Zhou Yi-Min, Huang Ya-Yuan, Liu Xiao-Yue, Li Bing-Yu, Liu Yu-Yi, Li Zhuo-Qing, Wang Xin-Qi, Lei Ming
College of Resources and Environment, Hunan Agricultural University, Changsha 410128, China.
Aerospace Kaitian Environmental Technology Co., Ltd., Changsha 410100, China.
Huan Jing Ke Xue. 2021 Feb 8;42(2):932-940. doi: 10.13227/j.hjkx.202006292.
Cadmium (Cd) is easily enriched in rice, resulting in an excessive Cd content in the grain, which seriously threatens human health. Manganese (Mn) is an essential element of plants. In a field experiment on Cd-contaminated acid soils, we investigated the effectiveness and mechanism of Mn in minimizing Cd accumulation in rice via foliar spraying using 0.1%, 0.3%, and 0.5% nano-MnO solutions at an early stage of heading. Compared with a control treatment, foliar spraying effectively reduced the Cd content of rice leaves, husks, and brown rice; increased the Mn content of all rice organs; but had no effect on rice yield. Foliar application of nano-MnO alleviated the plant stress induced by Cd by improving leaf photosynthesis, inhibiting lipid peroxidation, and increasing the content of the oxidative stress protein kinase. In addition, foliar application of nano-MnO limited the absorption of Cd by roots by increasing the content of iron-manganese plaque on the surfaces of rice roots and strengthening its adsorption/co-precipitation of Cd. Therefore, foliar application of nano-MnO during the early stages of rice heading is an effective measure to increase the Mn content and reduce the Cd content of brown rice.
镉(Cd)易在水稻中富集,导致籽粒中镉含量超标,严重威胁人类健康。锰(Mn)是植物的必需元素。在镉污染酸性土壤的田间试验中,我们在抽穗初期通过叶面喷施0.1%、0.3%和0.5%的纳米MnO溶液,研究了锰减少水稻镉积累的效果及机制。与对照处理相比,叶面喷施有效降低了水稻叶片、稻壳和糙米中的镉含量;提高了所有水稻器官中的锰含量;但对水稻产量没有影响。叶面喷施纳米MnO通过改善叶片光合作用、抑制脂质过氧化和增加氧化应激蛋白激酶含量,缓解了镉诱导的植物胁迫。此外,叶面喷施纳米MnO通过增加水稻根表面铁锰胶膜的含量并强化其对镉的吸附/共沉淀作用,限制了根系对镉的吸收。因此,在水稻抽穗初期叶面喷施纳米MnO是提高糙米锰含量和降低镉含量的有效措施。