Chengzhen Liang Professor,PhD supervisor
Email: liangchengzhen@caas.cn
Research Area:
Research Area: Cotton Functional Genomics and Genetic Engineering Technology
Publications:
1.Ji G#, Liang C#, Cai Y#, Pan Z, Meng Z, Li Y, Jia Y, Miao Y, Pei X, Gong W, Wang X, Gao Q, Peng Z, Wang L, Sun J, Geng X, Wang P, Chen B, Wang P, Zhu T, He S*, Zhang R*, Du X* (2020) A copy number variant at the HPDA-D12 locus confers compact plant architecture in cotton. New Phytol. 229: 2091-2103. (IF:8.51)
2.Wang Y#, Liang C#, Wu S, Jian G, Zhang X, Zhang H, Tang J, Li J, Jiao G, Li F, Chu C* (2020) Vascular-specific expression of Gastrodia antifungal protein gene significantly enhanced cotton Verticillium wilt resistance. Plant Biotechnol J. 18: 1498-1500. (IF:8.15)
3.Zhang J#, *, Wang X, Suo X, Liu X, Liu B, Yuan M, Wang G, Liang C*, Shi H* (2019) Cellular response of Escherichia coli to photocatalysis: flagellar assembly variation and beyond. ACS Nano.13:2004-2014. (IF:13.71)
4.Liang C#, Sun B#, Meng Z, Meng Z, Wang Y, Sun G, Zhu T, Lu W, Zhang W, Malik W, Lin M*, Zhang R*, and Guo S* (2017). Co-expression of GR79 EPSPS and GAT yields herbicide-resistant cotton with low glyphosate residues. Plant Biotechnol J. 15: 1622-1629. (IF:6.31)
5.Wang Y#, Liang C#, Wu S#, Zhang X#, Tang J, Jian G, Jiao G*, Li F*, Chu C* (2016) Significant improvement of cotton Verticillum Wilt resistance by manipulation the expression of Gastrodia antifungal proteins. Mol Plant. 9:1436-1439. (IF:8.83)
6.Liang C#, Zheng G, Li W, Wang Y, Hu B, Wang H, Wu H, Qian Y, Zhu XG, Tan DX, Chen SY, Chu C* (2015) Melatonin delays leaf senescence and enhances salt stress tolerance in rice. J Pineal Res. 59: 91-101. (IF:9.34)
7.Liang C#, Wang Y#, Zhu Y, Tang J, Hu B, Liu L, Ou S, Wu H, Chu C* (2014) OsNAP connects abscisic acid and leaf senescence by fine-tuning abscisic acid biosynthesis and directly targeting senescence-associated genes in rice. PNAS 111:10013-10018. (IF:9.67)
8.Zhang J#,*, Liu S, Liu B, Wang X, Yao J, Zhai M, Liu B, Liang C*, Shi H* (2021) Highly efficient Ti3+ self-doped TiO2 co-modified with carbon dots and palladium nanocomposites for disinfection of bacterial and fungi. J Hazard Mater. 413:125348. (IF:9.04)
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