發(fā)明專利:
發(fā)明公開(kāi):
[1]程憲國(guó),王冰,于國(guó)紅,陳紅娜. 一種基于蛋白互作原理的編碼線粒體磷轉(zhuǎn)運(yùn)蛋白基因的篩選方法[P]. 北京市:CN111778238A,2020-10-16.
[2]程憲國(guó),陳紅娜,時(shí)俊美,夏關(guān)雪瑩,張美娟. 一種通過(guò)亞精胺提高羊草種子活力的方法[P]. 北京市:CN110367053A,2019-10-25.
[3]程憲國(guó),楊曙明,馬雪峰,謝國(guó)強(qiáng). 基于稻殼廢棄物的土壤調(diào)理劑的制備方法[P]. 北京:CN102911671A,2013-02-06.
[4]馬有志,陳明,程憲國(guó),李連城,徐兆師,董建輝,金維環(huán). 植物養(yǎng)分高效利用相關(guān)蛋白EdHP1及其編碼基因和應(yīng)用[P]. 北京:CN102311488A,2012-01-11.
[5]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京:CN1796407,2006-07-05.
[6]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京:CN1786028,2006-06-14.
[7]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 一種植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京:CN1786029,2006-06-14.
[8]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種脫水應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京:CN1706948,2005-12-14.
[9]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種植物乙烯應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京:CN1706949,2005-12-14.
[10]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種乙烯應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京:CN1706950,2005-12-14.
[11]陳明,高世慶,馬有志,程憲國(guó),彭向雷. 構(gòu)建串聯(lián)重復(fù)順式作用元件的方法及其專用引物與應(yīng)用[P]. 北京:CN1624148,2005-06-08.
[12]楊曙明,程憲國(guó),宋榮,許雷. 與β-受體激動(dòng)劑類藥物特異結(jié)合的受體蛋白及其編碼基因與應(yīng)用[P]. 北京:CN1504570,2004-06-16.
[13]程憲國(guó),侯玉霞,劉強(qiáng),陳受宜. 調(diào)控大豆抗逆性的轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1477109,2004-02-25.
[14]程憲國(guó),劉強(qiáng),侯玉霞. 來(lái)源于番茄的抗逆性轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1477110,2004-02-25.
[15]劉強(qiáng),程憲國(guó),侯玉霞. 調(diào)控番茄抗逆性的轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1477111,2004-02-25.
[16]侯玉霞,程憲國(guó),劉強(qiáng). 冰植物的乙烯應(yīng)答結(jié)合蛋白轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1475495,2004-02-18.
[17]侯玉霞,程憲國(guó),劉強(qiáng). 大豆乙烯應(yīng)答結(jié)合蛋白轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1475496,2004-02-18.
[18]程憲國(guó),侯玉霞,劉強(qiáng). 調(diào)控陸地棉抗逆性的轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京:CN1475497,2004-02-18.
發(fā)明授權(quán):
[1]程憲國(guó),陳紅娜,時(shí)俊美,夏關(guān)雪瑩,張美娟. 一種通過(guò)亞精胺提高羊草種子活力的方法[P]. 北京市:CN110367053B,2022-02-25.
[2]程憲國(guó),楊曙明,馬雪峰,謝國(guó)強(qiáng). 基于稻殼廢棄物的土壤調(diào)理劑的制備方法[P]. 北京市:CN102911671B,2014-07-30.
[3]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京市:CN1786028B,2010-04-28.
[4]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 一種植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京市:CN100503636C,2009-06-24.
[5]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種脫水應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京市:CN100395336C,2008-06-18.
[6]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種植物乙烯應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京市:CN100395337C,2008-06-18.
[7]馬有志,徐兆師,程憲國(guó),張瑞越,李連城,陳明,邱志剛. 一種乙烯應(yīng)答元件結(jié)合蛋白及其編碼基因[P]. 北京市:CN100395338C,2008-06-18.
[8]陳明,高世慶,馬有志,程憲國(guó),彭向雷. 構(gòu)建串聯(lián)重復(fù)順式作用元件的方法及其專用引物與應(yīng)用[P]. 北京市:CN100387715C,2008-05-14.
[9]陳明,馬有志,李連城,王巧燕,徐兆師,程憲國(guó). 植物脫水應(yīng)答元件結(jié)合蛋白及其編碼基因與應(yīng)用[P]. 北京市:CN100366634C,2008-02-06.
[10]楊曙明,程憲國(guó),宋榮,許雷. 與β-受體激動(dòng)劑類藥物特異結(jié)合的受體蛋白及其編碼基因與應(yīng)用[P]. 北京市:CN1238505C,2006-01-25.
[11]侯玉霞,程憲國(guó),劉強(qiáng). 冰植物的乙烯應(yīng)答結(jié)合蛋白轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京市:CN1216903C,2005-08-31.
[12]侯玉霞,程憲國(guó),劉強(qiáng). 大豆乙烯應(yīng)答結(jié)合蛋白轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京市:CN1216904C,2005-08-31.
[13]程憲國(guó),侯玉霞,劉強(qiáng). 調(diào)控陸地棉抗逆性的轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京市:CN1216905C,2005-08-31.
[14]程憲國(guó),侯玉霞,劉強(qiáng),陳受宜. 調(diào)控大豆抗逆性的轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京市:CN1216906C,2005-08-31.
[15]程憲國(guó),劉強(qiáng),侯玉霞. 來(lái)源于番茄的抗逆性轉(zhuǎn)錄因子及其編碼基因與應(yīng)用[P]. 北京市:CN1216907C,2005-08-31.
實(shí)用新型:
[1]程憲國(guó),于國(guó)紅,姜琳琳. 一種智能型植物生長(zhǎng)箱[P]. 北京:CN204335434U,2015-05-20.
論文專著:
發(fā)表英文論文:
[1]Huang, Shengcai; Xin, Shichao; Xie, Guoqiang; Han, Jiao; Liu, Zhonglai; Wang, Bing; Zhang, Shuqing; Wu, Qingyu; Cheng, Xianguo*.Mutagenesis reveals that the rice OsMPT3 gene is an important osmotic regulatory factor.Crop Journal, 2020, 8(3): 465-479.
[2]Zhou, Yongbin; Li, Yan; Qi, Xueli; Liu, Rongbang; Dong, Jianhui; Jing, Weihuan; Guo, Mengmeng; Si, Qinglin; Xu, Zhaoshi; Li, Liancheng; Wang, Chengshe; Cheng, Xianguo*; Ma, Youzhi*; Chen, Ming*.Overexpression of V-type H+ pyrophosphatase gene EdVP1 from Elymus dahuricus increases yield and potassium uptake of transgenic wheat under low potassium conditions.Scientific Reports, 2020, 10(1): 5020.
[3]Wang, Bing; Xie, Guoqiang; Liu, Zhonglai; He, Rui; Han, Jiao; Huang, Shengcai; Liu, Laihua; Cheng, Xianguo*.Mutagenesis Reveals That the OsPPa6 Gene Is Required for Enhancing the Alkaline Tolerance in Rice.Frontiers in Plant Science, 2019, 10: 759.
[4]Liu Duo; Liu Miao; Liu Xiao Long; Cheng Xian Guo*; Liang Zheng Wei*.Silicon Priming Created an Enhanced Tolerance in Alfalfa (Medicago sativa L.) Seedlings in Response to High Alkaline Stress.Frontiers in Plant Science, 2018, 9: 716.2 9 May 2018, https://doi.org/10.3389/fpls.2018.00716. (SCI)
[5]Wei Li, Xiao-Jing Qiang, Xiao-Ri Han, Lin-Lin Jiang, Shu-Hui Zhang, Jiao Han, Rui He, Cheng Xianguo*. Ectopic Expression of a Thellungiella salsuginea Aquaporin Gene, TsPIP1;1, Increased the Salt Tolerance of Rice. Int. J. Mol. Sci. 2018, 19, 2229; doi:10.3390/ijms19082229. (SCI)
[6]HAN Jiao, YU Guo-hong, WANG Li, LI Wei, HE Rui, WANG Bing, HUANG Sheng-cai, Cheng Xianguo*. A mitochondrial phosphate transporter, McPht gene, confers an acclimation regulation of the transgenic rice to phosphorus deficiency. Journal of Integrative Agriculture . 2018, 17 : 1932-1945. (SCI)
[7]Guo-hong Yu, Sheng-cai Huang, Rui He, Ying-zhang Li, Xian-guo Cheng*.Transgenic rice overexperessing a tomato mitochondrial phosphate transporter, SlMPT3;1, promotes phosphate uptake and increases grain yield. Journal of Plant Biology ,2018, In press. (SCI)
[8]He Rui; Yu Guohong; Han Xiaori; Han Jiao; Li Wei; Wang Bing; Huang Shengcai; Cheng Xianguo*.ThPP1 gene, encodes an inorganic pyrophosphatase in Thellungiella halophila, enhanced the tolerance of the transgenic rice to alkali stress.Plant Cell Reports, 2017, 36(12): 1929-1942.(SCI)
[9]Linlin Jiang, Yingbo Wang, Shuhui Zhang, Rui He,Wei Li, Jiao Han, Cheng Xianguo*.Tomato SlDREB1 gene conferred the transcriptional activation of drought-induced gene and an enhanced tolerance of the transgenic Arabidopsis to drought stress. Plant Growth Regulation ,2017,81:131-145. (SCI)
[10]WANG Li, JIANG Lin-lin, Nomura Mika, Tajima Shigeyuki, CHENG Xian-guo*. Excessive ammonia inhibited transcription of MsU2 gene and furthermore affected accumulation distribution of allantoin and amino acids in alfalfa Medicago sativa. Journal of Integrative Agriculture , 2015, 14 (7): 1269-1282. (SCI)
[11]Linlin Sun, Guohong Yu, Xiaori Han, Shichao Xin, Xiaojing Qiang, Linlin Jiang, Shuhui Zhang and Xianguo Cheng*. TsMIP6 Enhances the Tolerance of Transgenic Rice to Salt Stress and Interacts with Target Proteins. Journal of Plant Biology ,2015, 58: 58:285-292. (SCI)
[12]QIANG Xiao-jing, YU Guo-hong, JIANG Lin-lin, SUN Lin-lin, ZHANG Shu-hui, LI Wei, CHENG Xian-guo*. Thellungiella halophila ThPIP1 gene enhances the tolerance of the transgenic rice to salt stress. Journal of Integrative Agriculture , 2015, 14(10): 1911–1922. (SCI)
[13]Yan Zhang, Zhi-Xia Li, Xiu-Dao Yu, Jia Fan, John A. Pickett, Huw D. Jones, Jing-Jiang Zhou, Michael A. Birkett, John Caulfield, Johnathan A. Napier, Guang-Yao Zhao, Xian-Guo Cheng, Yi Shi, Toby J. A. Bruce and Lan-Qin Xia. Molecular characterization of two isoforms of a farnesyl pyrophosphate synthase gene in wheat and their roles in sesquiterpene synthesis and inducible defense against aphid infestation. New Phytologist , 2015, 206: 1101–1115. (SCI)
[14]Shichao Xin; Guohong Yu,; Linlin Sun; Xiaojing Qiang; Na Xu,; Xianguo Cheng.Expression of tomato SlTIP2;2 enhances the tolerance to salt stress in the transgenic Arabidopsis and interacts with target proteins.Journal of Plant Research, 2014, 9(127): 695-708.
[15]Guo-Hong Yu., Lin-Lin Jiang., Xue-Feng Ma, Zhao-Shi Xu, Meng-Meng Liu, Shu-Guang Shan, Xian-Guo Cheng*. A Soybean C2H2-Type Zinc Finger Gene GmZF1 Enhanced Cold Tolerance in Transgenic Arabidopsis. PLoS One, 2014, 9(10): 1093-1099.(SCI)
[16]Shichao Xin, Guohong Yu, Linlin Sun, Xiaojing Qiang, Na Xu, Xianguo Cheng*. Expression of tomato SlTIP2;2 enhances the tolerance to salt stress in the transgenic Arabidopsis and interacts with target proteins. Journal of Plant Research, 2014, 127: 695–708. (SCI)
[17]CHENG Xian-Guo*, WANG Li, WANG He, YU Guo-hong, BAI You-lu and LIU Meng-meng. Specific Expression of a Novel Nodulin GmN479 Gene in the Infected Cells of Soybean (Glycine max) Nodules. Agricultural Sciences in China , 2011, 10(10): 1512-1524. (SCI)
[18]Shi-Qing Gao,Ming Chen,Lian-Qin Xia,Hui-Jun Xiu,Zhao-Shi Xu,Lian-Cheng Li,Chang-Ping Zhao,Xian-Guo Cheng*, You-Zhi Ma. A cotton (Gossypium hirsutum) DRE-binding transcription factor gene, GhDREB, confers enhanced tolerance to drought, high salt, and freezing stresses in transgenic. wheat. Plant Cell Reporter , (2009),28: 301-311. (SCI)
[19]Chen Ming; Xu Zhaoshi; Xia Lanqin; Li Liancheng; Cheng Xianguo; Dong Jianhui; Wang Qiaoyan; Ma Youzhi. Cold-induced modulation and functional analyses of the DRE-binding transcription factor gene, GmDREB3, in soybean (Glycine max L.) Journal of Experimental Botany. 2009,60(1):121-135. (SCI)
[20]Ming Chen, Wang Qiao-yan, Xian-Guo Cheng, Zhao-shi, Lian-cheng Li, Xing-guo Ye, Lan-qin Xia, You-zhi Ma.GmDREB2, a soybean DRE-binding transcription factor, conferred drought and high-salt tolerance in transgenic plants. Biochemical and Biophysical Research Commun. 2007, 353 (9): 299-305. (SCI)
[21]Zhao-Shi Xu, Lan-Qin Xia, Ming Chen, Xian-Guo Cheng, Rui-Yue Zhang, Lian-Cheng Li, Yun-Xiang Zhao, Yan Lu, Zhi-Yong Ni, Li Liu, Zhi-Gang Qiu, You-Zhi Ma. Isolation and molecular characterization of the Triticum aestivum L. ethylene-responsive factor 1 ( TaERF1 ) that increases multiple stress tolerance. Plant Molecular Biology, 2007, 65(6)719-732. (SCI)
[22]Xu zhao-shi, Ma you-zhi, Cheng xian-guo, Cao li-xia, Li lian-cheng,and Chen Ming. Isolation and Characterization of Gm STY1, a Novel Gene Encoding a dual-Specificity Protein Kinase in Soybean (Glacine max L.). Journal of Integrative Plant Biology , 2006, 48(7): 857-866. (SCI)
[23]Gao Shiqing, Xu Hui-jun, Cheng Xian-guo*, Chen Ming, Xu Zhao-shi, Li Lian-cheng, Du Li-pu, Ye Xing-guo, Hao Xiao-yan, Ma You-zhi. Improvement of wheat drought and salt tolerance by expression of a stress-inducible transcription factor GmDREB of soybeab (Glycine max). Chinese Science Bulletin , 2005,50 (23):2714-2723. (SCI)
[24]Xian-Guo Cheng, Shigeyuki Tajima, and Hiroshi Kouchi Nodule-specific expression of novel nodulin gene GmN479 in the transgenic soybean Glycine max. Biological Nitrogen Fixation, sustainable Agriculture and the Environment, 2005, 228 eds by Y-P Wang, Netherland Springer.
[25]Cheng Xian-Guo, Mika Nomura, Kenichi Takane, Hiroshi Kouchi and Shigeyuki Tajima.Expression of Two Uricase (Nodulin-35) Genes in A Non-Ureide Type Legume Alfalfa, Medicago sativa. Plant Cell Physiology , 2000, 41: 104-109.(SCI)
[26]Cheng Xian-Guo (2000.2) Cloning and Expression Analysis of Nodulin Genes (GmN479 and Nodulin-35) in Legume Plants. Ph.D. thesis. p. 135 (in English).
[27]Cheng Xian-Guo and Shigeyuki Tajima (1999) Effect of exogenous NH4+-N supply on the contents of amino acid-N in various organs of alfalfa, Medicago sativa. In the Proceeding of the 10th International Nitrogen Workshop,(Aug.23-26,1999) Copenhagen, Denmark.
[28]Cheng Xian-Guo, Mika Nomura, Takashi, Sato, Hiroyuki, Fujikake, Takuji Ohyama, and Shigeyuki Tajima (1999) Effect of exogenous NH4+-N supply on distribution of ureide contents in various tissues of alfalfa plants, Medicago sativa. Soil Science and Plant Nutrition (Vol. 45, 4:921-927)
[29]Cheng Xian-guo, Mika Nomura, Takuji Ohyama and Shigeyuki Tajima(1999) Effect of exogenous N supply on ureide and amino acids in alfalfa, Medicago sativa. In the proceeding of annual meeting of Japanese Society of Soil Sciences and Fertilizers, Hokkaido, Japan
[30]Yasuko Tomo, Cheng Xian-guo, Nomura Mika, Ken-ichi Takane, Hiroshi Kouchi and Shigeyuki Tajima (1998) Uricase (nod-35) gene expression analysis in ureide and amide type legume plant. Plant Cell Physiology Vol 39:S40
[31]Hiroshi Kouchi, Xian-Guo Cheng, and Shigeyuki Tajima (1997) Specific homology of SUPERMAN in nodule of soybean Glycine max (in the Proceeding of Symposium of Japan Society of Plant Physiologists, Kyoto, Japan)
中文期刊論文:
[1]時(shí)俊美,王冰,程憲國(guó).氮高效利用轉(zhuǎn)基因材料的養(yǎng)分評(píng)價(jià)[J].新農(nóng)業(yè),2020(12):29.
[2]王冰,程憲國(guó).磷高效利用轉(zhuǎn)基因作物育種之淺析[J].新農(nóng)業(yè),2020(12):38.
[3]張美娟,王冰,黃升財(cái),陳紅娜,時(shí)俊美,夏關(guān)雪瑩,屈琳俐,程憲國(guó).糠醛渣改良土壤增強(qiáng)苕子對(duì)鹽堿土的適應(yīng)性[J].農(nóng)業(yè)工程學(xué)報(bào),2020,36(06):115-121.
[4]夏關(guān)雪瑩,王冰,屈琳俐,黃升財(cái),張美娟,程憲國(guó).亞精胺浸種緩解鹽堿脅迫對(duì)苜蓿生長(zhǎng)抑制的研究[J].中國(guó)草地學(xué)報(bào),2019,41(05):17-23.
[5]黃升財(cái),王冰,謝國(guó)強(qiáng),劉中來(lái),張美娟,張樹(shù)清,程憲國(guó).赤霉素GA4是水稻矮化特征的重要調(diào)節(jié)因子[J].中國(guó)農(nóng)業(yè)科學(xué),2019,52(05):786-800.
[6]王冰,程憲國(guó).干旱、高鹽及低溫脅迫下植物生理及轉(zhuǎn)錄因子的應(yīng)答調(diào)控[J].植物營(yíng)養(yǎng)與肥料學(xué)報(bào),2017,23(06):1565-1574.
[7]韓嬌,王莉,何蕊,李偉,王冰,黃升財(cái),孫永偉,程憲國(guó).CRISPR/Cas9系統(tǒng)構(gòu)建的水稻OsPht基因突變體材料可用于養(yǎng)分轉(zhuǎn)運(yùn)評(píng)價(jià)[J].植物營(yíng)養(yǎng)與肥料學(xué)報(bào),2017,23(05):1359-1369.
[8]李偉,韓嬌,黃升財(cái),何蕊,王冰,程憲國(guó).小鹽芥TsPIP1;1與TsTIP1;1基因增強(qiáng)轉(zhuǎn)基因水稻耐鹽性[J].植物營(yíng)養(yǎng)與肥料學(xué)報(bào),2017,23(04):957-963.
[9]王金云,程憲國(guó),郭繼斌,王莉.設(shè)施桃園土壤養(yǎng)分變化規(guī)律及評(píng)價(jià)[J].作物雜志,2017(03):96-103.
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中文會(huì)議論文:
[1]馬雪峰;徐娜;于國(guó)紅;辛士超;陳明;馬有志;程憲國(guó). 轉(zhuǎn)披堿草無(wú)機(jī)焦磷酸化酶EdHP1基因小麥的鉀素營(yíng)養(yǎng)效果[C]. 中國(guó)作物學(xué)會(huì).2012年中國(guó)作物學(xué)會(huì)學(xué)術(shù)年會(huì)論文摘要集.中國(guó)作物學(xué)會(huì):中國(guó)作物學(xué)會(huì),2012:123.
[2]阮麗; 信秀麗; 張佳寶; 程憲國(guó). 轉(zhuǎn)基因技術(shù)在貧鉀地區(qū)的小麥鉀高效利用研究[C]. 中國(guó)農(nóng)業(yè)生態(tài)環(huán)境保護(hù)協(xié)會(huì).十一五農(nóng)業(yè)環(huán)境研究回顧與展望——第四屆全國(guó)農(nóng)業(yè)環(huán)境科學(xué)學(xué)術(shù)研討會(huì)論文集.中國(guó)農(nóng)業(yè)生態(tài)環(huán)境保護(hù)協(xié)會(huì):中國(guó)農(nóng)業(yè)生態(tài)環(huán)境保護(hù)協(xié)會(huì),2011:967-974.
[3]程憲國(guó);陳明;馬有志;王莉;單曙光;王迎波;王賀;白由路;于國(guó)紅. 轉(zhuǎn)EdHP1基因小麥養(yǎng)分高效利用的協(xié)同效果[C]. 中國(guó)作物學(xué)會(huì).2010中國(guó)作物學(xué)會(huì)學(xué)術(shù)年會(huì)論文摘要集.中國(guó)作物學(xué)會(huì):中國(guó)作物學(xué)會(huì),2010:48-49.
[4]王迎波;王莉;單曙光;白由路;王賀;王磊;王秀利;程憲國(guó). 氮素用量對(duì)玉米苗期生長(zhǎng)及主要抗氧化酶活性的影響[C]. 中國(guó)植物營(yíng)養(yǎng)與肥料學(xué)會(huì).中國(guó)植物營(yíng)養(yǎng)與肥料學(xué)會(huì)2010年學(xué)術(shù)年會(huì)論文集.中國(guó)植物營(yíng)養(yǎng)與肥料學(xué)會(huì):中國(guó)植物營(yíng)養(yǎng)與肥料學(xué)會(huì),2010:111-120.
[5]郝曉燕;陳明;徐惠君;高世慶;程憲國(guó);李連成;杜麗璞;葉興國(guó);馬有志. GH-DREB基因轉(zhuǎn)化小麥及轉(zhuǎn)基因植株后代的抗旱生理指標(biāo)鑒定[C]. 中國(guó)作物學(xué)會(huì).2005年全國(guó)作物遺傳育種學(xué)術(shù)研討會(huì)暨中國(guó)作物學(xué)會(huì)分子育種分會(huì)成立大會(huì)論文集(二).中國(guó)作物學(xué)會(huì):中國(guó)作物學(xué)會(huì),2005:114-118.
[6]王巧燕;陳明;邱志剛;程憲國(guó);徐兆師;李連城;馬有志. 一個(gè)新的編碼大豆DREB轉(zhuǎn)錄因子基因的克隆及鑒定[C]. 中國(guó)作物學(xué)會(huì).2005年全國(guó)作物遺傳育種學(xué)術(shù)研討會(huì)暨中國(guó)作物學(xué)會(huì)分子育種分會(huì)成立大會(huì)論文集(二).中國(guó)作物學(xué)會(huì):中國(guó)作物學(xué)會(huì),2005:123-126.
[7]王萍;高世慶;王罡;程憲國(guó);胡軍;馬有志;季靜;吳穎. 水稻遺傳轉(zhuǎn)化體系與轉(zhuǎn)DREB基因的研究[C]. 中國(guó)遺傳學(xué)會(huì).中國(guó)遺傳學(xué)會(huì)七屆一次青年研討會(huì)暨上海高校模式生物E——研究院第一屆模式生物學(xué)術(shù)研討會(huì)論文匯編.中國(guó)遺傳學(xué)會(huì):中國(guó)遺傳學(xué)會(huì),2005:111.
[8]徐兆師; 曹麗霞; 程憲國(guó); 馬有志; 李連城. 一個(gè)新的小麥類受體蛋白激酶Y82的克隆及其分析[C]. 中國(guó)作物學(xué)會(huì).2003年全國(guó)作物遺傳育種學(xué)術(shù)研討會(huì)論文集.中國(guó)作物學(xué)會(huì):中國(guó)作物學(xué)會(huì),2003:538-542.
[9]程憲國(guó); 劉強(qiáng); 河內(nèi)宏; 田島茂行. 帶有鋅指(C2H2)結(jié)構(gòu)的結(jié)瘤基因GmN479在轉(zhuǎn)基因大豆(Glycine max)根瘤中的特異表達(dá)[C]. 中國(guó)生物工程學(xué)會(huì).中國(guó)生物工程學(xué)會(huì)第三次全國(guó)會(huì)員代表大會(huì)暨學(xué)術(shù)討論會(huì)論文摘要集.中國(guó)生物工程學(xué)會(huì):中國(guó)生物工程學(xué)會(huì),2001:116-117.-02-18