Huang Ying-Ying, Fei Ge, Yu Sha-Li, Liu Yi-Fei, Fu Hui-Ling, Liao Qiong, Huang Bai-Fei, Liu Xue-Yang, Xin Jun-Liang, Shen Chuang
Research Center for Environmental Pollution Control Technology, School of Safety and Environmental Engineering, Hunan Institute of Technology, Hengyang 421002, China.
Research Center for Environmental Pollution Control Technology, School of Safety and Environmental Engineering, Hunan Institute of Technology, Hengyang 421002, China.
Ecotoxicol Environ Saf. 2021 Dec 1;225:112776. doi: 10.1016/j.ecoenv.2021.112776. Epub 2021 Sep 17.
Both cadmium (Cd) contamination and boron (B) deficiency in farmland soils pose a threat to the yield and quality of crops in Southern China. The present study investigated the mechanisms by which B reduces Cd accumulation in rice (Oryza sativa) seedlings. Boron supplementation partially restored the decline in shoot and root biomass caused by Cd treatment (26% and 33%, respectively), with no significant difference between the B+Cd and control groups. We also found that B significantly reduced shoot and root Cd concentrations (by 64% and 25%, respectively) but increased Cd concentration (by 43%) and proportion (from 38% to 55%) in root cell walls. Transcriptome analysis and biochemical tests suggested that B supplementation enhanced lignin and pectin biosynthesis, pectin demethylation, and sulfur and glutathione metabolism. Moreover, B decreased the expression of some Cd-induced transporter-related genes (i.e., HMA2, Nramp1, and several ABC genes). These results indicate that B relieved Cd toxicity and reduced Cd accumulation in rice seedlings by restraining Cd uptake and translocation from root to shoot by improving Cd tolerance and chelation ability. These novel findings would benefit further investigations into how B influences Cd uptake, translocation, detoxification, and accumulation in crops.
农田土壤中的镉(Cd)污染和硼(B)缺乏均对中国南方农作物的产量和品质构成威胁。本研究调查了硼降低水稻(Oryza sativa)幼苗中镉积累的机制。补充硼部分恢复了镉处理导致的地上部和根部生物量下降(分别为26%和33%),硼加镉组与对照组之间无显著差异。我们还发现,硼显著降低了地上部和根部的镉浓度(分别降低64%和25%),但增加了根细胞壁中的镉浓度(增加43%)和比例(从38%增至55%)。转录组分析和生化测试表明,补充硼增强了木质素和果胶生物合成、果胶去甲基化以及硫和谷胱甘肽代谢。此外,硼降低了一些镉诱导的转运蛋白相关基因(即HMA2、Nramp1和几个ABC基因)的表达。这些结果表明,硼通过提高镉耐受性和螯合能力来抑制镉从根到地上部的吸收和转运,从而缓解镉毒性并减少水稻幼苗中的镉积累。这些新发现将有助于进一步研究硼如何影响作物中镉的吸收、转运、解毒和积累。