
刘志华,1976年10月生,女,汉族,党员,研究生,教授,博士研究生导师。
个人简历:
1995.9-1999.7 吉林林学院 林学专业 农学学士,
1999.9-2002.7 东北林业大学林学院 林木遗传育种学科 农学硕士,
2002.9-2006.7 哈尔滨工业大学生命科学院 微生物基因工程实验室 工学博士,
2006.9-2010.5 哈尔滨工业大学市政与环境工程博士后,
2010.6-2019.10 东北林业大学林学院森林保护学科 副教授 硕士生导师,
2018.9-至今 林木遗传育种国家重点实验室(东北林业大学)固定成员,
2018.12-至今 LETOU.COM-乐投(中国) 森林保护学科 教授 博士生导师。
联系方式:
E-Mail: LiuZH789@syau.edu.cn
LZHNEFU@126.com
研究方向:
主要研究内容为生防木霉菌和芽孢杆菌资源的收集与鉴定保护,木霉和芽孢菌剂的研发与应用研究,及木霉菌和芽孢杆菌的生防分子机理。研究方向稳定,收集了木霉和芽孢菌株5000余株,并具备了完备的木霉菌和芽孢杆菌分离鉴定技术;筛选出了抗病,促生,解磷解钾,耐盐碱,改良土壤,提高农产品品质等功能菌株200余株,积累了大量的木霉菌和芽孢杆菌研究数据;木霉菌和芽孢杆菌生防机理深入,木霉转基因技术成熟;木霉及芽孢菌肥发酵制备工艺成熟和田间试验经验丰富。
在植物真菌病害生物防治研究方面,先后参加了国家“863”及“十三五”国家重点研发计划项目等7项。主持木霉研究相关的国家自然科学基金面上及辽宁省攀登学者人才项目等18项,科研经费总计368.0万元。共发表植物真菌病害生物防治研究相关论文50余篇。以第一作者身份发表的SCI论文6篇,通讯作者身份发表的SCI论文16篇。申请及授权国家发明专利10项。出版专著3部。获得黑龙江省自然科学奖一等奖1项,二等奖1项,梁希二等奖一项。担任Microbial Cell Factories(IF3.8),Physiologia Plantarum(IF3.5),European Journal of Plant pathology,Biocotrol Science and Technology,Journal of Basic Microbiology,Biological control等多种SCI期刊审稿人及激光生物学报编委。
组建“沈农林学木霉芽孢菌肥研发团队”,团队成员包括林学院森保学科青年教师2名,园林学院教师1名,河南省周口师范学院教师1名。使团队所有成员形成了以“木霉芽孢菌肥研发”为主要研究方向的研究思路,宽口径,就业形势好,与国家农业减肥减药的“双减”政策和东北黑土保护政策贴合。带领团队成员积极申报各类基金项目,团队成员共获得木霉芽孢研究相关各类基金项目25项,基金项目总经费达到500余万元。
授课内容:
1.分子植物病理学
2.分子植物微生物互作
3.分子生物学
4.生物信息学
5.分子生物学实验
6.森林病虫研究法
人才称号及项目:
获批2020年辽宁省“攀登学者”,辽宁省木霉芽孢资源收集与应用以及功能菌株生防机制研究100.00万元。
科研课题:
1.“bZIP15转录因子调控哈茨木霉抗链格孢菌胁迫的分子机制”辽宁省教育厅,面上项目,2020.7-2023.6,LSNJC202015,主持人,8.00万元;
2.“木霉防治“寒富”苹果病害机理研究”,沈阳农业大学引进人才专项基金项目,2019.1-2021.12,70.00万元,主持人;
3.“棘孢木霉MYB36转录因子抗链格孢菌的分子调控机制”,国家自然科学基金面上项目,编号:31870627,2019.1-2022.12,主持人,直接经费60.00万元;
4.“木霉MYB36转录因子调控基因表达所结合的关键顺式元件及抗逆调控机理”,中央高校基本科研业务专项C类,编号:2572017CA06,2017.01-2019.12,12.00万元,主持人,结题;
5.“天山北坡退化野果林生态保育与健康调控技术”,国家重点研发计划,“十三五”,中科院新疆生态地理研究所,编号:2016YFC0501505。30.00万,参加,木霉防治野苹果病害研究部分,2016.06-2020.12;
6.“设施蔬菜专用木霉菌肥中小规模固态发酵生产工艺研究”,哈尔滨市科技局科技创新人才计划,A类青年后备人才,编号2016RAQXJ087;2016.9-2018.12,5.00万元。主持人。
7.“黑龙江省‘张广才岭—老爷岭山地针阔混交林生态区’木霉资源的收集及多样性分析”,中央高校基本科研业务专项E类预研,编号:2572015EY01,2015.10-2016.9,10.00万元,主持人,结题;
8.“生防菌棘孢木霉Ⅱ型疏水蛋白功能研究”,中央高校基本科研业务专项C类,编号:2572014CA11,2014.3-2017.2 主持人,12.00万元,结题;
9.“林木花卉转基因育种研究”“863”编号:2013AA102701中的“木霉生防相关基因转化杨树培育抗病转基因植株”部分,2013.1-2017.12,主持人,15.00万元;
10. “木霉诱导下杨树ARF转录因子对其生长及抗病的分子调控机制”国家自然科学基金面上项目,编号:31370642,2014.1-2018.12,参加人,75.00万元,结题;
11.“棘孢木霉的刺激植物响应蛋白Epl1诱导杨树系统抗病性机制” 国家自然科学基金面上项目,编号:31170601,2012.1-2015.12,主持人,60.00万元,结题;
12.“棘孢木霉和深绿木霉刺激植物响应蛋白基因Epl1启动子功能研究”,东北林业大学青年拔尖人才支持计划,编号:PYTT-1231-11,4.00万元,2012.1-2014.1,主持人;
13.“棘孢木霉转录组构建及生防机理研究”,黑龙江青年科学基金编号:QC2011C003; 5.00万元;2012.1-2014.12,主持人,结题,黑科基验字[2016]第228号;
14.“棘孢木霉的植物防御响应诱导蛋白Epl1功能研究”,黑龙江省博士后科研启动金,编号:LBH-Q10156,5.00万元,2011.1-2012.12,主持人;
15.“新型重组酶和寡聚糖生物农药研制”,哈尔滨市科技创新人才研究专项资金项目,编号:2011RFQXN051,3.00万元,2011.1-2012.12,主持人,结题;
16.“生防菌棘孢木霉诱导条件下快杨提高系统抗病能力研究”,黑龙江省教育厅科学技术研究项目,编号:12513024,1.00万元,2011.1-2013.12,主持人, 结题;
17.“棘孢木霉刺激植物响应蛋白基因Ta-Epl1功能研究”,中央高校基本科研业务专项B类,编号:DL10BA10,9.00万元,2010.10-2013.10,主持人,结题。
发表论文:
1.Shida Ji, Yibo An, Huifang Zhang, Yucheng Wang and Zhihua Liu* (2021) Trichoderma biofertilizer (mixTroTha) mediates Malus sieversii resistance to Alternaria alternata. BIOLOGICAL CONTROL. 156, 104539.
2.Ruiting Guo, Shida Ji, Zhiying Wang, Huifang Zhang, Yucheng Wang and Zhihua Liu* (2021) Trichoderma asperellum xylanases promote growth and induce resistance in poplar. MICROBIOLOGICAL RESEARCH. 248, 126767.
3.Zeyang Yu, Zhiying Wang, Yuzhou Zhang, Yucheng Wang, Zhihua Liu*. Biocontrol and growth-promoting effect of Trichoderma asperellum TaspHu1 isolate from Juglans mandshurica rhizosphere soil, Microbiological Research, 242 (2021) 126596.
4.Zeyang Yu, Zhiying Wang, Yuzhou Zhang, Yucheng Wang, Zhihua Liu*. Analysis of TabZIP15 transcription factor from Trichoderma asperellum ACCC30536 and its function under pathogenic toxin stress, 2020, Scientific Reports. IF=4.2, 10:15084 | https://doi.org/10.1038/s41598-020-72226-w
5.Chang Zhou, Ruiting Guo, Shida Ji, Haijuan Fan, Jinjie Wang, Yucheng Wang, Zhihua Liu*. Collection of Trichoderma Resource from NEFU and antidisease property of isolated strain T17 to Poplar Fusarium oxysporum. Microbiology Research, 2020, 231: 126371.
6.Bin Liu, Shida Ji, Huifang Zhang, Yucheng Wang, Zhihua Liu*. Isolation of Trichoderma in the rhizosphere soil of Syringa oblata from Harbin and their biocontrol and growth promotion function. Microbiology Research, 2020, 235:126445.
7.Ruiting Guo, Zhiying Wang, Ying Huang, Haijuan Fan, Yucheng Wang, Zhihua Liu*. Biocontrol potential of two Trichoderma asperellum mutants T39 and T45 and their growth promotion function to poplar seedlings. Journal of Forestry Research, 2020, 31(3): 1035-1043. doi:?https://doi.org/10.1007/s11676-018-0797-0.
8.Shida Ji, Zhihua Liu, Bin Liu, Yucheng Wang*. Comparative analysis of biocontrol agent Trichoderma asperellum ACCC30536 transcriptome during its interaction with Populus davidiana × P. alba var. pyramidalis. Microbiology Research, 2019, 227:126294.
9.Huifang Zhang, Shida Ji, Ruiting Guo, Chang Zhou, Yucheng Wang, Haijuan Fan, Zhihua Liu*. Hydrophobin HFBII-4 from Trichoderma asperellum induces antifungal resistance in poplar. Brazilian Journal of Microbiology. 2019(50):603-612,DOI 10.1007/s42770-019-00083-5 (IF=1.8)
10. Wenjing Yu, Gulijimila Mijiti, Ying Huang, Haijuan Fan, Yucheng Wang, Zhihua Liu*. Function analysis of eliciting plant response protein Epl1-Tas of Trichoderma asperellum ACCC30536 Scientific Reports. IF=4.2 (2018) 8:7974 | DOI:10.1038/s41598-018-26328-1.
11. Ruiting Guo, Zhiying Wang, Ying Huang, Haijuan Fan, Zhihua Liu*. Biocontrol potential of salinity or alkalinity tolerant Trichoderma asperellum mutants against three pathogenic fungi under saline or alkaline stress conditions. Brazilian Journal of Microbiology. (IF=1.8) , 49S, 2018, 236-245. https://doi.org/10.1016/j.bjm.2018.02.00.
12. Shida Ji, Zhiying Wang, Jinjie Wang, Haijuan Fan, Yucheng Wang, Zhihua Liu*. Functional analysis of transcription factor gene TasMYB36 from biocontrol species Trichoderma asperellum CBS433.97 Scientific Reports (IF=4.2) 2017: 7(12801): 1-15
13. Huifang Zhang, Na Wang, Yucheng Wang, Jinjie Wang, Hong Zheng, Zhihua Liu*. Subtilisin-like serine protease gene TghSS42 from Trichoderma ghanense ACCC30153 was successfully expressed in Escherichia coli and recombiant protease rTghSS42 exhibited antifungal ability to five phytopathogens. Biocontrol Science 22(3), 145-152, 2017
14. Shida Ji, Zhiying Wang, Haijuan Fan, Rongshu Zhang, Zeyang Yu, Jinjie Wang, Zhihua Liu*. Heterologous expression of the Hsp24 from Trichoderma asperellum improves antifungal ability of Populus transformant Pdpap-Hsp24s to Cytospora chrysosperma and Alternaria alternate. Journal of Plant Research. 2016,129(5): 921-933(IF=1.823)
15. Fuli Zhang*, Zhihua Liu, Gulijimila Mijiti, Yucheng Wang, Haijuan Fan, Zhiying Wang. Functional analysis of the 1-aminocyclopropane-1-carboxylate deaminase gene of the biocontrol fungus Trichoderma asperellum ACCC30536. Canadian Journal of Plant Science, IF=0.919, 2016, 96(2): 265-275
16. Ying Huang, Gulijimila Mijitia, Zhiying Wang, Wenjing Yu, Haijuan Fan, Rongshu Zhang, Zhihua Liu*. Functional analysis of the class II hydrophobin gene HFB2-6 from the biocontrol agent Trichoderma asperellum ACCC30536. Microbiological Research, 171 (2015) 8-20 IF=2.561
17. Fuli Zhang*, Ju Zhang, Long Chen, Xiaoying Shi, Zhihua Liu***, Chengwei Li**. Heterologous expression of ACC deaminase from Trichoderma asperellum improves the growth performance of Arabidopsis thaliana under normal and salt stress conditions, Plant Physiology and Biochemistry 94 (2015) 41-47. IF=2.756.
18. Zhihua Liu, Ying Huang, Rongshu Zhang, Guiping Diao, Haijuan Fan, Zhiying Wang. Chitinase genes LbCHI31 and LbCHI32 from Limonium bicolor were Successfully Expressed in Escherichia coli and Exhibit Recombinant Chitinase Activities. The Scientific World Journal. 2013, doi: 10.1155/2013/648382 (IF=1.73)
19. Haijuan Fan, Zhihua Liu*, Rongshu Zhang, Na Wang, Kai Dou, Gulijimila Mijiti, Guiping Diao, Zhiying Wang*. Functional analysis of subtilisin-like serine protease gene ss from biocontrol Trichoderma harzianum, Journal of Microbiology. 2014, 52(2):129-138. (IF=1.276).
20. Kai Dou, Zhiying Wang*, Rongshu Zhang, Na Wang, Haijuan Fan, Guiping Diao , Zhihua Liu*. Aspartic protease gene Asp55 from Trichoderma asperellum ACCC30536 were successfully expressed in Escherichia coli and exhibit recombinant Aspartic protease activity. Microbiological Research, SCI, IF=1.993, 2014. 169: 915–923 IF=2.561
21. Lin He, Caiqiu Gao, Yucheng Wang, Yingjie Wu and Zhihua Liu*. A Basic Helix-Loop-Helix Gene from Poplar is Regulated by a Basic Leucine-Zipper Protein and is Involved in the ABA-Dependent Signaling Pathway. Plant Mol Biol Rep. (SCI, IF=5.3), 2013, 31(2): 344-351.
22. ZH Liu, Q Yang, S Hu, et al. Cloning and characterization of a novel chitinase gene (chi46) from Chaetomium globosum and identification of its biological activity. Appl Microbiol Biot 2008, 80(2):241-252 (SCI, IF=3.425)
23. ZH Liu, Q Yang, J Ma. A heat shock protein gene (hsp22.4) from Chaetomium globosum confers heat and Na2CO3 tolerance to yeast. Appl Microbiol Biot. 2007, 77:901-908. (SCI, IF=3.425)
24. ZH Liu, XX Yang, DM Sun, et al. Expressed sequence tags-based iden