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    樊俊, 王瑞, 胡红青, 向必坤, 夏鹏亮, 邓建强. 烟株对Se(VI)和Se(IV)的吸收及叶片硒亚细胞分布[J]. 中国烟草科学, 2016, 37(4): 37-41. DOI: 10.13496/j.issn.1007-5119.2016.04.007
    引用本文: 樊俊, 王瑞, 胡红青, 向必坤, 夏鹏亮, 邓建强. 烟株对Se(VI)和Se(IV)的吸收及叶片硒亚细胞分布[J]. 中国烟草科学, 2016, 37(4): 37-41. DOI: 10.13496/j.issn.1007-5119.2016.04.007
    FAN Jun, WANG Rui, HU Hongqing, XIANG Bikun, XIA Pengliang, DENG Jianqiang. Effect of Selenate and Selenite on Selenium Uptake and Subcellular Distribution in Leaves of Flue-cured Tobacco[J]. CHINESE TOBACCO SCIENCE, 2016, 37(4): 37-41. DOI: 10.13496/j.issn.1007-5119.2016.04.007
    Citation: FAN Jun, WANG Rui, HU Hongqing, XIANG Bikun, XIA Pengliang, DENG Jianqiang. Effect of Selenate and Selenite on Selenium Uptake and Subcellular Distribution in Leaves of Flue-cured Tobacco[J]. CHINESE TOBACCO SCIENCE, 2016, 37(4): 37-41. DOI: 10.13496/j.issn.1007-5119.2016.04.007

    烟株对Se(VI)和Se(IV)的吸收及叶片硒亚细胞分布

    Effect of Selenate and Selenite on Selenium Uptake and Subcellular Distribution in Leaves of Flue-cured Tobacco

    • 摘要: 为了解烟草对不同价态硒的吸收及耐性机制,以水培烟株为材料,研究了不同浓度(0、2、5、10、20 mg/L)Se(VI)和Se(IV)对烟株硒吸收及叶片硒亚细胞分布的影响。结果表明:(1)水培液中加入Se(VI)和Se(IV)处理,低浓度(<2 mg/L)对烟株生长有促进效果,高浓度(>5 mg/L)有抑制作用,且相同硒浓度下表现为Se(IV)毒性大于Se(VI);(2)施硒处理烟株各部位硒含量增加显著,叶片以有机硒为主,无机硒主要以Se(IV)形态存储;(3)烟株叶片和茎秆对Se(VI)的亲和力大于Se(IV),而根系对Se(IV)的亲和力大于Se(VI);(4)烟株叶片吸收的硒主要贮存在细胞质和细胞壁中,其次为线粒体和叶绿体;(5)同等硒用量下,Se(VI)处理叶片总硒及细胞壁、细胞质中硒含量大于Se(IV)处理。综合分析得出,水培条件下,烟株对Se(VI)的吸收能力和耐受性均大于Se(IV),原因为烟株吸收的Se(VI)更易合成含硒氨基酸或蛋白质等积累在细胞质中和被细胞壁固定,进而缓解了硒的毒性。

       

      Abstract: In order to understand the absorption and resistance mechanism of Se on tobacco, a hydroponic experiment was conducted to study the absorption and subcellular distribution of Se in tobacco leaves under different concentrations(0, 2, 5, 10, 20 mg/L)of Se(VI) and Se(IV). The results showed that(1)At low concentrations(<2 mg/L)Se improved the growth of tobacco plant, but it showed obvious inhibitory effects to tobacco plant at high concentrations(>5 mg/L)and the negative effects of Se(IV) were more serious than Se(VI) at the same concentration of Se.(2)The content of Se in different parts of tobacco plant increased significantly with the application of different valences of Se. The Se forms in leaves were mainly organic Se, and Se(IV)was the dominating form of inorganic Se.(3)For leaves and stalks the affinity of selenate was higher than selenite and for roots it was the opposite.(4)Se was mainly stored in the cytoplasm, and then the cell wall, with the mitochondria, chloroplasts had less Se.(5)The Se content of leaves, Se in the cell wall and cytoplasm from the Se(VI) treatment were higher than the Se(IV)treatment, suggesting that plants have better absorption ability and tolerance to Se(VI)than Se(IV). The reasons for this was that Se(VI)was easier to be used in synthesizing proteins or amino acids and be fixed in the cell wall such that the toxicity of Se was alleviated.

       

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