首页> 外文期刊>Environmental toxicology and chemistry >Exposure to Copper Oxide Nanoparticles and Arsenic Causes Intergenerational Effects on Rice (Oryza sativa japonica Koshihikari) Seed Germination and Seedling Growth
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Exposure to Copper Oxide Nanoparticles and Arsenic Causes Intergenerational Effects on Rice (Oryza sativa japonica Koshihikari) Seed Germination and Seedling Growth

机译:氧化铜纳米粒子的暴露及其砷的原因对水稻(Oryza sativa japonica EffectsKoshihikari)种子萌发和幼苗生长的代际影响

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Offspring generation (F1) rice (Oryza sativa japonica Koshihikari) seed germination and seedling growth tests were conducted for 18 d to investigate intergenerational effects of arsenic (As) and copper oxide nanoparticles (nCuO), with seeds harvested from a life cycle study exposed to As (0 and 10 mg/kg) and nCuO (0, 0.1, 1.0, 10, 50, and 100 mg/L). Seed germination and seedling growth of F1 plants were influenced by treatments experienced by parent generation (F0) plants (p 0.05). Seeds produced from plants in F0 treatment with nCuO 50 mg/L had the lowest germination percentage and shortest seedling shoot length and root length in F1 control (F1C) and As at 10 mg/kg (F1As) alone treatments (p 0.05). The shoot length and root length were decreased, whereas the number of root branches was increased in F1As treatment compared with F1C (p 0.001). Interaction of As and nCuO also caused differential seed germination and seedling growth at various nCuO concentrations in quasi-F0 treatment (seeds receiving the same exposure as F0 plants; p 0.05). Copper and As uptake in F1C seedlings were not affected by seeds' F0 exposure; this indicated that the transgenerational effects on rice seedling growth were not dependent on total Cu or As uptake in seedlings. The enhanced effects on seedlings from quasi-F0 treatment were influenced by additional exposure to nCuO and As that also interacted to affect Cu and As uptake in seedlings. Environ Toxicol Chem 2019;00:1-10. (c) 2019 SETAC
机译:进行了18 d的后代(F1)水稻(Oryza sativa japonica Koshihikari)种子发芽和幼苗生长测试,以研究砷(As)和氧化铜纳米颗粒(nCuO)的代际效应,并将生命周期研究中收获的种子暴露于As(0和10 mg / kg)和nCuO(0、0.1、1.0、10、50和100 mg / L)。 F1植物的种子发芽和幼苗生长受到亲代(F0)植物经历的处理的影响(p <0.05)。在F1对照(F1C)和单独施用10 mg / kg(F1As)的处理中,用nCuO 50 mg / L进行F0处理的植物产生的种子发芽率最低,幼苗的苗长和根长最短(p <0.05)。与F1C相比,F1A处理的芽长和根长减少,而根分支数增加(p <0.001)。在准F0处理中,As和nCuO的相互作用也导致了在不同nCuO浓度下种子发芽和幼苗生长的差异(种子与F0植物暴露相同; p <0.05)。 F1C幼苗对铜和砷的吸收不受种子暴露于F0的影响。这表明转基因对水稻幼苗生长的影响不依赖于幼苗对总铜或砷的吸收。准F0处理对幼苗的增强效应受到nCuO和As额外接触的影响,而nCuO和As也相互作用影响幼苗对Cu和As的吸收。 Environ Toxicol Chem 2019; 00:1-10。 (c)2019年SETAC

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