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Education and Appointments: 1994.07— Chengdu Institute of Biology Chinese Academy of Sciences Research Interest Plant Breeding,Plant Cell and Molocule Biology Public Services Honors Seleted Publication 1. G. Deng, J. Liang, D. Xu, H. Long, Zh. Pan, M. Yu. The Relationship between Proline Content, the Expression Level of P5CS (Δ1_Pyrroline_5_Carboxylate Synthetase), and Drought Tolerance in Tibetan Hulless Barley (Hordeum vulgare var. nudum). ISSN 1021_4437, Russian Journal of Plant Physiology, 2013, Vol. 60, No. 5, pp. 693–700. 2. JIE ZHANG, HAI LONG, ZHIFEN PAN, JUNJUN LIANG, SHUIYANG YU, GUANGBING DENG*, MAOQUN YU*. Characterization of a genome-specific Gypsy-like retrotransposon sequence and development of a molecular marker specific for Dasypyrum villosum (L.). Journal of Genetics.2013,92(2):103-108(共同通讯作者). 3. Lin Li . Minghui Zheng . Guangbing Deng .Junjun Liang . Haili Zhang . Zhifen Pan .Hai Long . Maoqun Yu. Overexpression of AtHDG11 enhanced drought tolerance in wheat (Triticum aestivum L.). Mol Breeding (2016) 36:23. 4. Qiao Li, Zhifen Pan, Guangbing Deng, Hai Long, Zhongyi Li,Xiaoqing Deng,JunJun Liang, Yawei Tang, Xingquan Zeng, Nyima Tashi, and Maoqun Yu*. 2014. The effect of wide variation of Waxy gene on starch properties in hull-less barley from Qinghai-Tibet Plateau in China. Journal of Agricultural and Food Chemistry,2014, 62 (47), 11369–11385. 5. Shuiyang Yu , Hai Long, Guangbing Deng, Zhifen Pan, Junjun Liang, Maoqun Yu. Localization of the powdery mildew resistance gene Pm07J126 in wheat (Triticum aestivum L.). Euphytica ,2015, 205:691–698. 6. Shuiyang Yu, Hai Long, Guangbing Deng, Zhifen Pan, Junjun Liang,Xingquan Zeng, Yawei Tang , Nyima Tashi, Maoqun Yu. A Single Nucleotide Polymorphism of Nud Converts the Caryopsis Type of Barley (Hordeum Vulgare L.). Plant Mol Biol Rep.2015,DOI 10.1007/s11105-015-0911-9. 7. Weiying Chen, Zimao Liu, Guangbing Deng, Zhifen Pan, Junjun Liang, Xingquan Zeng, Nyima Tashi, Hai Long and Maoqun Yu. Genetic relationship of lodging and lodging components in barley (Hordeum vulgare L.) based on unconditional and conditional QTL analyses. Genetics and molecular research. 2014,Genet. Mol. Res. 13 (1): 1909 - 1925. 8. Liang JJ, Chen X, Deng GB, Pan ZF, Zhang HL, Li Q, Yang KJ, Long H, Yu MQ. Dehydration induced transcriptomic responses in two Tibetan hulless barley (Hordeum vulgare var. nudum) accessions distinguished by drought tolerance. BMC Genomics. 2017, 18:775. 9. D. L. Xu, J. Li, H. Long, G. B. Deng, Z. F. Pan1 and M. Q. Yu1. Isolation and characterization of a candidate gene for resistance to cereal cyst nematode from Aegilops variabilis in China. DOI: 10.5897/AJB12.040 ISSN 1684–5315 2012 Academic Journals 。African Journal of Biotechnology . 2012. 11(40): 9534-9542, 17 May,,Available online at http://www.academicjournals.org/AJB. 10. Junjun Liang,Xin Chen,Huanhuan Zhao,Guangbing Deng,Hai Long,Zhifen Pan,Maoqun Yu. The Impacts of BSMV on Vegetative Growth and Water Status in Hulless Barley (Hordeum vulgare var. nudum). Acta Societatis Botanicorum Poloniae,DOI: 10.5586/asbp.2014.033,Published electronically: 2015-03-22. 11. Lin Li, Minghui Zheng, Hai Long, Guangbing Deng, Atsushi Ishihara, Feng Liu, Junjun Liang, Zhifen Pan, Maoqun Yu. Molecular Cloning and Characterization of Two Genes Encoding Tryptophan Decarboxylase from Aegilops variabilis with Resistance to the Cereal Cyst Nematode (Heterodera avenae) and Root-Knot Nematode (Meloidogyne naasi). Plant Mol Biol Rep. DOI 10.1007/s11105-015-0909-3. 12. Xin Chen, Hai Long, Ping Gao, Guangbing Deng, Zhifen Pan, Junjun Liang, Yawei Tang,Nyima Tashi, Maoqun *. Transcriptome Assembly and Analysis of Tibetan Hulless Barley (Hordeum vulgare L. var. nudum) Developing Grains, with Emphasis on Quality Properties. PLoS One. 2014, 9(5): 2014; 9(5): 1-13. Supported Projects The management or participates in the topic :General Program,the National Key Technologies R & D Program of China,Knowledge Innovation Project of The Chinese Academy of Sciences,West Light Foundation of The Chinese Academy of Sciences et al. 1.National Natural Science Foundation of China, 3177101456, 2018/01-2021/12, 57THY 2.National Key R&D Program of China, 2016YFD0102002, 2016/07-2020/12, 85THY 3.National Key R&D Program of China, 2016YFD0100102, 2016/07-2020/12, 240THY 4.Science and Technology Support Project of Sichuan Province, China, 2016NZ0103, 2016/01-2020/12, 260THY 5.STS Project of Chinese Academy of Sciences, KFJ-STS-ZDTP-024, 2018/01-2019/06, 30THY 6.National Natural Science Foundation of China, 31470097, 2015/01-2018/12, 88THY 7.Strategic Priority Research Program of the Chinese Academy of Sciences, XDA08020205, 2013/08-2017/12, 877THY 8.National Natural Science Foundation of China, 30971903, 2010/01-2013/12, 34THY 9.National S&T Key Project of China on GMO Cultivation for New Varieties, 2009zx08002-010B, 2009/01-2011/12, 355THY 10.National S&T Key Project of China on GMO Cultivation for New Varieties, 2008ZX08009-003, 2008/01-2010/12, 56THY |