HUBEI AGRICULTURAL SCIENCES ›› 2021, Vol. 60 ›› Issue (6): 5-14.doi: 10.14088/j.cnki.issn0439-8114.2021.06.001
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LI Lin-ling1,2,3, ZHANG Guo-ji4, GUO Jie3, XIAO Xian2, CHENG Shui-yuan2, CHENG Hua1,2
Received:
2020-11-11
Online:
2021-03-25
Published:
2021-04-07
CLC Number:
LI Lin-ling, ZHANG Guo-ji, GUO Jie, XIAO Xian, CHENG Shui-yuan, CHENG Hua. Research progress on plant accumulation and metabolism of selenium and enlightenment on the development of selenium-rich planting industry[J]. HUBEI AGRICULTURAL SCIENCES, 2021, 60(6): 5-14.
[1] WHITE P J, BROWN P H.Plant nutrition for sustainable development and global health[J]. Annals of botany, 2010, 7: 1073-1080. [2] FAIRWEATHER S J, SUSAN J, BROADLEY M R, et al.Selenium in human health and disease[J]. Antioxid redox signal, 2011, 14(7): 1337-1383. [3] GISSEL N G.Effects of selenium supplementation of field crops, in environmental chemistry of selenium[M].New York:Marcel Dekker Inc.,1998. [4] 陈松灿, 孙国新, 陈正, 等. 植物硒生理及与重金属交互的研究进展[J]. 植物生理学报, 2014, 1(5): 612-624. [5] BROWN T A, SHRIFT A.Selenium-toxicity and tolerance in higher plants[J]. Biological reviews of the cambridge philosophical society, 1982, 57: 59-84. [6] WU L.Review of 15 years of research on ecotoxicology and remediation of land contaminated by agricultural drainage sediment rich in selenium[J]. Ecotoxicology and environmental safety, 2004, 57(3): 257-269. [7] BROADLEY M R, WHITE P J, BRYSON R J, et al.Biofortification of UK food crops with selenium[J]. Proceedings of the nutrition society, 2006, 65(2): 169-181. [8] ZHU Y G, PILON-SMITS E A, ZHAO F J, et al. Selenium in higher plants: understanding mechanisms for biofortification and phytoremediation[J]. Trends in plant science, 2009,14(8): 436-442. [9] DHILLON K S, DHILLON S K.Distribution and management of seleniferous soils[J]. Advances in agronomy, 2003, 79(1): 119-184. [10] 杨兰芳. 土壤中的硒[J].湖北民族学院学报(自然科学版), 2000, 18(1): 43-46. [11] 瞿建国,徐伯兴,龚书椿. 连续浸提技术测定土壤和沉积物中硒的形态[J].环境化学, 1997,16(3): 277-283. [12] WHITE P J, BROADLEY M R, BOWEN H C, et al.Selenium and its relationship with sulfur, sulfur in plants-an ecological perspective[A]. HAWKESFORD M J,DE KOK L J. Sulfur in plant an ecological perspective[M]. Germany,Berlin:Springer-verlag, 2007. [13] KIKKERT J, BERKELAAR E.Plant uptake and translocation of inorganic and organic forms of selenium[J]. Archives of environmental contamination & toxicology, 2013, 65(3): 458-465. [14] FORDYCE F M.Selenium deficiency and toxicity in the environment[A]. SELINOS O. Essentials of medical geology(revised edition)[M]. Germany,Berlin:Springer-verlag,2013. [15] 王晋民, 赵之重, 李国荣. 硒对胡萝卜含硒量、产量及品质的影响[J].植物营养与肥料学报, 2006, 12(2): 240-244. [16] LYONS G H, GENC Y, SOOLE K, et al.Selenium increases seed production in [17] NAVARRO A M, CABRERA V A.Selenium in food and the human body: A review[J]. Science of the total environment, 2008, 400(1-3): 115-141. [18] NG B H, ANDERSON J W.Anderson, light-dependent incorporation of selenite and sulphite into selenocysteine and cysteine by isolated pea chloroplasts[J]. Phytochemistry, 1979, 18(4): 573-580. [19] ZAYED A M, TERRY N.Selenium volatilization in broccoli as influenced by sulfate supply[J]. Journal of plant physiology,1992,140(6): 646-652. [20] GIGOLASHVILI T, KOPRIVA S.Transporters in plant sulfur metabolism[J]. Frontiers in plant science, 2014, 5: 442. [21] SHINMACHI F, BUCHNER P, STROUD J L, et al.Influence of sulfur deficiency on the expression of specific sulfate transporters and the distribution of sulfur, selenium, and molybdenum in wheat[J]. Plant physiology, 2010, 153(1): 327-336. [22] WHITE P J, BOWEN H C, PARMAGURU P, et al.Interactions between selenium and sulphur nutrition in [23] INOSTROZA-BLANCHETEAU C,REYES-DIAZ M,ALBERDI M, et al.Influence of selenite on selenium uptake, differential antioxidant performance and gene expression of sulfate transporters in wheat genotypes[J]. Plant and soil, 2013, 369(1-2): 47-59. [24] CABANNES E, BUCHNER P, BROADLEY M R, et al.A comparison of sulfate and selenium accumulation in relation to the expression of sulfate transporter genes in [25] SHIBAGAKI N, ROSE A, MCDERMOTT J P, et al.Selenate-resistant mutants of [26] HARRIS J, SCHNEBERG K A, PILON-SMITS E A. Sulfur-selenium-molybdenum interactions distinguish selenium hyperaccumulator [27] ARVY M P.Selenate and selenite uptake and translocation in bean plants( [28] LI H F, MCGRATH S P, ZHAO F J.Selenium uptake, translocation and speciation in wheat supplied with selenate or selenite[J]. New phytologist, 2008, 178(1): 92-102. [29] 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(4): 1183-1191. [30] TEGEDER M.Transporters for amino acids in plant cells: Some functions and many unknowns[J]. Current opinion in plant biology, 2012, 15(3): 315-321. [31] TAKAHASHI H, WATANABE T A, SMITH FW, et al.The roles of three functional sulphate transporters involved in uptake and translocation of sulphate in [32] CAREY A M, SCHECKEL K G, LOMBI E, et al.Grain accumulation of selenium species in rice[J]. Environmental science & technology, 2012, 46(10): 5557-5564. [33] MOORE K L, SCHRODER M, LOMBI E, et al.Nano SIMS analysis of arsenic and selenium in cereal grain[J]. New phytologist, 2010, 185(2): 434-445. [34] PILON-SMITS E A, LEDUC D L. Phytoremediation of selenium using transgenic plants[J]. Current opinion in biotechnology, 2009, 20(2): 207-212. [35] PAUL S, DATTA S K, DATTA K. miRNA regulation of nutrient homeostasis in plants[J]. Frontiers in plant science, 2015, 6: 232. [36] BANUELOS G, TERRY N, LEDUC D.Field trial of transgenic Indian mustard plants shows enhanced phytoremediation of selenium-contaminated sediment[J]. Environmental science & technology, 2005, 39(6): 1771-1777. [37] CAI X J, BLOCK E, UDEN P C, et al.Allium chemistry: Identification of selenoamino acids in ordinary and selenium-enriched garlic, onion, and broccoli using gas chromatography with atomic emission detection[J]. Journal of agricultural & food chemistry, 1995, 43(7): 1754-1757. [38] SILVA E G, MATAVELI L R, ARRUDA M A.Speciation analysis of selenium in plankton, Brazil nut and human urine samples by HPLC-ICP-MS[J]. Talanta, 2013, 110(7): 53-57. [39] NEMETH A, GARCIA R, JUAN F, et al.The relationship of selenium tolerance and speciation in [40] GIONFRIDDO E, NACCARATO A, SINDONA G, et al.A reliable solid phase microextraction-gas chromatography-triple quadrupole mass spectrometry method for the assay of selenomethionine and selenomethylselenocysteine in aqueous extracts: Difference between selenized and not-enriched selenium potatoes[J]. Analytica chimica acta, 2012, 747(20): 58-66. [41] FERRI T, COCCIOLI F, LUCA C D, et al.Distribution and speciation of selenium in [42] MATICH A J, MCKENZIE M J, LILL R E, et al.Distribution of selenoglucosinolates and their metabolites in [43] HOEWYK D V.A tale of two toxicities: Malformed selenoproteins and oxidative stress both contribute to selenium stress in plants[J]. Annals of botany, 2013, 112(6): e21015. [44] WANG Y D, WANG X, WONG Y S.Generation of selenium-enriched rice with enhanced grain yield, selenium content and bioavailability through fertilisation with selenite[J]. Food chemistry, 2013, 141(3): 2385-2393. [45] TERRY N.An essential role of s-adenosyl-L-methionine:L-methionine s-methyltransferase in selenium volatilization by plants. Methylation of selenomethionine to selenium-methyl-L-selenium-methionine, the precursor of volatile selenium[J]. Plant physiology, 2002, 130(2): 847-856. [46] FREEMAN J L, TAMAOKI M, STUSHNOFF C, et al.Molecular mechanisms of selenium tolerance and hyperaccumulation in [47] ALFORD É R, LINDBLOM S D, PITTARELLO M, et al.Roles of rhizobial symbionts in selenium hyperaccumulation in [48] THOSAIKHAM W.Evaluation of selenium species in selenium-enriched pakchoi using mixed ion-pair reversed phase HPLC-ICP-MS[J]. Food chemistry, 2014, 145: 736-742. [49] SMRKOLJ P, OSVALD M, OSVALD J, et al.Selenium uptake and species distribution in selenium-enriched bean ( [50] LINDBLOM S D, VALDEZ J R, FAKRA S C, et al.Influence of microbial associations on selenium localization and speciation in roots of [51] DUTILLEUL C, AGNES J, JACQUES B, 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. [52] BYRNE S L, DURANDEAU K, NAGY I, et al.Identification of ABC transporters from [53] OGRA Y, KITAGUCHI T, ISHIWATA K, et al.Identification of selenohomolanthionine in selenium-enriched Japanese pungent radish[J]. Journal of analytical atomic spectrometry, 2007, 22(11): 1390-1396. [54] CAPPA J J, CAPPA P J, MEHDAWI A F, et al.Characterization of selenium and sulfur accumulation across the genus Stanleya (Brassicaceae): A field survey and common-garden experiment[J]. American journal of botany, 2014, 101(5): 830-839. [55] ELMEHDAWI A F, PASCHKE M W, PILON-SMITS E A H. [56] BROWN T A, SHRIFT A.Selenium: Toxicity and tolerance in higher plants[J]. Biological reviews, 1982, 57(1): 59-84. [57] BAUELOS G S, LIN Z Q, ARROYO I, et al.Selenium volatilization in vegetated agricultural drainage sediment from the San Luis Drain, Central California[J]. Chemosphere, 2005, 60(9): 1203-1213. [58] QUINN C F, GALEAS M L, FREEMAN J L, et al.Selenium: Deterrence, toxicity, and adaptation[J]. Integrated environmental assessment & management, 2007, 3(3): 460-462. [59] MEHDAWI A F, QUINN C F, PILON-SMITS E A. Effects of selenium hyperaccumulation on plant-plant interactions: Evidence for elemental allelopathy?[J]. New phytologist, 2011, 191(1): 120-131. [60] ZHANG L, ACKLEY A R, PILON-SMITS E A. Variation in selenium tolerance and accumulation among 19 [61] MATSUZAKI S, DARCHA C.Variation in sulfur and selenium accumulation is controlled by naturally occurring isoforms of the key sulfur assimilation enzyme Adenosine 5’-PHOSPHOSULFATEREDUCTASE2 across the Arabidopsis species range[J]. Plant physiology, 2014, 166(3): 1593-1608. [62] ZHAO F J, SU Y H, DUNHAM S J, et al.Variation in mineral micronutrient concentrations in grain of wheat lines of diverse origin[J]. Journal of cereal science, 2009, 49(2): 290-295. [63] NELSON A G, QUIDEAU S A, BRENDA F, et al.The soil microbial community and grain micronutrient concentration of historical and modern hard red spring wheat cultivars grown organically and conventionally in the black soil zone of the Canadian Prairies[J]. Sustainability, 2011, 3(3): 500-517. [64] NORTON G J, DEACON C M, XIONG L, et al.Genetic mapping of the rice ionome in leaves and grain: Identification of QTLs for 17 elements including arsenic, cadmium, iron and selenium[J]. Plant & soil, 2010, 329(1): 139-153. [65] DIAPARI M, SINDHU A, WARKENTIN T D, et al.Population structure and marker-trait association studies of iron, zinc and selenium concentrations in seed of field pea ( [66] KASTOORI R R, JEDLICKA J, GRAEF G L, et al.Identification of new QTLs for seed mineral, cysteine, and methionine concentrations in soybean ( [67] BANUELOS G, LEDUC D L, PILON-SMITS E A. Transgenic indian mustard overexpressing selenocysteine lyase or selenocysteine methyltransferase exhibit enhanced potential for selenium phytoremediation under field conditions[J]. Environmental science & technology, 2007, 41(2): 599-605. [68] MCKENZIE M J, HUNTER D A, PATHIRANA R, et al.Accumulation of an organic anticancer selenium compound in a transgenic Solanaceous species shows wider applicability of the selenocysteine methyltransferase transgene from selenium hyperaccumulators[J]. Transgenic research, 2009, 18(3): 407-424. [69] GRAHAM R D, WELCH R M, SAUNDERS D A.Nutritious subsistence food systems[J]. Advances in agronomy, 2007, 92:1-74. [70] FARGASOVA A, PASTIEROVA K, SVETKOVA C.Effect of Se-metal pair combinations (Cd, Zn, Cu, Pb) on photosynthetic pigments production and metal accumulation in [71] HE P P, LV X Z, WANG G Y.Effects of Se and Zn supplementation on the antagonism against Pb and Cd in vegetables[J]. Environment international, 2004, 30(2): 167-172. [72] HU Y, DUAN G L, HUANG Y Z, et al.Interactive effects of different inorganic As and Se species on their uptake and translocation by rice ( [73] ZHAO J, GAO Y, LI Y F, et al.Selenium inhibits the phytotoxicity of mercury in garlic ( [74] FENG R, WEI C, TU S, et al.Interactive effects of selenium and arsenic on their uptake by [75] BLUEMLEIN K, KLIMM E, RAAB A, et al.Selenite enhances arsenate toxicity in [76] 陈姗姗,张崇玉,张琴,等.硒与汞在冬小麦苗期的相互作用[J]. 贵州农业科学,2009(1):28-29. [77] FENG R W, WEI C Y.Antioxidative mechanisms on selenium accumulationin [78] 沈燕春. 贵池富硒区伴生重金属及其生物效应研究[D].合肥:安徽农业大学, 2011. [79] 张运强, 毛德玲. 金华富硒区菜地土壤重金属污染程度模糊综合评判[J]. 湖南农业科学, 2012(1): 47-49. [80] 李慧, 魏昌华, 鲍征宇, 等. 恩施富硒茶叶中Se含量与对应土壤中Se及重金属元素As、Cd、U的关系[J]. 地质科技情报, 2011(3): 107-111. [81] GABOS M B, ALLEONI L R, ABREU C A.Background levels of selenium in some selected Brazilian tropical soils[J]. Journal of geochemical exploration, 2014, 145: 35-39. [82] 宋明义, 冯雪外, 周涛发, 等. 浙江典型富硒区硒与重金属的形态分析[J]. 现代地质, 2008(6): 960-965, 979. |
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