Physiological and Molecular Response of Arabidopsis thaliana to CuO Nanoparticle (nCuO) Exposure
作者:Mingjing Ke1, Youchao Zhu1, Meng Zhang1, Hailiqieguli Gumai1, Zhenyan Zhang1, Junjie Xu1, Haifeng Qian1,2
1.College of EnvironmentZhejiang University of TechnologyHangzhouPeople’s Republic of China
2.Xinjiang Key Laboratory of Environmental Pollution and BioremediationChinese Academy of SciencesUrumqiPeople’s Republic of China
摘要:The widespread application of copper oxide nanoparticles (nCuO) results in ecological risk when nanoparticles enter the environment. This study clarifies the mechanism of nCuO toxicity in Arabidopsis thaliana seedlings via comparison with copper (Cu) ion bioeffects. Under the same culture conditions, Cu2+ ion exposure exerted a stronger inhibitory effect on plant fresh weight and growth and caused stronger oxidative disruption (measured by malondialdehyde, MDA) than nCuO exposure. The Cu2+ ions also showed a stronger induction effect than did nCuO on the activity of antioxidant enzymes and the transcription of antioxidant-related genes. Dissolved Cu2+ ions contributed a minority of the toxicity of nCuO, implying that nCuO itself showed relative strong phytotoxicity. The work presented here will help increase our understanding of the toxicity of metal nanoparticles in plants.
免責聲明
- 凡本網注明“來源:化工儀器網”的所有作品,均為浙江興旺寶明通網絡有限公司-化工儀器網合法擁有版權或有權使用的作品,未經本網授權不得轉載、摘編或利用其它方式使用上述作品。已經本網授權使用作品的,應在授權范圍內使用,并注明“來源:化工儀器網”。違反上述聲明者,本網將追究其相關法律責任。
- 本網轉載并注明自其他來源(非化工儀器網)的作品,目的在于傳遞更多信息,并不代表本網贊同其觀點和對其真實性負責,不承擔此類作品侵權行為的直接責任及連帶責任。其他媒體、網站或個人從本網轉載時,必須保留本網注明的作品第一來源,并自負版權等法律責任。
- 如涉及作品內容、版權等問題,請在作品發表之日起一周內與本網聯系,否則視為放棄相關權利。