College of Resources and Environment, Southwest University, Tiansheng Road, 2 Beibei District, Chongqing, 400716, People's Republic of China.
Environ Sci Pollut Res Int. 2019 May;26(14):13755-13761. doi: 10.1007/s11356-018-2690-y. Epub 2018 Jul 14.
The effects of different concentrations of phosphorus (P) on absorption and transfer of selenium (Se) in rice seedlings were studied by hydroponics experiment. The interaction between iron plaque and phosphorus on absorption and transport of selenium were studied by adding a large amount of iron-induced iron plaque, to provide a theoretical basis for rational application of phosphate fertilizer in the selenium bio-strengthening process of rice. The results showed that phosphorus deficiency may result in the formation of reddish brown iron oxide coating on the root surface of rice. The formation of root iron plaque of rice is related to concentration of phosphorus, and low concentration of phosphorus (0-1.5 mmol L) can increase the amount of root iron plaque. Compared P deficiency culture and 2 mmol L P culture, Se content in the shoots and roots decreased by 76 and 47%, respectively. Addition of Fe significantly reduced biomass of shoot and had no significant effect on the roots; when the P concentration increased from 0.1 to 0.3 mmol L, transfer coefficient of Se decreased. Therefore, both root iron plaques induced by phosphorus deficiency and iron addition have a strong adsorption effect on selenium, which reduces the transport of selenium from the rice roots to the shoots. In the lower range of phosphorus concentration, low phosphorus can promote selenium content of rice shoot, while higher on the contrary. In the practice of rice production, proper management of phosphorus nutrient is of great significance to control selenium content in rice grain.
采用水培试验研究了不同浓度磷(P)对水稻幼苗硒(Se)吸收和转运的影响。通过添加大量诱导形成的铁帽,研究了铁帽与磷之间对硒吸收和转运的相互作用,为合理施用磷肥在水稻硒生物强化过程中提供了理论依据。结果表明,缺磷可能导致水稻根表面形成红棕色氧化铁涂层。水稻根铁帽的形成与磷浓度有关,低浓度磷(0-1.5 mmol/L)可增加根铁帽的数量。与缺磷培养和 2 mmol/L P 培养相比,水稻地上部和根中的硒含量分别降低了 76%和 47%。添加 Fe 显著降低了地上部的生物量,对根部没有显著影响;当 P 浓度从 0.1 增加到 0.3 mmol/L 时,Se 的转移系数降低。因此,缺磷诱导的根铁帽和铁的添加都对硒具有很强的吸附作用,从而减少了硒从水稻根部向地上部的转运。在磷浓度较低的范围内,低磷可以促进水稻地上部的硒含量,而高磷则相反。在水稻生产实践中,对磷营养的适当管理对控制稻米中硒的含量具有重要意义。