安婷婷,女,中共党员,讲师(内聘副教授),硕士生导师,1989.12月生,河南濮阳人。在太阳城平台(中国)官方网站 土壤与植物营养教研室,讲授《土壤肥料学》课程。主要围绕作物生理生态研究,当前主要研究方向是不同根系特性作物对重金属吸收、转运和积累机制;氮和硅调控作物镉胁迫生理生化机制研究。主持河南省科技攻关项目1项、参与国家自然科学基金项目1项。先后以第一作者在Plant and Soil,Plant Physiology and Biochemistry,Environmental and Experimental Botany,Ecotoxicology and Environmental Safety和《植物学报》国内外期刊上发表研究论文5篇。
工作经历
2024年7月-现在在太阳城平台(中国)官方网站 工作
研究方向
作物生理生态
课题及项目
1. 河南省科技攻关项目,氮和硅交互作用缓解玉米镉胁迫的机制及应用(项目编号:252102320202)2025.01-2026.12,主持;
2. 国家自然科学基金面上项目,玉米根系性状和丛枝菌根真菌对镉胁迫的响应及其解毒机制(项目编号:42077055)2021.01-2024.12,参与。
发表论文
1.An Tingting, Wu Yujie, Xu Bingcheng, Zhang Suiqi, Deng Xiping, Zhang Yi*, Siddique Kadambot HM, Chen Yinglong*. 2021. Nitrogen supply improved plant growth and Cd translocation in maize at the silking and physiological maturity under moderate Cd stress. Ecotoxicology and Environmental Safety, 230: 113137.
2.An Tingting, Gao Yamin, Kuang Qiqiang, Wu Yujie, Zaman Qamar uz, Zhang Yi, Xu Bingcheng, Chen Yinglong*. 2022. Effect of silicon on morpho-physiological attributes, yield and cadmium accumulation in two maize genotypes with contrasting root system size and health risk assessment. Plant and Soil, 477: 117–134.
3.An Tingting, Kuang Qiqiang, Wu Yujie, Gao Yamin, Zhang Yi, Mickan Bede S., Xu Bingcheng, Zhang Suiqi, Deng Xiping, Yu Min, Chen Yinglong*. 2023. Variability in cadmium stress tolerance among four maize genotypes: Impacts on plant physiology, root morphology, and chloroplast microstructure. Plant Physiology and Biochemistry, 205: 108135.
4.An Tingting, Gao Yamin, Kuang Qiqiang, Liu Shuo, Chao Yuehui, Mickan Bede S., Zhang Yi, Xu Bingcheng, Zhang Suiqi, Yu Min, Chen Yinglong*. 2024. Unveiling Si’s shield: A holistic examination of Cd stress alleviation in maize through physiological and transcriptomic insights. Environmental and Experimental Botany, 219: 105626.
5.安婷婷, 黄帝, 王浩, 张一, 陈应龙*. 2021. 植物响应镉胁迫的生理生化机制研究进展. 植物学报, 56(3): 347–362.
6.Wang Hao, An Tingting, Huang Di, Liu Runjin, Xu Bingcheng, Zhang Suiqi, Deng Xiping, Siddique Kadambot HM, Chen Yinglong*. 2021. Arbuscular mycorrhizal symbioses alleviating salt stress in maize is associated with a decline in root-to-leaf gradient of Na+/K+ ratio. BMC Plant Biology, 21: 457.
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