| [1] |
GUI J Y, RAO S, HUANG X, et al. Interaction between selenium and essential micronutrient elements in plants: A systematic review[J]. Science of the total environment, 2022, 853:158673.
doi: 10.1016/j.scitotenv.2022.158673
URL
|
| [2] |
LOPES G, AVILA F, GUILHERME L R. Selenium behavior in the soil environment and its implication for human health[J]. Ciencia e agrotecnologia, 2017, 41(6):605-615.
doi: 10.1590/1413-70542017416000517
URL
|
| [3] |
贾海江, 路丹, 韦建玉, 等. 不同活化剂对两种富硒土壤上烤烟生长及吸收累积硒的影[J]. 广东农业科学, 2019, 46(12):56-65.
|
| [4] |
黄雪梅, 岳顺念, 王琦瑞. 不同浓度亚硒酸钠对水培生菜富硒品质的影响[J]. 广东农业科学, 2018, 45(1):29-33.
|
| [5] |
ZHANG L H, HU B, LI W, et al. OsPT2, a phosphate transporter, is involved in the active uptake of selenite in rice[J]. New phytologist, 2014, 201(6):1183-1191.
doi: 10.1111/nph.2014.201.issue-4
URL
|
| [6] |
肖莎莎, 文可欣, 袁怡, 等. 有机硒对水稻抗氧化酶及营养品质的影响[J]. 农业灾害研究, 2024, 14(3):43-45.
|
| [7] |
卜少腾. 外源硒对不同硒累积型水稻品种生长及土壤硒有效性的影响[D]. 东莞: 东莞理工学院, 2023.
|
| [8] |
HAWRYLAK-NOWAK B, MATRASZEK R, POGORZELEC M. The dual effects of two inorganic selenium forms on the growth, selected physiological parameters and macronutrients accumulation in cucumber plants[J]. Acta physiologiae plantarum, 2015, 37:1-13.
doi: 10.1007/s11738-014-1746-y
URL
|
| [9] |
梁郅哲, 司振兴, 牛慧伟, 等. 硒对植物的毒害作用研究进展[J]. 河南农业科学, 2022, 51(6):13-21.
|
| [10] |
孙星, 易琼, 唐拴虎, 等. 水稻硒营养研究进展[J]. 土壤通报, 2023, 54(1):223-231.
|
| [11] |
CHAUHAN R, AWASTHI S, SRIVASTAVA S, et al. Understanding selenium metabolism in plants and its role as a beneficial element[J]. Critical Reviews in environmental science and technology, 2019, 49(21):1937-1958.
doi: 10.1080/10643389.2019.1598240
URL
|
| [12] |
FENG R W, WANG L Z, YANG J G, et al. Underlying mechanisms responsible for restriction of uptake and translocation of heavy metals (metalloids) by selenium via root application in plants[J]. Journal of hazardous materials, 2021, 402:123570.
doi: 10.1016/j.jhazmat.2020.123570
URL
|
| [13] |
RIZWAN M, ALI S, REHMAN M Z U, et al. Effects of selenium on the uptake of toxic trace elements by crop plants: A review[J]. Critical reviews in environmental science and technology, 2021, 51(21):2531-2566.
doi: 10.1080/10643389.2020.1796566
URL
|
| [14] |
WAN Y N, YU Y, WANG Q, et al. Cadmium uptake dynamics and translocation in rice seedling: Influence of different forms of selenium[J]. Ecotoxicology and environmental safety, 2016, 133:127-134.
doi: 10.1016/j.ecoenv.2016.07.001
pmid: 27434423
|
| [15] |
马洁, 王翰霖, 侯晓宁, 等. 外源硒对水稻抗氧化酶活性、产量及其体内硒含量影响的研究[J]. 中国农学通报, 2021, 37(6):9-15.
doi: 10.11924/j.issn.1000-6850.casb2020-0111
|
| [16] |
HOU M, LI M Y, YANG X H, et al. Responses of nonprotein thiols to stress of vanadium and mercury in maize (Zea mays L.) seedlings[J]. Bulletin of environmental contamination and toxicology, 2019, 102:425-431.
doi: 10.1007/s00128-019-02553-w
|
| [17] |
NATASH A, SHAHID M, NIAZI N K, et al. A critical review of selenium biogeochemical behavior in soil-plant system with an inference to human health[J]. Environmental pollution, 2018, 234:915-934.
doi: S0269-7491(17)33975-1
pmid: 29253832
|
| [18] |
腾海艳, 任昕, 李魁浩, 等. 硒对水稻生长和盐胁迫耐受性的影响[J]. 大麦与谷类科学, 2024, 41(2):6-10,28.
|
| [19] |
MOSTOFA M G, HOSSAIN M A, SIDDIQUI M N, et al. Phenotypical, physiological and biochemical analyses provide insight into selenium-induced phytotoxicity in rice plants[J]. Chemosphere, 2017, 178:212-223.
doi: S0045-6535(17)30409-5
pmid: 28324842
|
| [20] |
GUPTA M, SHIKHA G. An overview of selenium uptake, metabolism, and toxicity in plants[J]. Frontiers in plant science, 2017, 7:2074.
|
| [21] |
LICHTENTHALER H K, WELLBURN A R. Determinations of total carotenoids and chlorophylls a and b of leaf extracts in different solvents[J]. Analysis, 1983, 11(5):591-592.
|
| [22] |
YI Q, SUN X, TANG S H, et al. Comparation of Se accumulation and distribution of two rice (Oryza sativa L.) cultivars with high-and low-Se efficiency as affected by exogenous application of selenite[J]. Journal of cereal science, 2022, 105:103475.
doi: 10.1016/j.jcs.2022.103475
URL
|
| [23] |
储成才, 王毅, 王二涛. 植物氮磷钾养分高效利用研究现状与展望[J]. 中国科学:生命科学, 2021, 51(10):1415-1423.
|
| [24] |
吉力力麦麦提. 施硒对砷污染土壤中水稻生长和硒、砷与养分含量的影响[D]. 武汉: 湖北大学, 2023.
|
| [25] |
肖利杰, 刘春梅, 李梅, 等. 施硒对水稻硒氮磷钾含量及产量的影响[J]. 安徽农业科学, 2015, 43(34):59-61.
|
| [26] |
HARTIKAINEN H, XUE T, PIIRONEN V. Selenium as an anti-oxidant and pro-oxidant in ryegrass[J]. Plant and soil, 2000, 225:193-200.
doi: 10.1023/A:1026512921026
|
| [27] |
ZHOU J H, CHENG K, SONG L P, et al. Exogenous indoleacetic acid induces cadmium accumulation and growth in Cinnamomum camphora[J]. Scientia horticulturae, 2024, 323:112518.
doi: 10.1016/j.scienta.2023.112518
URL
|
| [28] |
LU T Y, AI Y M, NA M, et al. Physiological and biochemical analysis of selenium-enriched rice[J]. Agronomy, 2024, 14(8):1715.
doi: 10.3390/agronomy14081715
URL
|
| [29] |
李春萍, 覃德华, 文晓阳, 等. 镉胁迫对不同品种烟草生长发育和镉吸收规律的影响[J]. 广东农业科学, 2023, 50(4):22-32.
|
| [30] |
YIN H Q, QI Z Y, LI M Q, et al. Selenium forms and methods of application differentially modulate plant growth, photosynthesis, stress tolerance, selenium content and speciation in Oryza sativa L.[J]. Ecotoxicology and environmental safetyvolume, 2019, 169:911-917.
|
| [31] |
SHARMA S, GOYAL R, SADANA U S. Selenium accumulation and antioxidant status of rice plants grown on seleniferous soil from Northwestern India[J]. Rice science, 2014, 21:327-334.
doi: 10.1016/S1672-6308(14)60270-5
|
| [32] |
WAN Y N, WANG K, LIU Z, et al. Effect of selenium on the subcellular distribution of cadmium and oxidative stress induced by cadmium in rice (Oryza sativa L.)[J]. Environmental science and pollution research, 2019, 26:16220-16228.
doi: 10.1007/s11356-019-04975-9
|
| [33] |
DERVISI I, KOLETTI A, AGALOU A, et al. Selenium-Binding Protein 1 (SBP1): A new putative player of stress sensing in plants[J]. International journal of molecular sciences, 2024, 25(17):9372.
doi: 10.3390/ijms25179372
URL
|
| [34] |
VALASSAKIS C, LIVANOS P, MINOPETROU M, et al. Promoter analysis and functional implications of the selenium binding protein (SBP) gene family in Arabidopsis thaliana[J]. Journal of plant physiology, 2018, 224:19-29.
|
| [35] |
DUTILLEUL C, JOURDAIN A, BOURGUIGNON J, et al. The arabidopsis putative selenium-binding protein family: Expression study and characterization of SBP1 as a potential new player in cadmium detoxification processes[J]. Plant physiology, 2008, 147(1):239-251.
doi: 10.1104/pp.107.114033
pmid: 18354042
|
| [36] |
SCHILD F, KIEFFER-JAQUINOD S, PALENCIA A, et al. Biochemical and biophysical characterization of the selenium-binding and reducing site in Arabidopsis thaliana homologue to mammals selenium-binding protein 1[J]. Journal of biological chemistry, 2014, 289(46):31765-31776.
doi: 10.1074/jbc.M114.571208
pmid: 25274629
|
| [37] |
戴志华. 水稻对硒的吸收转化及调控机理研究[D]. 武汉: 华中农业大学, 2020.
|