Chen Jiefei, Hao Shangyan, Bañuelos Gary, Zhou Xinbin
College of Resources and Environment, Southwest University, Chongqing, China.
Institute of Soil Science, Chinese Academy of Sciences, Nanjing, China.
Front Plant Sci. 2023 Jun 20;14:1199721. doi: 10.3389/fpls.2023.1199721. eCollection 2023.
Mercury (Hg) is a highly toxic heavy metal entering the human body through the food chain after absorption by plant. Exogenous selenium (Se) has been suggested as a potential solution to reduce Hg concentration in plants. However, the literature does not provide a consistent picture of the performance of Se on the accumulation of Hg in plant. To obtain a more conclusive answer on the interactions of Se and Hg, 1,193 data records were collected from 38 publications for this meta-analysis, and we tested the effects of different factors on Hg accumulation by meta-subgroup analysis and meta-regression model. The results highlighted a significant dose-dependent effect of Se/Hg molar ratio on the reduction of Hg concentration in plants, and the optimum condition for inhibiting Hg accumulation in plants is at a Se/Hg ratio of 1-3. Exogenous Se significantly reduced Hg concentrations in the overall plant species, rice grains, and non-rice species by 24.22%, 25.26%, and 28.04%, respectively. Both Se(IV) and Se(VI) significantly reduced Hg accumulation in plants, but Se(VI) had a stronger inhibiting effect than Se(IV). Se significantly decreased the in rice, which indicated that other physiological processes in rice may be involved in restricting uptake from soil to rice grain. Therefore, Se can effectively reduce Hg accumulation in rice grain, which provides a strategy for effectively alleviating the transfer of Hg to the human body through the food chain.
汞(Hg)是一种剧毒重金属,被植物吸收后通过食物链进入人体。外源硒(Se)被认为是降低植物中汞浓度的一种潜在解决方案。然而,文献对于硒在植物汞积累方面的表现并未给出一致的描述。为了获得关于硒与汞相互作用更确凿的答案,我们从38篇出版物中收集了1193条数据记录用于此项荟萃分析,并通过亚组荟萃分析和荟萃回归模型测试了不同因素对汞积累的影响。结果突出显示了硒/汞摩尔比对降低植物中汞浓度具有显著的剂量依赖性效应,抑制植物中汞积累的最佳条件是硒/汞比为1至3。外源硒使总体植物物种、水稻籽粒和非水稻物种中的汞浓度分别显著降低了24.22%、25.26%和28.04%。硒(IV)和硒(VI)均显著降低了植物中的汞积累,但硒(VI)的抑制作用比硒(IV)更强。硒显著降低了水稻中的[此处原文缺失部分内容],这表明水稻中的其他生理过程可能参与限制汞从土壤向水稻籽粒中的吸收。因此,硒可以有效降低水稻籽粒中的汞积累,这为有效缓解汞通过食物链向人体转移提供了一种策略。