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BMC Plant Biology|October 28, 2015
DNA microarray revealed and RNAi plants confirmed key genes conferring low Cd accumulation in barley grainsHongyan Sun, Zhong-Hua Chen, Fei Chen, et al.Journal of Plant Physiology|March 26, 2013
Alleviation of chromium toxicity in rice seedlings by applying exogenous glutathioneBoyin Qiu, Fanrong Zeng, Shengguan Cai, et al.Plants (Basel, Switzerland)|March 17, 2025
Utilization of Antagonistic Interactions Between Micronutrients and Cadmium (Cd) to Alleviate Cd Toxicity and Accumulation in CropsMuhammad Shahzad, Ayesha Bibi, Ameer Khan, et al.Scientific Reports|June 29, 2026
Integrating whole-genome bisulfite sequencing and TCGA data reveals methylation patterns associated with the MTHFR 677 C > T VariantGuoping Zhang, Juanjuan Hou, Mingliang Guo, et al.Frontiers in Plant Science|December 5, 2017
Cell-Based Phenotyping Reveals QTL for Membrane Potential Maintenance Associated with Hypoxia and Salinity Stress Tolerance in BarleyMuhammad B Gill, Fanrong Zeng, Lana Shabala, et al.Journal of Experimental Botany|September 30, 2015
HvEXPB7, a novel β-expansin gene revealed by the root hair transcriptome of Tibetan wild barley, improves root hair growth under drought stressXiaoyan He, Jianbin Zeng, Fangbin Cao, et al.Biological Trace Element Research|June 17, 2010
Effects of cadmium, chromium and lead on growth, metal uptake and antioxidative capacity in Typha angustifoliaAlieu Mohamed Bah, Huaxin Dai, Jing Zhao, et al.Journal of Hazardous Materials|July 8, 2022
Exogenous calcium oxide nanoparticles alleviate cadmium toxicity by reducing Cd uptake and enhancing antioxidative capacity in barley seedlingsMuhammad Mudassir Nazir, Muhammad Noman, Temoor Ahmed, et al.Plant Physiology and Biochemistry : PPB|December 13, 2012
Genotypic differences in physiological characteristics in the tolerance to drought and salinity combined stress between Tibetan wild and cultivated barleyImrul Mosaddek Ahmed, Huaxin Dai, Weite Zheng, et al.Plant, Cell & Environment|August 19, 2014
Linking oxygen availability with membrane potential maintenance and K+ retention of barley roots: implications for waterlogging stress toleranceFanrong Zeng, Dennis Konnerup, Lana Shabala, et al.Pageof 145