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分类:导师信息 来源:中国考研网 2015-07-15 相关院校:华中农业大学
联系方式
华中农业大学园艺林学学院蔬菜系,湖北,武汉,430070
联系电话:027-87287382 传真:027-87286939
E-mail:songbotao@mail.hzau.edu.cn
个人学习与工作经历
1998年湖北民族学院园艺专业本科毕业,获农学学士学位;2000年进入华中农业大学园艺林学学院蔬菜学专业从事马铃薯加工品质改良研究,2005年毕业,获蔬菜学博士学位。2007年赴加拿大农业与农业食品部马铃薯研究中心(AAFC-PRC)从事马铃薯加工品质改良资源分析与育种研究,2008年在新西兰作物与食品研究所马铃薯抗低温糖化与育种方面的合作研究。2012年3月—2013年8月在德国赴德国纽伦堡大学和马普分子植物生理研究所进行为期一年半的植物抗寒与代谢组学相关合作研究。
2005年7月-2007年12月,华中农业大学园艺林学学院 讲师;2008年1月至今,华中农业大学园艺林学学院 副教授。主要讲授《园艺植物育种学》、《田间试验与统计分析》、《应用植物分子生物学》等课程。
研究方向
马铃薯分子生物学与遗传育种
研究工作
1.马铃薯加工品质改良分子机制研究、抗低温糖化QTL定位与分子标记开发
2.马铃薯抗寒资源筛选与抗寒形成的分子机制解析
3.马铃薯遗传育种
主要学术兼职
中国作物学会马铃薯专业委员会委员。现为国家蔬菜改良中心华中分中心、园艺植物生物学教育部重点实验室研究人员,湖北省优秀创新团队“马铃薯重要性状功能基因组与遗传改良”团队核心成员。
承担项目情况
1. 农业部948项目:马铃薯抗寒资源与抗寒相关基因高效挖掘技术引进,2014-2015,主持。
2. 国家自然科学基金:糖酵解途径在马铃薯低温糖化过程中的应答及其对低温糖化调控机制研究,2012-2015,主持。
3. 武汉市攻关:彩色菜用马铃薯资源引进鉴定与新品种选育,2011-2013,主持。
4. 湖北省自然科学基金:加工专用型马铃薯种质资源创制与品种选育,2011-2012,主持。
5. 武汉市晨光计划:马铃薯加工品质分子育种体系创新,2010-2011,主持。
6. 国家863计划:优质抗逆马铃薯新种质培育,2009-2011,主持。
7. 国家自然科学基金:马铃薯块茎低温贮藏过程中酸性转化酶活性调控机制及其与低温糖化的关系,2009-2011,主持。
8. 教育部新教师基金:马铃薯14-3-3蛋白基因家族功能研究及其在低温糖化中的作用,2008-2010,主持。
9. 此外,作为主要执行人协助完成了国家自然科学基金项目、国家“863” 计划、农业部948项目、国家支撑计划等项目10余项。
获奖及荣誉
1. 2010武汉市晨光计划获得者;
2. 2011年湖北省农业技术推广先进个人;
3. 马铃薯试管薯高效生产技术及脱毒种薯体系创新,2007年湖北省科学技术发明一等奖(序5)。
成果与专利:
1. 马铃薯新品种“华薯1号”,湖北省农作物品种审定委员会,2014(序1)。
2. 马铃薯新品种“华恩1号”,湖北省农作物品种审定委员会,2012;贵州省农作物品种审定委员会,2009(序3)。
3. α-淀粉酶抑制子SbAAI1基因和蛋白及其应用. 专利号:ZL201210136971.X授权公告日 2014(序1)。
4. 调控马铃薯低温糖化的蛋白和基因及其应用. 专利号:ZL201210077910 授权公告日 2013(序3)。
近期发表的主要论文
1.Ou Y1, Liu X1, Xie C, Zhang H, Lin Y, Li M, Song B*, Liu J*. Genome-wide identification of microRNAs and their targets in cold-stored potato tubers by deep sequencing and degradome analysis. Plant Moleculer Biology Reporter, 2014, DOI: 10.1007/s11105-014- 0771-8
2.Zhang H, Liu J, Hou J, Yao Y, Lin Y, Ou Y, Song B*, Xie C. The potato amylase inhibitor gene, SbAI, regulates the cold-induced sweetening of potato tubers by modulating amylase activity. Plant Biotechnology J, 2014, doi:10.1111/pbi.12221
3.Zhang H1, Hou J1, Liu J, Xie C, Song B*. Amylase analysis in potato starch degradation during cold storage and sprouting. Potato Research, 2014, 57(1):47-58
4.Yang L, Nie B, Liu J, Song B*. A reexamination of the effectiveness of ribavirin on eradication of viruses in potato plantlets in vitro using ELISA and quantitative RT-PCR. American Journal of Potato Research, 2014, 91(3):304-311.
5.Lin Y, Liu J, Liu X, Ou Y, Zhang H, Li M, Song B*, Xie C*. High-throughput screening for interaction partners of invertase and invertase inhibitor in cold-stored potato tuber by the yeast two-hybrid system. Plant Physiology and Biochemistry, 2013, 73:237-244
6.Li M1, Song B1, Zhang Q, Liu X, Lin Y, Ou Y, Zhang H, Liu J*. A synthetic tuber-specific and cold-induced promoter is applicable in controlling potato cold-induced sweetening. Plant Physiology and Biochemistry, 2013, 67: 41 - 47 (1 Equal contribution)
7.Zhang H, Liu X, Liu J, Ou Y, Lin Y, Li M, Song B*, Xie C*. A novel RING finger gene, SbRFP1, increases resistance to cold-induced sweetening of potato tubers. FEBS Letters, 2013, 587:749-755
8.Yao C1, Song B1, Liu J, Wu C, Cheng Q, Li D, Xie C*. Population improvement of resistance to late blight in thetraploid potato: a case study in combination with AFLP marker assisted background selection. Agricultural Sciences in China, 2011, 10 (8): 1177-1187. (1 Equal contribution).
9.Ou Y, Song B, Liu X, Lin Y, Zhang H, Li M, Fang H, Liu J*. Profiling of StvacINV1 expression in relation to acid invertase activity and sugar accumulation in potato cold-stored tubers. Potato Research, 2013, 56:157-165
10.Ou Y, Song B, Liu X, Li M, Lin Y, Zhang H, Zhao X, Liu J*. Promoter regions of potato vacuolar invertase gene in response to sugars and hormones. Plant Physiology and Biochemistry, 2013, 69:9-16
11.Jin H, Liu J, Song B, Xie C. Impact of plant density on the formation of potato mimitubers derived from microtubers and tip-cuttings in plastic houses.Journal of Integrative Agriculture, 2013, 12(6):1008-1017
12.Liu X, Lin Y, Liu J, Song B, Ou Y, Zhang H, Li M, Xie C*. StInvInh2 as an inhibitor of StvacINV1 regulates the cold-induced sweetening of potato tubers by specifically capping vacuolar invertase activity. Plant Biotechnology J., 2013, 11:640–647
13.Liu X, Cheng S, Liu J, Ou Y, Song B, Zhang C, Lin Y, Li Xiu-Qing, Xie C*. The potato protease inhibitor gene, St-Inh, plays roles in the cold-induced sweetening of potato tubers by modulating invertase activity. Postharvest Biology and Technology, 2013, 86:265-271.
14.Chen L, Guo X, Xie C, He L, Cai X, Tian Z, Song B, Liu J*. Nuclear and cytoplasmic genome components of Solanum tuberosum + S. chacoense somatic hybrids and three SSR alleles related to bacterial wilt resistance. Theoretical and Applied Genetics. 2013, 126(7):1861-72
15.Chen X, Song B, Liu J, Yang J, He T, Lin Y, Zhang H, Xie C*. Modulation of gene expression in cold induced sweetening resistant potato species S. berthaultii exposed to low temperature. Molecular Genetics and Genomics. 2012, 287(5): 411-421
16.He T, Song B, Liu J, Chen X, Ou Y, Lin Y, Zhang H, Xie C. A new isoform of thioredoxin h group in potato, SbTRXh1, regulates cold-induced sweetening of potato tubers by adjusting sucrose content. Plant Cell Reports. 2012, 31(8): 1463-1471
17.Li J, L-K Hannele, Tian Z, Liu J, Song B, Landeo J, Portal L, Gastelo M, Frisancho J, Sanchez L, Meijer D, Xie C*, Bonierbale M*. Conditional QTL underlying resistance to late blight in a diploid potato population. Theoretical and Applied Genetics. 2012, 124:1339-1350
18.Liu X, Zhang C, Ou Y, Lin Y, Song B, Xie C, Liu J*, Li Xiu-Qing*. Systematic analysis of potato acid invertase genes reveals a cold-responsive member, StvacINV1, regulates cold-induced sweetening of tubers. Molecular Genetics and Genomics, 2011, 286 (2): 109-118
19.Liu X, Song B, Zhang H, Li XQ, Xie C, Liu J*. Cloning and molecular characterization of putative invertase inhibitor genes and their possible contributions to cold-induced sweetening of potato tubers. Molecular Genetics and Genomics, 2010, 284:147-159.
20.Guo X, Xie C, Cai X, Song B, He L, Liu J*. Meiotic behavior of pollen mother cells in relation to ploidy level of somatic hybrids between Solanum tuberosum and S. chacoense. Plant Cell Reports, 2010, 29 (11): 1277-1285.
21.Ni X, Tian Z, Liu J, Song B, Xie C*. Cloning and molecular characterizing of potato RING finger protein gene StRFP1 and its function in potato broad-spectrum resistance against Phytophthora infestans. Journal of Plant Physiology. 2010, 167: 488-496.
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