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有机硅和矿物硅肥对土壤中镉和铅化学形态的影响及其在水稻中的积累。

Effect of organosilicone and mineral silicon fertilizers on chemical forms of cadmium and lead in soil and their accumulation in rice.

机构信息

Ministry of Education Key Laboratory of Environment Remediation and Ecological Health, College of Environmental & Resource Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang, China.

Ministry of Education Key Laboratory of Environment Remediation and Ecological Health, College of Environmental & Resource Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang, China.

出版信息

Environ Pollut. 2021 Aug 15;283:117107. doi: 10.1016/j.envpol.2021.117107. Epub 2021 Apr 9.

Abstract

Cadmium (Cd) and lead (Pb) pollution in soil and their accumulation in edible parts possess a worldwide eco-environmental and health risk, especially in developing countries. Recently, organosilicone fertilizer (OSiF) has been reported to reduce uptake of heavy metals, but the effectiveness has not been verified and its associated mechanisms are not fully understood. This work investigated whether and how OSiF and mineral silicon fertilizer (MSiF) affect mitigation of Cd and Pb stress in rice (Oryza sativa). Both soil incubation and pot experiments were conducted to assess the effect of OSiF and MSiF on bioavailability of Cd and Pb in soil and their accumulation in rice. Additionally, a hydroponic experiment was conducted to study whether Si in rice can alleviate Cd stress. We found that both Si fertilizers could increase soil pH, induce the transformation of the acid soluble and reducible fractions of Cd and Pb to the oxidizable and residual fractions in soil, decreasing their bioavailability and the uptake of Cd and Pb in rice. However, Si in OSiF was not phyto-available, but Si in MSiF was available since available Si in soil and Si in plant increased in MSiF treatments but not in OSiF treatments. Meanwhile, rice grain yields significantly increased and the Cd and Pb content of brown rice reduced in MSiF treatments but not in OSiF treatments. In addition, Si was found to be able to alleviate Cd stress by improving the antioxidant capacity of rice. These results suggested that the decreased Cd and Pb accumulation in OSiF-treated rice was due to Cd and Pb immobilization in soil simply with pH increase, but in MSiF-treated rice Cd and Pb immobilization in soil (ex planta effect) and Si-conferred inhibitory effect of root-to-shoot Cd and Pb transport (in planta effect) contribute to the lower accumulation in rice.

摘要

土壤中的镉(Cd)和铅(Pb)污染及其在可食用部分的积累对全球生态环境和健康构成了风险,尤其是在发展中国家。最近,有机硅肥(OSiF)被报道可以减少重金属的吸收,但效果尚未得到验证,其相关机制也不完全清楚。本研究旨在探讨 OSiF 和矿物硅肥(MSiF)是否以及如何减轻水稻(Oryza sativa)对 Cd 和 Pb 胁迫的影响。通过土壤培养和盆栽试验评估了 OSiF 和 MSiF 对土壤中 Cd 和 Pb 生物有效性及其在水稻中的积累的影响。此外,还进行了水培试验,以研究水稻中的硅是否可以缓解 Cd 胁迫。结果表明,两种硅肥均可提高土壤 pH 值,诱导土壤中酸可溶和可还原态 Cd 和 Pb 向氧化态和残渣态转化,降低其生物有效性和水稻对 Cd 和 Pb 的吸收。然而,OSiF 中的硅没有植物有效性,而 MSiF 中的硅是有效的,因为 MSiF 处理中土壤和植物中的有效硅增加,而 OSiF 处理中则没有增加。同时,MSiF 处理显著增加了水稻的产量,降低了糙米中 Cd 和 Pb 的含量,但 OSiF 处理则没有。此外,发现硅可以通过提高水稻的抗氧化能力来缓解 Cd 胁迫。这些结果表明,OSiF 处理的水稻中 Cd 和 Pb 积累减少是由于 pH 值升高导致土壤中 Cd 和 Pb 固定,但 MSiF 处理的水稻中土壤中 Cd 和 Pb 固定(外生效应)和 Si 赋予根到茎 Cd 和 Pb 运输的抑制作用(内生效应)导致水稻中积累减少。

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