Special Thesis & Basic Research

Effects of Cultivation Techniques on Selenium Content in Rice——Based on Literature Analysis

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  • 1College of Life Science and Resources Environmental, Yichun University, Yichun, Jiangxi 336000, China
    2Agriculture and Rural Bureau of Yuanzhou District, Yichun, Jiangxi 336000, China
    3Selenium Agriculture Engineering Technology Research Center, Jiangxi Universities and Colleges, Yichun, Jiangxi 336000, China

Received date: 2022-08-13

  Online published: 2022-11-17

Abstract

The objective of this study is to clarify the effects of cultivation measures on rice Se content in different rice cropping regions. Based on the relevant literatures at home and abroad, this paper quantitatively analyzed the effects of fertilization, irrigation, lime application and other cultivation measures on the selenium content and rice yield, and compared the differences in selenium content among different rice varieties. The results showed that the application of N, P, K fertilizer could promote the accumulation of selenium in rice compared with no fertilizer application. The return of vetch to the field could increase the selenium content of rice, and its increase was significantly positively correlated with the amount of vetch. The effects of other organic fertilizers on the selenium content of rice differs in different studies. Water-saving management such as intermittent irrigation and wet irrigation and application of lime could improve the selenium content of rice. There were significant differences in the ability of different rice varieties to accumulate selenium, and this difference was not affected by soil selenium content. Cultivation measures such as selection of selenium-enriched rice varieties, return of vetch to fields, water-saving irrigation and appropriate application of lime could achieve the synergy of natural selenium enrichment and high yield in rice.

Cite this article

ZOU Pan, LIAO Sha, XIAO Qiang, CHEN Yijie, ZHU Xiangcheng . Effects of Cultivation Techniques on Selenium Content in Rice——Based on Literature Analysis[J]. China Rice, 2022 , 28(6) : 63 -69 . DOI: 10.3969/j.issn.1006-8082.2022.06.013

References

[1] CAO Z H, WANG X C, YAO D H, et al. Selenium geochemistry of paddy soils in Yangtze River Delta[J]. Environment International, 2001, 26: 335-339.
[2] 梁东丽, 彭琴, 崔泽玮, 等. 土壤中硒的形态转化及其对有效性的影响研究进展[J]. 生物技术进展, 2017, 7(5):374-380.
[3] 赵其国, 尹雪斌. 我们的未来农业:功能农业[J]. 山西农业大学学报(自然科学版), 2017, 37(7):457-468.
[4] 罗杰, 温汉辉, 吴丽霞, 等. 自然富硒与人工施硒肥的比较[J]. 中国农学通报, 2011, 27(33):90-97.
[5] 姜超强, 沈嘉, 祖朝龙. 水稻对天然富硒土壤硒的吸收及转运[J]. 应用生态学报, 2015, 26(3):809-816.
[6] 王张民, 袁林喜, 朱元元, 等. 我国富硒农产品与土壤标准研究[J]. 土壤, 2018, 50(6):1080-1 086.
[7] WANG J W, WANG Z H, MAO H, et al. Increasing Se concentration in maize grain with soil- or foliar-applied selenite on the Loess Plateau in China[J]. Field Crops Research, 2013, 150: 83-90.
[8] 刘敏, 张瑞瑞, 郑韵英, 等. 影响作物吸收硒的土肥因素研究进展[J]. 土壤, 2018, 50(6):1100-1 104.
[9] LI J, PENG Q, LIANG D L, et al. Effects of aging on the fraction distribution and bioavailability of Se in three different soils[J]. Chemosphere, 2016, 144: 2 351-2 359.
[10] NAKAMARU Y, ALTANSUVD J. Speciation and bioavailability of selenium and antimony in non-flooded and wetland soils: A review[J]. Chemosphere, 2014, 111: 366-371.
[11] 罗定祥, 冶军, 侯振安, 等. 不同有机物料对土壤硒形态及小麦硒吸收的影响[J]. 新疆农业科学, 2018, 55(2):328-336.
[12] SPANU A, LANGASCO I, VALENTE M. Tuning of the amount of Se in rice (Oryza sativa) grain by varying the nature of the irrigation method: Development of an ICP-MS analytical protocol, validation and application to 26 different rice genotypes[J]. Molecules. 2020, 25: 1 861.
[13] 张丰娥. 不同石灰用量对水稻吸收硒元素的影响[J]. 安徽农学通报, 2021, 27(3):88-91.
[14] 唐红琴, 李忠义, 韦彩会, 等. 紫云英不同还田量下土壤硒释放特征及水稻富硒规律[J]. 西南农业学报, 2020, 33(3):568-574.
[15] 张青, 王煌平, 孔庆波, 等. 干湿交替灌溉对富硒土壤硒形态及水稻硒积累的影响[J]. 水土保持学报, 2018, 32(1):327-331.
[16] 狄雪荣, 管远清, 丁永祯, 等. 不同水分条件下水稻对硒的吸收与转运[J]. 农业环境科学学报, 2019, 38(10):2263-2 269.
[17] 国家质量监督检验检疫总局. GB/T 22499-2008,富硒稻谷[S].
[18] 李家熙. 地球化学元素与人体健康[J]. 贵州地质, 1997, 14(2):188.
[19] 刘勤, 曹志洪. 磷硒交互作用对水稻硒吸收累积的影响[J]. 扬州大学学报(农业与生命科学版), 2003, 24(4):67-70.
[20] 王鹏, 侯振安, 冶军, 等. 磷和不同价态硒对小麦硒吸收转运的影响[J]. 新疆农业科学, 2018, 55(1):33-43.
[21] 沈方科. 土壤理化性质及磷硫水平对水稻吸收累积硒的影响[D]. 南宁: 广西大学, 2017.
[22] HE Z L, YANG X E, ZHU Z X, et al. Effect of phosphate on the sorption, desorption and plant-availability of selenium in soil[J]. Fertilizer Research, 1994, 39: 189-197.
[23] 祝姣姣, 聂兆君, 赵鹏, 等. 磷硒配施对郑麦9023硒吸收及土壤硒形态转化的影响[J]. 麦类作物学报, 2020, 40(6):722-729.
[24] TEIXEIRA L S, PIMENTA T M, BRITO F A, et al. Selenium uptake and grain nutritional quality are affected by nitrogen fertilization in rice (Oryza sativa L)[J]. Plant Cell Reports, 2021, 40: 871-880.
[25] 杨志辉, 苏云辉, 刘子勇, 等. 长期施肥对稻田土壤硒含量形态及分布的影响[J]. 中国农业科学, 2003, 36(2):228-232.
[26] 马迅, 诸旭东, 宗良纲, 等. 不同调控措施对酸性富硒土壤硒有效性及水稻产量性状的影响[J]. 土壤, 2018, 50(2):284-290.
[27] 甄燕红. 中国部分市售稻米Cd、Zn、Se含量及其食用安全评价[D]. 南京: 南京农业大学, 2008.
[28] 张祥明, 王允青, 刘英, 等. 紫云英对水稻硒累积特征和糙米硒含量的影响[J]. 土壤通报, 2008, 39(5):1140-1 144.
[29] DAVIS A M. Selenium accumulation in Astragalus species[J]. Agronomy Journal, 1972, 64(6): 751-754.
[30] 周乾坤, 周守标, 孔娟娟, 等. 施硒对紫云英硒积累和硒形态的影响研究[J]. 水土保持学报, 2014, 28(4):304-309.
[31] 赵决建. 外源硒对紫云英硒含量和产量的影响[J]. 植物营养与肥料学报, 2004, 10(3):334-336.
[32] 吴一群, 林琼, 颜明娟, 等. 施硒对紫云英硒积累及土壤硒状况的影响[J]. 热带作物学报, 2017, 38(1):24-27.
[33] 张祥明, 郭熙盛, 王文军, 等. 水稻土和紫云英含硒量对稻米含硒量的影响[J]. 土壤通报, 2013, 44(4):964-968.
[34] 黄太庆, 江泽普, 廖青, 等. 外源硒与不同物料配施对水稻硒素营养及硒利用率的影响[J]. 土壤, 2019, 51(2):269-278.
[35] 谢振东, 衷存堤, 付政羚, 等. 富硒土壤资源开发利用种植试验研究:早稻富硒种植试验研究初报[J]. 资源调查与环境, 2010, 31(2):144-148.
[36] JIANG Y W, HUANG L X, WANG D M, et al. Effects of plant-derived humic acid organic fertilizer on selenium content of rice in northern Guangxi[J]. Agricultural Biotechnology, 2019, 8(3): 156-158.
[37] QASWAR M, HUANG J, AHMED W, et al. Yield sustainability, soil organic carbon sequestration and nutrients balance under long-term combined application of manure and inorganic fertilizers in acidic paddy soil[J]. Soil and Tillage Research, 2020, 198: 104 569.
[38] 杨旎, 宗良纲, 严佳, 等. 改良剂与生物有机肥配施方式对强酸性高硒茶园土壤硒有效性的影响[J]. 土壤, 2014, 46(6):1069-1 075.
[39] WINKEL L E, VRIENS B, JONES G D, et al. Selenium cycling across soil-plant-atmosphere interfaces: A critical review[J]. Nutrients, 2015, 7: 4 199-4 239.
[40] TOAN D. 有机肥施用对土壤-植物体系中硒生物有效性的影响及其机理[D]. 西安: 西北农林科技大学, 2019.
[41] 周鑫斌, 施卫明, 杨林章. 富硒与非富硒水稻品种对硒的吸收分配的差异及机理[J]. 土壤, 2007, 39(5):731-736.
[42] 王丹. 秸秆还田对土壤硒生物有效性的影响及作用机制[D]. 西安: 西北农林科技大学, 2019.
[43] 蒙全. 贵港市富硒水稻栽培技术研究[J]. 现代农业科技, 2016(3):36-40.
[44] 王晓芳, 陈思阳, 罗章, 等. 植物对硒的吸收转运和形态转化机制[J]. 农业资源与环境学报, 2014, 31(6):539-544.
[45] 刘鹏, 杨志辉, 葛旦之, 等. 淹水条件下土壤硒迁移行为的研究:Ⅰ. 还原淋溶作用下土壤硒的溶液迁移[J]. 湖南农业大学学报(自然科学版), 2000, 26(1):1-4.
[46] ZHOU X B, LI Y Y, LAI F. Effects of different water management on absorption and accumulation of selenium in rice[J]. Saudi Journal of Biological Sciences, 2018, 25: 1 178-1 182.
[47] LI H F, LOMBI E, STROUD J L, et al. Selenium speciation in soil and rice: Influence of water management and Se fertilization[J]. Journal of Agricultural and Food Chemistry, 2010, 58(22): 11 837-11 843.
[48] 李金峰, 聂兆君, 赵鹏, 等. 土壤-植物系统中硒营养的研究进展[J]. 南方农业学报, 2016, 47(5):649-656.
[49] 莫士力. 增施石灰促进水稻吸收硒试验研究[J]. 农业研究与应用, 2018, 31(2):5-9.
[50] 安梦鱼. 富硒土壤硒形态转化的主要影响因子及对作物吸收的研究[D]. 福州: 福建农林大学, 2017.
[51] 钟松臻, 张木, 张宝军, 等. 硒高/低累积型水稻富硒特征的比较研究[J]. 土壤通报, 2017, 48(4):943-947.
[52] 周鑫斌, 于淑惠, 赖凡. 水稻品种间吸收和转运硒特性差异机制研究[J]. 土壤学报, 2014, 51(3):594-599.
[53] ZHANG L H, SHI W M, WANG X C, et al. Genotypic differences in selenium accumulation in rice seedlings at early growth stage and analysis of dominant factors influencing selenium content in rice seeds[J]. Journal of Plant Nuitrition, 2006, 29: 1 601-1 618.
[54] LIANG Y K, SU Y, ZHU J, et al. Quick selenium accumulation in the selenium-rich rice and its physiological responses in changing selenium environments[J]. BMC Plant Biology, 2019, 19: 559.
[55] 蒋彬. 水稻富硒基因型品种遴选[J]. 陕西师范大学学报(自然科学版), 2002, 30(suppl 1):152-156.
[56] 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.
[57] 耿建梅, 吴露露, 余爱, 等. 海南省富硒杂交水稻品种筛选[J]. 中国农学通报, 2010, 26(22):376-380.
[58] 余守武, 陈合云, 郑学强, 等. 水稻籽粒硒含量的基因型差异及其与产量性状的相关性分析[J]. 核农学报, 2011, 25(5):993-997.
[59] 张标金, 史华新, 魏益华, 等. 高富硒水稻种质资源的筛选初报[J]. 热带农业科学, 2018, 38(2):52-55.
[60] 韦燕燕, 王松, 顾明华, 等. 不同品种稻米中硒、锌、铁含量比较及其膳食摄入量评估[J]. 食品工业, 2020, 41(11):217-220.
[61] 耿建梅, 王文斌, 吴露露, 等. 两个水稻品种富硒特性比较研究[J]. 土壤, 2014, 46(1):66-69.
[62] 郑淑华, 朱凰榕, 李榕, 等. 自然富硒土中Se对不同水稻籽粒吸收Cd的影响[J]. 环境保护科学, 2014, 40(5):74-76.
[63] 杜前进, 张永发, 唐树梅, 等. 水稻不同品种在海南富硒土壤中硒的吸收和分配机理[J]. 中国土壤与肥料, 2009(6):37-40.
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