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镉在水稻植株中的吸收和转移受灌浆期较低的空气温度影响。

Cadmium absorption and translocation in rice plants are influenced by lower air temperatures during grain filling stage.

机构信息

College of Agronomy, Hunan Agricultural University, Changsha, Hunan 410128, China.

College of Agronomy, Hunan Agricultural University, Changsha, Hunan 410128, China.

出版信息

Sci Total Environ. 2024 Dec 1;954:176742. doi: 10.1016/j.scitotenv.2024.176742. Epub 2024 Oct 5.

Abstract

The increasing frequency and severity of low temperatures, and soil cadmium (Cd) pollution threaten food security. However, the interactive effects of Cd exposure and low temperatures on rice yield and quality, as well as the mechanisms of Cd absorption and translocation, remain unclear. In this study, two rice varieties were cultivated in soils with two Cd contamination levels (Cd and Cd) and exposed to control (CT25) or lower temperatures of 20 °C (LT20) and 17 °C (LT17) during grain-filling stage. Results showed significant decreases in seed setting rate and grain weight, reduced head rice yield, and increased chalkiness due to low temperatures, particularly in Cd soils. Compared to CT25, LT17 and LT20 increased Cd concentration by 37.6 % and accumulation by 14.8 % in grains grown in Cd soils. Enhanced root activity and upregulation of OsNramp1 and OsNramp5 under both low-temperatures increased Cd levels in roots. Lower temperatures also decreased phytochelatins (PCs) and increased expression of OsHMA2 and OsCAL1, facilitating Cd transport and raising Cd levels in stems. Furthermore, upregulated OsHMA2, OsLCT1, and OsZIP7 in stems under low-temperatures promoted Cd transport to panicles. Overall, low temperatures during grain filling increased Cd uptake and translocation into rice grains, especially in high Cd contaminated soils, raising health risks. The study highlights the need to address climate change's impact on cadmium hazards in rice.

摘要

低温和土壤镉(Cd)污染的频率和严重程度不断增加,威胁着粮食安全。然而,Cd 暴露和低温对水稻产量和品质的交互影响,以及 Cd 吸收和转运的机制仍不清楚。本研究在两种 Cd 污染水平(Cd 和 Cd)的土壤中种植了两种水稻品种,并在灌浆期分别暴露于对照(CT25)或较低温度 20°C(LT20)和 17°C(LT17)下。结果表明,低温显著降低了结实率和籽粒重,降低了整精米率,增加了垩白度,尤其是在 Cd 土壤中。与 CT25 相比,LT17 和 LT20 在 Cd 土壤中分别使籽粒 Cd 浓度增加了 37.6%,积累量增加了 14.8%。低温下根系活性增强,OsNramp1 和 OsNramp5 的表达上调,导致根系 Cd 含量增加。低温还降低了植物螯合肽(PCs)的含量,增加了 OsHMA2 和 OsCAL1 的表达,促进了 Cd 的转运,使茎中的 Cd 含量升高。此外,低温下 OsHMA2、OsLCT1 和 OsZIP7 在茎中的上调促进了 Cd 向穗部的转运。总的来说,灌浆期的低温增加了 Cd 向水稻籽粒中的吸收和转运,尤其是在高 Cd 污染的土壤中,增加了健康风险。该研究强调了应对气候变化对水稻 Cd 危害影响的必要性。

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