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Qinghui Li

Shandong University · CN
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Area of research
Electrical and Electronic Engineering · Mechanical Engineering
Research interest
Research focused on Camellia sinensis and Arabidopsis thaliana, with related work in Reference genes, Abiotic stress, Arabidopsis. Notable publications include 'Reliable reference genes for normalization of gene expression data in tea plants (Camellia sinensis) exposed to metal stresses', 'Heterologous expression of three Camellia sinensis small heat shock protein genes confers temperature stress tolerance in yeast and Arabidopsis thaliana', and 'Overexpression of a Camellia sinensis DREB transcription factor gene (CsDREB) increases salt and drought tolerance in transgenic Arabidopsis thaliana'.
h-index
citations
307
works
8
NIH funding
primary concept
email

Recent publications

Role of Excessive Mitochondrial Fission in Seawater Immersion Aggravated Hemorrhagic Shock–Induced Cardiac Dysfunction and the Protective Effect of Mitochondrial Division Inhibitor-1
Antioxidants and Redox Signaling 2024cited by 5position: middledoi
Comparative transcriptome analysis to elucidate the enhanced thermotolerance of tea plants (Camellia sinensis) treated with exogenous calcium
Planta 2018cited by 39position: middledoi
Involvement of CsCDPK20 and CsCDPK26 in Regulation of Thermotolerance in Tea Plant (Camellia sinensis)
Plant Molecular Biology Reporter 2018cited by 20position: middledoi
Reliable reference genes for normalization of gene expression data in tea plants (Camellia sinensis) exposed to metal stresses
PLoS ONE 2017cited by 56position: middledoi
Heterologous expression of three Camellia sinensis small heat shock protein genes confers temperature stress tolerance in yeast and Arabidopsis thaliana
Plant Cell Reports 2017cited by 52position: middledoi
Overexpression of a Camellia sinensis DREB transcription factor gene (CsDREB) increases salt and drought tolerance in transgenic Arabidopsis thaliana
Journal of Plant Biology 2017cited by 47position: middledoi
Metal transport protein 8 in Camellia sinensis confers superior manganese tolerance when expressed in yeast and Arabidopsis thaliana
Scientific Reports 2017cited by 44position: firstdoi
The CsHSP17.2 molecular chaperone is essential for thermotolerance in Camellia sinensis
Scientific Reports 2017cited by 44position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Xinghui Li · Nanjing Agricultural University6 papers (2017–2018)Mingle Wang · Nanjing Agricultural University6 papers (2017–2018)Xuan Chen · First Affiliated Hospital of Fujian Medical University5 papers (2017–2018)Zhongwei Zou · National University of Singapore3 papers (2017–2017)Huahong Xin · Nanjing Agricultural University3 papers (2017–2017)Xujun Zhu · Nanjing Agricultural University3 papers (2017–2017)Kang Sun · Nanjing Agricultural University2 papers (2017–2018)Xuyang Zhang · King's College London2 papers (2018–2018) · 1 papers (2024–2024)Qiongqiong Zhou · Nanjing Agricultural University1 papers (2018–2018)Yanli Liu · Tea Research Institute1 papers (2024–2024)Lin Zhou · Nanjing Agricultural University1 papers (2017–2017)Liangming Liu · Shanghai Medical College of Fudan University1 papers (2024–2024)Yu Zhu · Wenzhou Medical University1 papers (2024–2024) · 1 papers (2024–2024)Jing Zhuang · Nantong University1 papers (2017–2017)Wanping Fang · Nanjing Agricultural University1 papers (2017–2017)Xiayuan Wu · Nanjing Tech University1 papers (2017–2017)Tao Li · Hunan University of Traditional Chinese Medicine1 papers (2024–2024)Huan Li · North Carolina State University1 papers (2018–2018)
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