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叶面喷施锌促进了镉在水稻中从叶片表面向籽粒的分配。

Foliar-applied zinc promotes cadmium allocation from leaf surfaces to grains in rice.

机构信息

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510006, China.

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510006, China; Institute of Facility Agriculture, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China; Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, Sun Yat-sen University, Guangzhou 510006, China.

出版信息

J Environ Sci (China). 2025 May;151:582-593. doi: 10.1016/j.jes.2024.04.033. Epub 2024 Apr 27.

Abstract

The accumulation of Cd by rice poses significant health risks. Foliar fertilization with Zn can reduce grain Cd contents in rice grown in Cd-contaminated soils. However, atmospheric deposition on leaves is another vector of Cd contamination, and it remains unclear how Zn application affects the allocation of such Cd. We conducted an experiment where the flag leaves of rice plants were treated with solutions with various Zn concentrations and a constant Cd concentration. The Cd stable isotope was used to trace the flux of foliar-applied Cd. Higher levels of foliar-applied Zn enhanced Cd efflux and grain allocation. This is attributed to limited sequestration of foliar-applied Cd in the leaf cell symplasm and increased Cd desorption from leaf cell walls when a high Zn concentration occurs in the apoplast. Nonionic Zn oxide nanoparticles mitigated these effects. Additionally, the expressions of OsLCT1 and OsZIP7 in flag leaves and OsHMA2 and OsZIP7 in the uppermost nodes were upregulated under high-Zn treatment, which may facilitate Cd phloem loading and grain allocation. Caution is advised in using foliar Zn in areas with high atmospheric Cd due to potential grain-contamination risks.

摘要

水稻对镉的积累对健康构成重大风险。叶面喷施锌可以降低在镉污染土壤中生长的水稻的籽粒镉含量。然而,叶片上的大气沉降是镉污染的另一种载体,目前尚不清楚锌的应用如何影响这种镉的分配。我们进行了一项实验,用不同浓度的锌溶液和恒定浓度的镉溶液处理水稻植株的旗叶。镉稳定同位素用于追踪叶面施镉的通量。较高水平的叶面施锌增强了镉的外排和籽粒分配。这归因于叶细胞质体中叶面施镉的有限螯合以及在质外体中高锌浓度时叶细胞壁上镉的解吸增加。非离子氧化锌纳米颗粒减轻了这些影响。此外,高锌处理下旗叶中的 OsLCT1 和 OsZIP7 以及最上部节点中的 OsHMA2 和 OsZIP7 的表达上调,这可能有助于韧皮部装载镉和籽粒分配。由于存在粮食污染的风险,在大气镉含量高的地区使用叶面锌时应谨慎。

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