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水稻生长早期阶段银纳米颗粒对生理的阶段特异性影响

Stage-Specific Effects of Silver Nanoparticles on Physiology During the Early Growth Stages of Rice.

作者信息

Pan Ruxue, Zhang Zailin, Li Ya, Zhu Sihong, Anwar Sumera, Huang Jiaquan, Zhang Chuanling, Yin Liyan

机构信息

School of Life and Health Sciences, Hainan Province Key Laboratory of One Health, Collaborative Innovation Center of One Health, Hainan University, Haikou 570228, China.

Department of Botany, Government College Women University Faisalabad, Faisalabad 38000, Pakistan.

出版信息

Plants (Basel). 2024 Dec 9;13(23):3454. doi: 10.3390/plants13233454.

Abstract

Silver nanoparticles (AgNPs), widely utilized nanomaterials, can negatively affect crop growth and development. However, it remains unclear whether crops exhibit similar responses to AgNPs stress at seed germination and seedling stages. In this study, rice seeds and seedlings were exposed to AgNPs, and their growth, photosynthetic efficiency, and antioxidant systems were recorded. demonstrated significant AgNPs accumulation in rice tissues, with notable higher accumulation in seedlings exposed to AgNPs after germination compared to AgNPs exposure during germination. The roots exhibited greater AgNPs accumulation than shoots across both stages. Exposure to AgNPs during the seed germination stage, even at concentrations up to 2 mg/L, did not significantly affect growth, physiological indices, or oxidative stress. In contrast, seedlings exposed to 1 and 2 mg/L AgNPs showed significant reductions in shoot length, biomass, nutrient content, and photosynthetic efficiency. At low AgNPs concentrations, the maximum relative electron transport rate (rETR) was significantly reduced, while the higher concentrations caused pronounced declines in the chlorophyll a fluorescence transient curves (OJIP) compared to the control group. Antioxidant enzyme activities increased in both leaves and roots in a dose-dependent manner, with roots exhibiting significantly higher activity, suggesting that roots are the primary site of AgNPs stress responses. In conclusion, rice responds differently to AgNPs exposure at distinct developmental stages, with the seedling stage being more susceptible to AgNPs-induced stress than the seed germination stage. These findings underscore the importance of considering growth stages when assessing the food safety and environmental risks associated with AgNPs exposure.

摘要

银纳米颗粒(AgNPs)是广泛使用的纳米材料,会对作物的生长发育产生负面影响。然而,目前尚不清楚作物在种子萌发和幼苗阶段对AgNPs胁迫是否表现出类似的反应。在本研究中,将水稻种子和幼苗暴露于AgNPs中,并记录它们的生长、光合效率和抗氧化系统。结果表明,AgNPs在水稻组织中大量积累,与萌发期暴露于AgNPs相比,萌发后暴露于AgNPs的幼苗中积累量显著更高。在两个阶段中,根部的AgNPs积累量均高于地上部分。在种子萌发阶段暴露于AgNPs,即使浓度高达2 mg/L,也不会显著影响生长、生理指标或氧化应激。相比之下,暴露于1和2 mg/L AgNPs的幼苗的地上部分长度、生物量、养分含量和光合效率均显著降低。在低AgNPs浓度下,最大相对电子传递速率(rETR)显著降低,而较高浓度则导致叶绿素a荧光瞬变曲线(OJIP)与对照组相比明显下降。叶片和根部的抗氧化酶活性均呈剂量依赖性增加,根部的活性显著更高,这表明根部是AgNPs胁迫反应的主要部位。总之,水稻在不同发育阶段对AgNPs暴露的反应不同,幼苗期比种子萌发期更容易受到AgNPs诱导的胁迫。这些发现强调了在评估与AgNPs暴露相关的食品安全和环境风险时考虑生长阶段的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2895/11644278/c55d0f01c8ae/plants-13-03454-g001.jpg

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