College of Environmental Science & Engineering, Guilin University of Technology, Guilin, 541004, People's Republic of China.
Ecotoxicology. 2024 Mar;33(2):142-150. doi: 10.1007/s10646-024-02731-5. Epub 2024 Jan 28.
Gallium (Ga) is an emerging chemical pollutant chiefly associated with high-tech industries. Boron (B) alleviates the negative effects of toxic elements on plant growth. Thereby, the effects of B fertilization on Ga toxicity in rice seedlings was studied to clarify the role of iron plaque in the distribution of Ga, Fe, and B in Ga-treated rice seedlings in the presence or absence of B. Gallium exposure significantly reduced the biomass of rice seedlings. Boron deficiency induced a significant change in the distribution of B in Ga-treated rice seedlings compared with "Ga+B" treatments. Accumulation of Ga in roots, dithionite-citrate-bicarbonate (DCB) extracts, and shoots showed a dose-dependent manner from both +B and -B rice seedlings. Boron nutrition levels affect the distribution of Fe in roots, DCB extracts, and shoots, in which DCB-extractable Fe was significantly decreased from "Ga-B" treatments compared with "Ga+B" treatments. Root activity was significantly decreased in both Ga-exposed rice seedlings; however, B-deficient seedlings showed a severe reduction than +B rice seedlings. These results reveal that Fe plaque might be a temporary sink for B accumulation when plants are grown with proper B, wherein the re-utilization of DCB-extractable B stored in Fe plaque is mandatory for plant growth under B deficiency. Correlation analysis revealed that B deficiency decreased the root activity of Ga-exposed rice seedlings by reducing DCB-extractable Fe and increasing DCB-extractable Ga in Fe plaque. This study enhances our understanding of how B nutritional levels affect Ga toxicity in rice plants.
镓(Ga)是一种新兴的化学污染物,主要与高科技产业有关。硼(B)可以减轻有毒元素对植物生长的负面影响。因此,研究了 B 施肥对水稻幼苗中 Ga 毒性的影响,以阐明铁斑在 Ga 处理的水稻幼苗中 Ga、Fe 和 B 分布中的作用,以及在有或没有 B 的情况下。镓暴露显著降低了水稻幼苗的生物量。与“Ga+B”处理相比,硼缺乏会导致 Ga 处理的水稻幼苗中 B 的分布发生显著变化。来自+B 和-B 水稻幼苗的根、二硫代柠檬酸-柠檬酸盐-碳酸氢盐(DCB)提取物和地上部分中 Ga 的积累均表现出剂量依赖性。硼营养水平影响根、DCB 提取物和地上部分中 Fe 的分布,其中与“Ga+B”处理相比,“Ga-B”处理中 DCB 可提取的 Fe 明显减少。根活性在暴露于 Ga 的水稻幼苗中均显著降低;然而,缺硼幼苗比+B 水稻幼苗的降低更为严重。这些结果表明,当植物在适当的 B 条件下生长时,铁斑可能是 B 积累的暂时汇,而从 Fe 斑中重新利用储存的 DCB 可提取 B 对于植物在缺 B 条件下的生长是必需的。相关分析表明,B 缺乏通过降低 DCB 可提取的 Fe 和增加 Fe 斑中 DCB 可提取的 Ga 来降低 Ga 暴露的水稻幼苗的根活性。本研究加深了我们对 B 营养水平如何影响水稻植株中 Ga 毒性的理解。