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程红梅课题组属于中国农科院生物所农业微生物学研究中心微生物智能设计与合成创新团队,有研究员一名,副研2名,在读博士和硕士研究生14名。
[1]. 大丽轮枝菌PKS3基因指导双环芳香类聚酮的合成机制,国家自然科学基金面上项目,32072376,2021-2024,58万元,主持人
[2]. 棉花黄萎病菌中硫氨素转运蛋白及其在硫氨素代谢途径的调控机制,国家自然科学基金面上项目,31772244,2018-2021,60万元,主持人
[3]. 新型防治作物黄萎病生防制剂的研制,公益性行业(农业)科研专项,201503109,2015-2019,190万元,子课题主持人
[4]. 紫茎泽兰肉桂酸四羟化酶基因及其在酚类代谢途径的调控机理,国家自然科学基金面上项目,31372004,2014-2017,80万元,主持人
[5]. 紫茎泽兰苯丙氨酸解氨酶基因对羟基泽兰酮分泌的调控机理,国家自然科学基金面上项目,31171905,2012-2015,66万元,主持人
[6]. 紫茎泽兰F3'H基因的功能分析,国家自然科学基金面上项目,30771422,2008-2010,30万元,主持人
主持国家自然基金5项;主持和合作主持国家转基因植物研究与产业化项目2项;863计划研究课题任务1项;参加973项目2项。
1、 文章
(1) Chen,W., Lu, G., Cheng, H., Liu, C., Xiao, Y., Xu, C., Shen, Z., Soberon, M., Bravo,A. and Wu, K., 2017a. Transgenic cotton co-expressing chimeric Vip3AcAa andCry1Ac confers effective protection against Cry1Ac-resistant cotton bollworm.Transgenic Research 26, 763-774.
(2) Chen,W., Lu, G., Cheng, H., Liu, C., Xiao, Y., Xu, C., Shen, Z. and Wu, K., 2017b.Transgenic cotton coexpressing Vip3A and Cry1Ac has a broad insecticidalspectrum against lepidopteran pests. Journal of Invertebrate Pathology 149,59-65.
(3) Hao,Y., Lu, G., Wang, L., Wang, C., Guo, H., Li, Y. and Cheng, H., 2018.Overexpression of AmDUF1517 enhanced tolerance to salinity, drought, and coldstress in transgenic cotton. Journal of Integrative Agriculture 17,60345-60357.
(4) Li,X., Su, X., Lu, G., Sun, G., Zhang, Z., Guo, H., Guo, N. and Cheng, H., 2019.VdOGDH is involved in energy metabolism and required for virulence ofVerticillium dahliae. Current Genetics 66, 345-359.
(5) Qi,X., Li, X., Guo, H., Guo, N. and Cheng, H., 2018. VdPLP, a patatin-likephospholipase in Verticillium dahliae, is involved in cell wall integrity andrequired for pathogenicity. Genes 9, 162-178.
(6) Qi,X., Su, X., Guo, H., Qi, J. and Cheng, H., 2016. VdThit, a thiamine transportprotein, is required for pathogenicity of the vascular pathogen Verticilliumdahliae. Molecular Plant-Microbe Interactions 29, 545-559.
(7) Rehman,L., Su, X., Guo, H., Qi, X. and Cheng, H., 2016. Protoplast transformation as apotential platform for exploring gene function in Verticillium dahliae. BMCBiotechnology 16, 57-65.
(8) Rehman,L., Su, X., Li, X., Qi, X., Guo, H. and Cheng, H., 2018. FreB is involved inthe ferric metabolism and multiple pathogenicity-related traits of Verticilliumdahliae. Current Genetics 64, 645-659.
(9) Su,X., Lu, G., Guo, H., Zhang, K., Li, X. and Cheng, H., 2018a. The dynamictranscriptome and metabolomics profiling in Verticillium dahliae inoculatedArabidopsis thaliana. Scientific Reports 8, 15404-15414.
(10) Su,X., Lu, G., Li, X., Rehman, L., Liu, W., Sun, G., Guo, H., Wang, G. and Cheng,H., 2020. Host-induced gene silencing of an adenylate kinase gene involved infungal energy metabolism improves plant resistance to Verticillium dahliae.Biomolecules 10, 127-142.
(11) Su,X., Lu, G., Rehman, L., Li, X., Sun, L., Guo, H. and Cheng, H., 2018b.mCherry-labeled Verticillium dahliae could be utilized to investigate itspathogenicity process in Nicotiana benthamiana. Genes 9, 508-520.
(12) Su,X., Rehman, L., Guo, H., Li, X. and Cheng, H., 2018c. The oligosaccharyltransferase subunit STT3 mediates fungal development and is required forvirulence in Verticillium dahliae. Current Genetics 64, 235-246.
(13) Su,X., Rehman, L., Guo, H., Li, X., Zhang, R. and Cheng, H., 2017. AAC as apotential target gene to control Verticillium dahliae. Genes 8, 25-41.
(14) Wang,C., Lu, G., Hao, Y., Guo, H., Guo, Y., Zhao, J. and Cheng, H., 2017. ABP9, amaize bZIP transcription factor, enhances tolerance to salt and drought intransgenic cotton. Planta 246, 453-469.
(15) Zhang,L., Lu, G., Huang, X., Guo, H., Su, X., Han, L., Zhang, Y., Qi, Z., Xiao, Y.and Cheng, H., 2019a. Overexpression of the caryophyllene synthase gene GhTPS1in cotton negatively affects multiple pests while attracts parasitoids. PestManagement Science 76, 1722-1730.
(16) Zhou,L., Hao, Y., Lu, G., Wang, P., Guo, H. and Cheng, H., 2020. Cloning andfunctional analysis of AmDUF1517 promoter from Ammopiptanthus mongolicus.Journal of Bioscience and Bioengineering 130, 233-238.
(17) 陆国清,王春玲,郝宇琼,郭惠明,黄英金and 程红梅,2018a. 转G10eve基因高抗草甘膦棉花的农艺性状分析.核农学报32, 274-282.
(18) 陆国清,王春玲,郝宇琼,郭惠明,黄英金and 程红梅,2018b. 转G10eve基因棉花的获得及草甘膦抗性初探.棉花学报30, 21-28.
2、 专利
(1) 苏晓峰,齐希梁,程红梅,郭惠明.(2016.08.31). 大丽轮枝菌寡糖基转移酶靶基因片段及其干扰载体和应用.国家发明专利:ZL201510792533.2.
(2) 苏晓峰,齐希梁,郭惠明,程红梅.(2016.08.31). 大丽轮枝菌ADP-ATP 载体蛋白病程关键靶基因及其干扰载体和应用.国家发明专利:ZL201510557932.0.
(3) 苏晓峰,齐希梁,郭惠明,程红梅.(2016.09.07). 大丽轮枝菌腺苷酸激酶靶基因片段及其干扰载体和应用.国家发明专利:ZL201510791947.3.
(4) 郭惠明,齐希梁,程红梅, 苏晓峰.(2017.12.26). 大丽轮枝菌硫胺素转运蛋白病程关键靶基因及其干扰载体和应用.国家发明专利:ZL201510353744.6.
(5) 程红梅,陆国清,郭惠明,郭泽旺.(2018.05.18). 巨尾桉广林29茎尖脱毒及快速增殖方法.国家发明专利:ZL201610045675.7.
(6) 程红梅,齐希梁,苏晓峰,郭惠明.(2018.06.12). 大丽轮枝菌磷脂酶靶基因片段及其干扰载体和应用.国家发明专利:ZL201510794698.3.
(7) 程红梅,齐希梁,郭惠明,苏晓峰.(2018.04.06). 大丽轮枝菌硫胺素转运蛋白基因的敲除突变体菌株及应用.国家发明专利:ZL201510394685.7.
(8) 程红梅,齐希梁,苏晓峰,郭惠明.(2018.12.14). 与抗真菌危害有关的磷脂酶靶基因片段及其在提高植物抗病性中的应用.国家发明专利:ZL201510792509.9.
(9) 苏晓峰,郭惠明,程红梅.(2020.09.04). 大丽轮枝菌VdEG抗病原菌靶基因片段及其干扰载体和应用.国家发明专利:ZL202010534157.8.
(10) 郭惠明,刘云涛,陆国清,苏晓峰,程红梅.(2020.10.30). CrSMT基因在提高植物对于生物胁迫以及非生物胁迫抗性中的用途.国家发明专利:ZL202010607324.7.
(11) 程红梅,郭惠明,陆国清.(2020.11.03). 一种AmCBF1转录因子及其在植物抗逆方面的应用.国家发明专利:ZL201810431980.9.
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