ecology and Rural Environment, 2023, 39(4): 547−555. (in Chinese)
|
[9] |
邵华伟, 葛春辉, 马彦茹, 等. 施入城市生活垃圾堆肥对玉米植株重金属分布及土壤养分的影响 [J]. 农业资源与环境学报, 2013, 30(6):58−63. doi: 10.3969/j.issn.1005-4944.2013.06.012
SHAO H W, GE C H, MA Y R, et al. Effect of municipal solid waste(MSW)compost application on heavy metal distribution in maize plant and soil nutrients [J]. Journal of Agricultural Resources and Environment, 2013, 30(6): 58−63. (in Chinese) doi: 10.3969/j.issn.1005-4944.2013.06.012
|
[10] |
辛艳卫, 梁成华, 杜立宇, 等. 不同玉米品种对镉的富集和转运特性 [J]. 农业环境科学学报, 2017, 36(5):839−846. doi: 10.11654/jaes.2016-1668
XIN Y W, LIANG C H, DU L Y, et al. Accumulation and translocation of cadmium in different maize cultivars [J]. Journal of Agro-Environment Science, 2017, 36(5): 839−846. (in Chinese) doi: 10.11654/jaes.2016-1668
|
[11] |
李月芳, 刘领, 陈欣, 等. 模拟铅胁迫下玉米不同基因型生长与铅积累及各器官间分配规律 [J]. 农业环境科学学报, 2010, 29(12):2260−2267.
LI Y F, LIU L, CHEN X, et al. Plant growth, lead uptake and partitioning of maize(Zea mays L. ) under simulated mild/moderate lead pollution stress [J]. Journal of Agro-Environment Science, 2010, 29(12): 2260−2267. (in Chinese)
|
[12] |
WANG A Y, WANG M Y, LIAO Q, et al. Characterization of Cd translocation and accumulation in 19 maize cultivars grown on Cd-contaminated soil: Implication of maize cultivar selection for minimal risk to human health and for phytoremediation [J]. Environmental Science and Pollution Research, 2016, 23(6): 5410−5419. doi: 10.1007/s11356-015-5781-z
|
[13] |
袁林, 刘颖, 兰玉书, 等. 不同玉米品种对镉吸收累积特性研究 [J]. 四川农业大学学报, 2018, 36(1):22−27.
YUAN L, LIU Y, LAN Y S, et al. Variations of cadmium absorption and accumulation among corn cultivars of metal pollution in soil from lead-zinc mining area [J]. Journal of Sichuan Agricultural University, 2018, 36(1): 22−27. (in Chinese)
|
[14] |
鄢小龙, 马宏朕, 李元, 等. 铅锌矿区周边农田Cd、Pb低累积玉米品种筛选 [J]. 云南农业大学学报(自然科学), 2019, 34(6):1076−1083.
YAN X L, MA H Z, LI Y, et al. Screening Zea mays cultivars based upon accumulation of Cd and Pb in the farmland around the lead-zinc mine area [J]. Journal of Yunnan Agricultural University (Natural Science), 2019, 34(6): 1076−1083. (in Chinese)
|
[15] |
赵雄伟. 玉米控制重金属镉积累的遗传基础解析[D]. 雅安: 四川农业大学, 2018.
ZHAO X W. Genetic Basis for Controlling Heavy Metal Cadmium Accumulation in Maize[D]. Yaan: Sichuan Agricultural University, 2018. (in Chinese)
|
[16] |
兰雨舟. 甜糯玉米籽粒镉含量全基因组关联分析[D]. 雅安: 四川农业大学, 2018.
LAN Y Z. Genome wide association study for Cd content in grains of sweet and waxy maize[D]. Yaan: Sichuan Agricultural University, 2018. (in Chinese)
|
[17] |
田婉莹, 孙进华, 李焕苓, 等. 利用分子标记技术鉴定荔枝杂交后代的研究 [J]. 分子植物育种, 2015, 13(5):1045−1052.
TIAN W Y, SUN J H, LI H L, et al. Identification of Litchi(Litchi chinensis sonn. ) hybrids by molecular markers [J]. Molecular Plant Breeding, 2015, 13(5): 1045−1052. (in Chinese)
|
[18] |
KÖSOĞLU K, YUMUK S, AYDIN Y, et al. Use of SNP markers by KASP assay for MAS studies in sunflower against Plasmopara halstedii [J]. Turkish Journal of Agriculture and Forestry, 2017, 41: 480−489. doi: 10.3906/tar-1707-53
|
[19] |
YE J, WANG X, HU T X, et al. An InDel in the promoter of Al-activated malate transporter 9 selected during tomato domestication determines fruit malate contents and aluminum tolerance [J]. The Plant Cell, 2017, 29(9): 2249−2268. doi: 10.1105/tpc.17.00211
|
[20] |
刘江晖, 周华. ICP-MS法同时测定食品中8种微量有害元素的方法研究 [J]. 中国卫生检验杂志, 2004, 14(1):3−4,2. doi: 10.3969/j.issn.1004-8685.2004.01.002
LIU J H, ZHOU H. Simultaneous determination of 8 trace toxic elements in food by ICP- MS [J]. Chinese Journal of Health Laboratory Technology, 2004, 14(1): 3−4,2. (in Chinese) doi: 10.3969/j.issn.1004-8685.2004.01.002
|
[21] |
刘可心, 王璐, 蔚荣海, 等. 一种适于SNP芯片分型的玉米种皮组织DNA提取方法 [J]. 分子植物育种, 2017, 15(1):195−199.
LIU K X, WANG L, YU R H, et al. A DNA extraction method from maize seed capsule tissue suitable for SNP chip genotyping [J]. Molecular Plant Breeding, 2017, 15(1): 195−199. (in Chinese)
|
[22] |
GRANT C A, CLARKE J M, DUGUID S, et al. Selection and breeding of plant cultivars to minimize cadmium accumulation [J]. The Science of the Total Environment, 2008, 390(2/3): 301−310.
|
[23] |
李正文, 张艳玲, 潘根兴, 等. 不同水稻品种籽粒Cd、Cu和Se的含量差异及其人类膳食摄取风险 [J]. 环境科学, 2003, 24(3):112−115. doi: 10.3321/j.issn:0250-3301.2003.03.022
LI Z W, ZHANG Y L, PAN G X, et al. Grain contents of Cd, Cu and Se by 57 rice cultivars and the risk significance for human dietary uptake [J]. Chinese Journal of Environmental Science, 2003, 24(3): 112−115. (in Chinese) doi: 10.3321/j.issn:0250-3301.2003.03.022
|
[24] |
WU F B, ZHANG G. Genotypic differences in effect of Cd on growth and mineral concentrations in barley seedlings [J]. Bulletin of Environmental Contamination and Toxicology, 2002, 69(2): 219−227. doi: 10.1007/s00128-002-0050-5
|
[25] |
MCLAUGHLIN M J, BELL M J, WRIGHT G C, et al. Uptake and partitioning of cadmium by cultivars of peanut (Arachis hypogaea L. ) [J]. Plant and Soil, 2000, 222(1): 51−58.
|
[26] |
LI Y M, CHANEY R L, SCHNEITER A A, et al. Screening for low grain cadmium phenotypes in sunflower, durum wheat and flax [J]. Euphytica, 1997, 94(1): 23−30. doi: 10.1023/A:1002996405463
|
[27] |
张宁, 陶荣浩, 张慧敏, 等. 不同玉米品种对镉积累和转运差异研究 [J]. 农业资源与环境学报, 2022, 39(6):1208−1216.
ZHANG N, TAO R H, ZHANG H M, et al. Differences in cadmium accumulation and translocation in different varieties of Zea mays [J]. Journal of Agricultural Resources and Environment, 2022, 39(6): 1208−1216. (in Chinese)
|
[28] |
文秋红, 于丽华. 玉米自交系富集镉能力和最佳收获时期 [J]. 生态学报, 2006, 26(12):4066−4070. doi: 10.3321/j.issn:1000-0933.2006.12.020
WEN Q H, YU L H. The ability of accumulate Cadmium and the best harvest time of six series maize inbred lines in Cd-contaminated soil [J]. Acta Ecologica Sinica, 2006, 26(12): 4066−4070. (in Chinese) doi: 10.3321/j.issn:1000-0933.2006.12.020
|
[29] |
ZHANG Z M, JIN F, WANG C, et al. Difference between Pb and Cd accumulation in 19 elite maize inbred lines and application prospects [J]. Journal of Biomedicine & Biotechnology, 2012, 2012: 271485.
|
[30] |
LIU J, QU J T, YANG C, et al. Development of genome-wide insertion and deletion markers for maize, based on next-generation sequencing data [J]. BMC Genomics, 2015, 16(1): 601. doi: 10.1186/s12864-015-1797-5
|
[31] |
李军, 李白. 水稻氮高效利用基因NRT1.1B InDel分子标记的开发与应用 [J]. 分子植物育种, 2016, 14(12):3405−3413.
LI J, LI B. Development and application of InDel marker for high nitrogen-use efficiency gene NRT1.1B in rice [J]. Molecular Plant Breeding, 2016, 14(12): 3405−3413. (in Chinese)
|
[32] |
HOSSAIN M A, PIYATIDA P, DA SILVA J A T, et al. Molecular mechanism of heavy metal toxicity and tolerance in plants: Central role of glutathione in detoxification of reactive oxygen species and methylglyoxal and in heavy metal chelation [J]. Journal of Botany, 2012, 2012: 872875.
|