植物病理教研室
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張靜柏
作者:審核:編輯:發布時間:2017-02-22

                             

基本信息


姓名: 張靜柏 出生年月: 1979.9

性别: 碩/博導: 碩導

民族: 開設課程: 植物病害流行學、農業植物病理學

職稱: 副教授 研究方向: 赤黴菌與小麥互作

學位: 農學博士


聯系方式
電子郵件:jingbozhang@mail.hzau.edu.cn


個人簡介

張靜柏,女,1979年生,博士,77779193永利官网教師。1998-2002年就讀于于河北農業大學植物保護專業,2002-2008年就讀于77779193永利官网攻讀植物病理學專業博士學位,20081月獲農學博士學位,畢業留校任教,承擔《農業植物病理學》、《農業植物病理學實驗》、《植物病害流行學》、《園林植物病理學》等課程教學。20176-20186月在美國麻省大學阿默斯特分校進行訪學研究。從事赤黴菌分子生物學、赤黴菌及其毒素特異抗體分離與毒素分析檢測、小麥抗赤黴菌及毒素分子育種等方面研究,主持相關國家自然基金青年科學基金、教育部高等學校博士學科點專項新教師基金、武漢市科技攻關計劃項目各1項,曾作為主要參與者完成國家“973”、“中德國際合作重點項目”多個國家課題,現作為骨幹力量參加國家重大科技專項-轉基因新品種培育1項、國家重點研發計劃項目1項,共計發表研究論文40餘篇(SCI論文30餘篇),授權或申請專利15項,其中國際專利1項。


科研項目

1. 橫向項目,湖北省小麥赤黴病菌毒素檢測及新型抗病資源的開發,項目年限:2018-2020,(主持)

2. 科技部,國家重點研發計劃,湖北麥區小麥化肥農藥增效減施技術集成研究與示範,項目年限:2018-2020,(參加)

3. 科技部,國家重大科技專項,抗赤黴病轉基因小麥新品系培育,項目年限:2016-2020,(參加)

4. 農業部,國家科技重大專項轉基因生物新品種培育項目,高抗赤黴病和毒素轉基因小麥新品種培育,項目年限:2014-2016,(參加)

5. 國家自然科學基金青年科學基金項目,赤黴菌緻病相關基因CR1 的鑒定和功能分析,項目年限:2013-2015,(主持)

6. 武漢市科技局,武漢市科技計劃項目,抗伏馬菌素特異重組抗體的分離及應用,項目年限:2013-2014,(主持)

7. 國家自然科學基金面上項目,抗病抗體識别的赤黴病菌表面抗原基因克隆與功能鑒定,項目年限:2013-2016,(參加)

8. 農業部,轉基因重大專項,抗赤黴病轉基因小麥新品系和新種質創制,項目年限:2011-2015,(參加)

9. 教育部,新教師基金,我國長江中下遊小麥、玉米赤黴菌系統群及産毒性比較研究,項目年限:2009-2012,(主持)



教學研究與教學改革

1. 2016年校級教改項目:《植物病害流行學》教學課件PPT的美化與應用(主持)

2. 2016年校級教改項目:《植物病害流行學》教學課件PPT的美化與應用(參加)

       3. 2014年校級教改項目:《農林高校園藝類作物病蟲害防治課程教學方法的改革及實踐》(參加)




發明專利及獲獎情況

部分發明專利:

1. 廖玉才,何偉傑,李和平,易沭遠,張靜柏,黃濤. 鐮刀菌毒素脫毒路徑相關基因ADHAKR6D1AKR13B2及其應用. 授權日:2020.08.11

2. Liao, Y.-C., Li, H.-P., Zhang, J.-B., Huang, T., Song, X.-S., Cheng, W., Yang, P. Fusarium chitin synthase gene Chs3b and the use thereof. 授權日:2019.07.16

3. 廖玉才,李和平,張靜柏,楊鵬. 一種禾谷鐮刀菌葡聚糖合成酶基因GLS及應用. 授權日:2019.12.13

4. 廖玉才;宮安東;李和平;張靜柏. 防治作物儲藏期黃曲黴菌及毒素的海藻希瓦氏菌及其應用. 授權日:2018.04.10

5. 廖玉才,宮安東,李和平,張靜柏. 一株防治小麥赤黴病的解澱粉芽孢杆菌及其應用. 授權日:2017.08.15

6. 廖玉才,李和平,胡祖權,張靜柏. 抗伏馬菌素B1的單克隆重組抗體H2.授權日:2015.01.28

7. 廖玉才,李和平,胡祖權,張靜柏. 抗伏馬菌素B1的單克隆重組抗體H7. 授權日:2015.01.28

8. 廖玉才,胡祖權,李和平,張靜柏. 鐮刀菌特異單鍊抗體及制備方法和應用.授權日:2014.09.10

9. 廖玉才,王建華,李和平,張靜柏,黃濤. 一種鐮刀菌單端孢黴烯族A類毒素的分子鑒定方法. 授權日:2014.06.18

10. 廖玉才,王建華,李和平,張靜柏,黃濤,瞿波. 玉米赤黴烯酮毒素的分子檢測方法及應用. 授權日:2014.04.02

主要獎勵:

2014年獲得77779193永利官网教學質量三等獎


發表的論文及著作

學術論文

第一作者或通訊作者文章

1. Yang, P., Yi, S.-Y., Nian, J.-N., Yuan, Q.-S., He, W.-J., Zhang, J.-B*., Liao, Y.-C*. Application of double-strand RNAs targeting chitin synthase, glucan synthase, and protein Kinase reduces Fusarium graminearum spreading in wheat. Frontiers in Microbiology, 2021, 12: 660976.

2. He, W.-J., Shi, M.-M., Yang, P., Huang, T., Zhao, Y., Wu, A.-B., Dong, W.-B., Li, H.-P., Zhang, J.-B*., Liao, Y.-C*. A quinone-dependent dehydrogenase and two NADPH-dependent aldo/keto reductases detoxify deoxynivalenol in wheat via epimerization in a Devosia strain. Food Chemistry, 2020, 321: 126703.

3. He, W.-J., Shi, M.-M., Yang, P., Huang, T., Yuan, Q.-S., Yi, S.-Y., Wu, A.-B., Li H.-P., Gao C.-B., Zhang J.-B*., Liao Y.-C*. Novel soil bacterium strain Desulfitobacterium sp. PGC-3-9 detoxifies trichothecene mycotoxins in wheat via de-epoxidation under aerobic and anaerobic conditions. Toxins, 2020, 12(6): 363.

4. Gong, A.-D., Sun, G.-J., Zhao, Z.-Y., Liao, Y.-C., Zhang, J.-B*. Staphylococcus saprophyticus L-38 produces volatile, 3-dimethyl-1,2-epoxybutane with strong inhibitory activity against Aspergillus flavus germination and aflatoxin production. World Mycotoxin Journal, 2020: 13 (2): 247-258.

5. Hu, Z.-Q., Li, H.-P., Liu, J.-L., Xue, S., Gong, A.-D., Zhang, J.-B*., Liao, Y.-C. Production of a phage-displayed mouse scFv antibody against Fumonisin B1 and molecular docking analysis of their interactions. Biotechnology and Bioprocess Engineering, 2016, 21: 134-143.

6. Wang, J.-H. #, Zhang, J.-B.#, Li, H.-P., Gong, A.-D., Liao, Y.-C. Molecular identification, mycotoxin production and comparative pathogenicity of Fusarium temperatum isolated from maize in China . Journal of Phytopathology, 2014, 162: 147-157.(共同第一作者)

7. Zhang, J.-B., Wang, J.-H., Gong, A.-D., Chen, F.-F., Song, B., Li, H.-P., Li, X., Peng, C.-H., Liao Y.-C*. Natural occurrence of Fusarium head blight, mycotoxins, and mycotoxin-producing strains of Fusarium in commercial fields of wheat in Hubei. Plant Pathology, 2013, 62: 92-102.

8. Li, X.#, Zhang, J.-B.#, Song, B., Li, H.-P., Xu, H. Q., Qu, B., Dang, F.-J., Liao, Y.-C*. Resistance to Fusarium head blight and seedling blight in wheat is associated with activation of a cytochrome P450 gene. Phytopathology, 2010, 100:183-191.

9. Li, H.-P. #, Zhang, J.-B.#, Shi, R.-P., Huang, T., Fischer, R., Liao, Y.-C. Engineering Fusarium head blight resistance in wheat by expression of a fusion protein containing a Fusarium-specific antibody and an antifungal peptide. Molecular Plant-Microbe Interaction, 2008, 21:1242-1248.

10. Zhang, J.-B., Li, H.-P., Dang, F.-J., Qu, B., Xu, Y.-B., Zhao, C.-S., Liao, Y.-C. Determination of the trichothecene mycotoxin chemotypes and associated geographical distribution and phylogenetic species of the Fusarium graminearum clade from China. Mycological Research, 2007, 111:967-975.

11. 胡祖權,李和平,劉錦龍,吳平,廖玉才,張靜柏*. 抗伏馬菌素B1單克隆重組抗體的篩選. 基因組學與應用生物學,201534(9)1912-1916

12. 胡祖權,李和平,吳平,廖玉才,張靜柏*. 抗鐮刀菌單鍊抗體在大腸杆菌中可溶性表達條件的研究. 生物技術通報,201531(9)238-243

其他作者英文文章

1. Wang, L., Yan Z., Zhou H.-Y., Fan Y.-Y., Wang C., Zhang, J.-B., Liao, Y.-C., Wu, A.-B. Validation of LC-MS/MS coupled with a chiral column for the determination of 3- or 15-acetyl deoxynivalenol mycotoxins from Fusarium graminearum in wheat. Toxins, 2021, 13(9): 659.

2. Guo, M.-W., Yang, P., Zhang, J.-B., Liu, G., Yuan, Q.-S, He, W.-J., Nian, J.-N., Yi, S.-Y, Huang, T., Liao, Y.-C. Expression of microRNA-like RNA-2 (Fgmil-2) and bioH1 from a single transcript in Fusarium graminearum are inversely correlated to regulate biotin synthesis during vegetative growth and host infection, Molecular Plant Pathology, 2019, 20(11): 1574-1581.

3. Song, X.-S., Xing, S., Li, H.-P., Zhang, J.-B., Qu, B., Jiang, J.-H., Fan, C., Yang, P., Liu, J.-L., Hu, Z.-Q., Xue, S., Liao, Y.-C*. An antibody that confers plant disease resistance targets a membrane-bound glyoxal oxidase in Fusarium. New Phytologist, 2016, 210(3): 997-1010.

4. He, W.-J., Yuan, Q.-S, Zhang, Y.-B., Guo, M.-W., Gong, A,-D., Zhang, J.-B., Wu, A.-B., Huang, T., Qu, B., Li, H.-P., Liao, Y.-C. Aerobic de-Epoxydation of trichothecene mycotoxins by a soil bacterial consortium isolated using in situ soil enrichment. Toxins, 2016, 8, 277.

5. Cheng, W., Song, X.-S., Li, H.-P., Cao, L.-H., Sun, K., Qiu, X.-L., Xu, Y.-B., Yang, P., Huang, T., Zhang, J.-B., Qu, B., Liao, Y.-C. Host-induced gene silencing of an essential chitin synthase gene confers durable resistance to Fusarium head blight and seedling blight in wheat. Plant Biotechnology Journal, 2015, 13, 1335-1345.

6. Cheng, W., Li, H.-P., Zhang, J.-B., Du, H.-J., Wei, Q.-Y., Huang, T., Yang, P., Kong, X.-W., Liao, Y.-C. Tissue-specific and pathogen-inducible expression of a fusion protein containing a Fusarium-specific antibody and a fungal chitinase protects wheat against Fusarium pathogens and mycotoxins. Plant Biotechnology Journal, 2015, 13: 664-674.

7. Gong, A,-D., Li, H.-P., Shen, L., Zhang, J.-B., Wu, A.-B., He, W.-J., Yuan, Q.-S., He, J.-D., Liao, Y.-C. The Shewanella algae strain YM8 produces volatiles with strong inhibition activity against Aspergillus pathogens and aflatoxins. Frontiers in Microbiology, 2015, Oct 6. doi: 10.3389/fmicb.2015.01091.

8. Hu, Z.-Q., Li, H.-P., Wu, P., Li, Y.-B., Zhou, Z.-Q., Zhang, J.-B., Liu, J.-L., Liao, Y.-C*. An affinity improved single-chain antibody from phage display of a library derived from monoclonal antibodies detects fumonisins by immunoassay. Analytica Chimica Acta, 2015, 867: 74-82.

9. Gong, A.-D., Li, H.-P., Yuan, Q.-S., Song, X.-S., Yao, W., He, W.-J., Zhang, J.-B., Liao, Y.-C. Antagonistic mechanism of iturin A and plipastatin A from Bacillus amyloliquefaciens S76-3 from wheat spikes against Fusarium graminearum. PLoS ONE, 2015 Feb 17;10(2): e0116871.

10. Song, X.-S., Li, H.-P., Zhang, J.-B., Song, B., Huang, T., Du, X.-M., Gong, A.-D., Liu, Y.-K., Feng, Y.-N., Agboola, R.S., Liao, Y.-C. Trehalose 6-phosphate phosphatase is required for development, virulence and mycotoxin biosynthesis apart from trehalose biosynthesis in Fusarium graminearum. Fungal Genetics and Biology, 2014, 63: 24-41.

11. Wang, J.-H., Li, H.-P., Zhang, J.-B., Wang, B.-T., Liao, Y.-C. First report of Fusarium maize ear rot caused by Fusarium kyushuense in China . Plant Disease, 2014, 98: 279-280. DOI: 10.1094/PDIS-05-13-0558-PDN.

12. Xue, S., Li, H.-P., Zhang, J.-B., Liu, J.-L., Hu, Z.-Q., Gong, A.-D., Huang, T., Liao, Y.-C. Chicken single-chain antibody fused to alkaline phosphatase detects Aspergillus pathogens and their presence in natural samples by direct sandwich enzyme-linked immunosorbent assay. Analytical Chemistry, 2013, 85, 10992-10999.

13. Song, B., Li, H.-P., Zhang, J.-B., Wang, J.-H., Gong, A.-D., Song, X.-S., Chen T., Liao, Y.-C. Type II myosin gene in Fusarium graminearum is required for septation, development, mycotoxin biosynthesis and pathogenicity. Fungal Genetics and Biology, 2013, 54: 60-70.

14. Hu, Z.-Q., Li, H.-P., Zhang, J.-B., Huang, T., Liu, J.-L., Xue, S., Wu, A.-B., Liao, Y.-C. A phage-displayed chicken single-chain antibody fused to alkaline phosphatase detects Fusarium pathogens and their presence in cereal grains. Analytica Chimica Acta, 2013, 764: 84-92.

15. Gao, C.-S., Kou, X.-J., Li, H.-P., Zhang, J.-B., Saad, A. Sefyan I., Liao, Y.-C. Inverse effects of Arabidopsis NPR1 gene on fusarium seedling blight and fusarium head blight in transgenic wheat. Plant Pathology, 2013, 62: 383-392.

16. Liu, Z.-W., Li, H.-P., Cheng, W., Yang, P., Zhang, J.-B., Gong, A.-D., Feng, Y.-N., Fernando, W. G. D., Liao, Y.-C. Enhanced overall resistance to Fusarium seedling blight and Fusarium head blight in transgenic wheat by co-expression of anti-fungal peptides. European Journal of Plant Pathology, 2012, 134: 721-732.

17. Hu, Z.-Q., Liu, J. L., Li, H.-P., Xing, S., Xue, S., Zhang, J.-B., Wang, J.-H., Nölke, G., Liao, Y.-C. Generation of a highly reactive chicken-derived single-chain variable fragment against Fusarium verticillioides by phage display. International Journal of Molecular Sciences,2012, 13, 7038-7056.

18. Ndoye, M., Zhang, J-B., Wang, J.-H., Gong, A.-D, Qu, B., Li, H.-P., Li, S.-J, Liao, Y.-C. Nivalenol and 15-acetyldeoxynivalenol chemotypes of Fusarium graminearum clade species are prevalent on maize throughout China . Journal of Phytopathology, 2012, 160: 519-524.

19. Wang, J.-H., Zhang, J-B., Chen, F.- F., Li, H.-P., Ndoye M., Liao, Y.-C. A multiplex PCR assay for genetic chemotyping of toxigenic Fusarium graminearum and wheat grains for 3-acetyldeoxynivalenol, 15-acetyldeoxynivalenol and nivalenol mycotoxins. Journal of Food, Agriculture and Environment. 2012, 10: 505-511.

20. Liu, J.-L., Hu, Z.-Q., Xing, S., Xue, S., Li, H.-P., Zhang, J.-B., Liao, Y.-C. Attainment of 15-fold higher affinity of a Fusarium-specific single-chain antibody by directed molecular evolution coupled to phage display. Molecular Biotechnology, 2012, 52: 111-122.

21. Liu, G., Han, Z., Nie, D., Yang, J., Zhao, Z. H., Zhang, J. B., Li, H.P., Liao, Y. C., Song, S., Saeger, S. D., Wu, A. B. Rapid and sensitive quantitation of zearalenone in food and feed by lateral flow immunoassay. Food Control, 2012, 27: 200-205.

22. Han, Z., Zhao, Z.-Y., Song, S.-Q., Liu, G., Shi, J.-X., Zhang, J.-B., Liao, Y.-C., Zhang, D.-B., Saeger, S. D., Wu, A.-B. Establishment of a model isotope dilution LC-MS/MS method revealing kinetics and distribution of co-occurring mycotoxins in rat. Analytical Methods, 2012, 4, 3708–3717.

23. Wang, J.-H., Ndoye, M., Zhang, J.-B., Li, H.-P., Liao, Y.-C. Population structure and genetic diversity of the Fusarium graminearum species complex. Toxins, 2011, 3, 1020-1037.

24. 宮安東,孔憲巍,翟新可,路亞南,文淑婷,張靜柏. 枯草芽胞杆菌WY8-7的溶磷、抑菌及促生長作用. 南京農業大學學報,2019424):697-705

25. 何偉傑,劉易科,朱展望,張靜柏,高春保,廖玉才. 鐮刀菌毒素脫氧雪腐鐮刀菌烯醇脫毒菌及脫毒酶研究進展. 植物病理學報,2019495):577-589

26. 胡祖權,李和平,張靜柏,劉錦龍,廖玉才. 伏馬菌素B1特異單鍊抗體的同源建模及分子對接模拟研究. 免疫學雜志,2015317):618-622


教材與著作

1. 《普通遺傳學實驗》參編,2015,高等教育出版社

2. 《遺傳學》(第三版),參編,2015,科學出版社

3. 《植物生物技術》(第二版),參編,2012,科學出版社


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