論文專著:
出版專著:
1、牛吉山. 小麥抗白粉病遺傳育種研究. 中國(guó)農(nóng)業(yè)科學(xué)技術(shù)出版社, 北京,2007. ISBN978-7-80233-450-2
發(fā)表英文論文:
[1]Li, Huijuan; Jiao, Zhixin; Zhang, Peipei; Ni, Yongjing; Wang, Ting; Zhang, Jing; Li, Junchang; Jiang, Yumei; Yang, Xiwen; Li, Lei; Yao, Ziping; Niu, Jishan*; He, Dexian*.Enhanced SA and Ca2+ signaling results in PCD-mediated spontaneous leaf necrosis in wheat mutant wsl. Molecular Genetics and Genomics, 2021, 296(6): 1249-1262.
[2]Li, Junchang; Jiang, Yumei; Zhang, Jing; Ni, Yongjing; Jiao, Zhixin; Li, Huijuan; Wang, Ting; Zhang, Peipei; Guo, Wenlong; Li, Lei*; Liu, Hongjie; Zhang, Hairong; Li, Qiaoyun; Niu, Jishan*.Key auxin response factor (ARF) genes constraining wheat tillering of mutant dmc. PeerJ, 2021, 9: e12221.
[3]Zhang, Jing; Li, Junchang; Ni, Yongjing; Jiang, Yumei; Jiao, Zhixin; Li, Huijuan; Wang, Ting; Zhang, Peipei; Han, Mengyao; Li, Lei*; Liu, Hongjie; Li, Qiaoyun; Niu, Jishan*.Key wheat GRF genes constraining wheat tillering of mutant dmc. PeerJ, 2021, 9: e11235.
[4]Li, Qiaoyun; Gao, Chuang; Xu, Kaige; Jiang, Yumei; Niu, Jishan; Yin, Guihong*; Wang, Chenyang*. Transcriptome-based analysis of resistance mechanism to black point caused by Bipolaris sorokiniana in wheat 。Scientific Reports, 2021, 11(1): 6911.
[5]Niu, Jishan.Heredity and gene mapping of a novel white stripe leaf mutant in wheat. Journal of Integrative Agriculture, 2021, 20(7): 1743-1752; doi: 10.1016/S2095-3119(20)63345-7
[6]Li, Qiaoyun; Xu, Kaige; Wang, Siyu; Li, Mengyu; Jiang, Yumei; Liang, Xiaolong; Niu, Jishan; Wang, Chenyang*. Enzymatic Browning in Wheat Kernels Produces Symptom of Black Point Caused by Bipolaris sorokiniana。Frontiers in Microbiology, 2020, 11: 526266.
[7]Li, Qiaoyun; Li, Mengyu; Jiang, Yumei; Wang, Siyu; Xu, Kaige; Liang, Xiaolong; Niu, Jishan; Wang, Chenyang*.Assessing Genetic Resistance in Wheat to Black Point Caused by Six Fungal Species in the Yellow and Huai Wheat Area of China. Plant Disease, 2020, 104(12): 3131-3134.
[8]Jiao, Zhixin; Zhu, Xinxin; Li, Huijuan; Liu, Zhitao; Huang, Xinyi; Wu, Nan; An, Junhang; Li, Junchang; Zhang, Jing; Jiang, Yumei; Li, Qiaoyun; Qi, Zengjun; Niu, Jishan*.Cytological and molecular characterizations of a novel 2A nullisomic line derived from a widely-grown wheat cultivar Zhoumai 18 conferring male sterility.PeerJ, 2020, 8: e10275.
[9]Li, Qiaoyun; Niu, Hongbin; Xu, Kaige; Xu, Qiaoqiao; Wang, Siyu; Liang, Xiaolong; Jiang, Yumei; Niu, Jishan*.GWAS for resistance against black point caused by Bipolaris sorokiniana in wheat。Journal of Cereal Science, 2020, 91: 102859.
[10]Li, Junchang; Zhang, Jing; Li, Huijuan; Niu, Hao; Xu, Qiaoqiao; Jiao, Zhixin; An, Junhang; Jiang, Yumei; Li, Qiaoyun; Niu, Jishan*.The Major Factors Causing the Microspore Abortion of Genic Male Sterile Mutant NWMS1 in Wheat (Triticum aestivum L.) 。International Journal of Molecular Sciences, 2019, 20(24): 6252.doi:10.3390/ijms20246252
[11]Li, Qiao Yun; Wang, Si Yu; Chang, Shou Wei; Xu, Kai Ge; Li, Meng Yu; Xu, Qiao Qiao; Jiang, Yu Mei; Niu, Ji Shan*.Key periods and effects of meteorological factors affecting incidence of wheat black point in the Yellow and Huai wheat area of China。Crop Protection, 2019, 125: UNSP 104882.
[12]An, Junhang; Niu, Hao; Ni, Yongjing; Jiang, Yumei; Zheng, Yongxing; He, Ruishi; Li, Junchang; Jiao, Zhixin; Zhang, Jing; Li, Huijuan; Li, Qiaoyun; Niu, Jishan*. The miRNA-mRNA Networks Involving Abnormal Energy and Hormone Metabolisms Restrict Tillering in a Wheat Mutant dmc。International Journal of Molecular Sciences, 2019, 20(18): 4586. doi:10.3390/ijms20184586
[13]Jiao, Zhixin; Li, Junchang; Ni, Yongjing; Jiang, Yumei; Sun, Yulong; An, Junhang; Li, Huijuan; Zhang, Jing; Hu, Xin; Li, Qiaoyun; Niu, Jishan*.Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1。International Journal of Molecular Sciences, 2019, 20(18): 4642. doi.org/10.3390/ijms20184642
[14]Li, Junchang; Jiao, Zhixin; He, Ruishi; Sun, Yulong; Xu, Qiaoqiao; Zhang, Jing; Jiang, Yumei; Li, Qiaoyun; Niu, Jishan*.Gene Expression Profiles and microRNA Regulation Networks in Tiller Primordia, Stem Tips, and Young Spikes of Wheat Guomai 301。Genes, 2019, 10(9): 686. doi:10.3390/genes10090686
[15]Li, Qiao Yun; Xu, Qiao Qiao; Jiang, Yu Mei; Niu, Ji Shan*; Xu, Kai Ge; He, Rui Shi。The correlation between wheat black point and agronomic traits in the North China Plain。Crop Protection, 2019, 119: 17-23. doi.org/10.1016/j.cropro.2019.01.004
[16]Zhu Xin xin; Ni Yong jing; He Rui shi; Jiang Yu mei; Li Qiao yun; Niu Ji shan*。Genetic mapping and expressivity of a wheat multi-pistil gene in mutant 12TP 。Journal of Integrative Agriculture, 2019, 18(3): 532-538.
[17]Niu Ji-Shan. Quantitative changes in the transcription of phytohormone-related genes: some transcription factors are major causes of the wheat mutant dmc not Tillering. International Journal of Molecular Sciences, 2018, 19 (5): 1324-1344; doi:10.3390/ijms19051324
[18]Niu Ji-Shan. Identification and Pathogenicity of Fungal Pathogens Causing Black Point in Wheat on the North China Plain. Indian J Microbiol, 2018, https://doi.org/10.1007/s12088-018-0709-1
[19]Niu Ji-Shan. Proteomic analysis of developing wheat grains infected by powdery mildew (Blumeria graminis f. sp. tritici). Journal of Plant Physiology, 2017, 215: 140–153
[20]Niu Ji-Shan. Transcriptome analysis for the restrained stem development of the wheat mutant dms. Ciência Rural, 2017, 47 (12), e20170241; http://dx.doi.org/10.1590/0103-8478cr20170241
[21]Niu Ji-Shan.Transcriptome analysis for abnormal spike developmentof the wheat mutant dms 。PLoS ONE, 2016, 11(3): e0149287.
[22]Duan Zong-biao; Shen Chun-cai; Li Qiao-yun; Lue Gui-zhen; Ni Yong-jing; Yu Dong-yan; Niu Ji-shan*。Identification of a novel male sterile wheat mutant dms conferring dwarf status and multi-pistils。Journal of Integrative Agriculture, 2015, 14(9): 1706-1714.
[23]Niu Ji-Shan.Allelicvariance at the vernalization gene locus Vrn-D1 ina group of sister wheat (Triticum aestivum)lines and its effects on development。Journal of Agricultural Science, 2015, 153(4): 588-601.
[24]Gao Hongyun; Niu Jishan; Yang Xiwen; He Dexian*; Wang Chenyang。Impacts of powdery mildew on wheat grain sugar metabolism and starch accumulation in developing grains。Starch, 2014, 66(11-12): 947-958.
[25]Duan, Zongbiao; Lv, Guizhen; Shen, Chuncai; Li, Qiaoyun; Qin, Zhao; Niu, Jishan*。The role of jasmonic acid signalling in wheat (Triticum aestivum L.) powdery mildew resistance reaction。European Journal of Plant Pathology, 2014, 140(1): 169-183.
[26]Gao, H. Y.; He, D. X.*; Niu, J. S.; Wang, C. Y.; Yang, X. W.The effect and molecular mechanism of powdery mildew on wheat grain prolamins。Journal of Agricultural Science, 2014, 152(2): 239-253.
[27]Niu Ji-Shan.Screening wheat genotypes for resistance to black point and the effects of diseased kernels on seed germination. Journal of Plant Diseases and Protection (JPDP), 2014, 121 (2): 79-88
[28]Jishan Niu. Therole of Jasmonic Acid Signaling in Wheat (Triticumaestivum L.) Powdery Mildew Resistance Reaction。European Journal of Plant Pathology, 2014, 140: 169-183.
[29]Li Wang, Jishan Niu, Qiaoyun Li, Zhao Qin, Yongji.Allelic variance at the vernalization gene locus Vrn-D1 in a group of sister wheat (Triticum aestivum) lines and its effects on development. Journal of Agricultural Science, 2014, 10.1007/s10658-014-0(10.1007/s10658-014-0): 1-15.
[30]Li Qiao-yun; Yin Jun*; Liu Wan-dai; Zhou Su-mei; Li Lei; Niu Ji-shan; Niu Hong-bin; Ma Ying.Determination of Optimum Growing Degree-Days (GDD) Range Before Winter for Wheat Cultivars with Different Growth Characteristics in North China Plain.JOURNAL OF INTEGRATIVE AGRICULTURE, 2012, 11(3): 405-415.
[31]Niu Ji-Shan.The relationship of methyl jasmonate enhanced powdery mildew resistance in wheat and the expressions of 9 disease resistance related genes. Agricultural Science & Technology,2011,12(4):504-508
[32]Li, Qiao-yun; Niu, Hong-bin; Yin, Jun*; Shao, Hong-bo; Niu, Ji-shan; Ren, Jiang-ping; Li, Yong-chun; Wang, Xiang. Transgenic barley with overexpressed PTrx increases aluminum resistance in roots during germination.Journal of Zhejiang University-Science B(Biomedicine & Biotechnology), 2010, 11(11): 862-870.
[33]Niu Ji-shan; Jia Hai-yan; Yin Jun; Wang Bao-qin; Ma Zheng-qiang; Shen Tian-min. Development of an STS Marker Linked to Powdery Mildew Resistance Genes PmLK906 and Pm4a by Gene Chip Hybridization. AGRICULTURAL SCIENCES IN CHINA, 2010, 9(3): 331-336.
[34]Niu, Jishan; He, Dexian. Molecular basis of powdery mildew resistance in wheat (Triticum aestivum L.) . AFRICAN JOURNAL OF BIOTECHNOLOGY, 2009, 8(19): 4708-4716.
[35]Niu Ji-Shan, Chang Yang, Ni Yong-Jing, Wang Bao-Qin, Yin Jun. Cloning, characterization and expression of a csAtPR5-Like gene in wheat. Acta Phytopathologica Sinica, 2009, 39 (4): 413-419
[36]Niu, J. S.; Wang, B. Q.; Wang, Y. H.; Cao, A. Z.; Qi, Z. J.; Shen, T. M. Chromosome location and microsatellite markers linked to a powdery mildew resistance gene in wheat line 'Lankao 90(6)' .PLANT BREEDING, 2008, 127(4): 346-349.
[37]Niu JS, Liu R, Zheng L. Expression analysis of wheat PR-1, PR-2, PR-5 activated by Bgt and SA, and powdery mildew resistance. Journal of Triticeae Crops, 2007, 27 (6): 1132-1137
[38]Niu JS, Zhang LZ, Wang YH, Hong DF. Cloning, characterization and expression analysis of the receptor-like kinase (RLK) gene in common wheat. Journal of Plant Physiology and Molecular Biology, 2006, 32 (1): 79-86
[39]Niu JS, Zhang LZ, Hong DF, Wang YH. Cloning, characterization and expression of wheat EDR1 (Enhanced Disease Resistance) gene. Journal of Plant Physiology and Molecular Biology, 2005, 31(5): 477-484
[40]Yu ling, Niu Ji-Shan, Chen Pei-Du, Ma Zheng-Qiang, Liu Da-Jun. Cloning, physical mapping and expression analysis of a wheat Mlo-like gene. Journal of Integrative Plant Biology, 2005, 47 (2): 214-222.
發(fā)布中文期刊論文:
[1]姜玉梅,姜如云,李俊暢,楊進(jìn)威,牛吉山,李磊.小麥BES1基因家族的比較基因組學(xué)分析[J].麥類作物學(xué)報(bào),2021,41(10):1181-1188.
[2]李夢(mèng)鈺,高闖,李巧云,徐凱歌,王絲雨,牛吉山.苗期及灌漿期抗Bipolaris sorokiniana葉枯病小麥品種(系)鑒定及相關(guān)性分析[J].作物雜志,2021(03):40-45.DOI:10.16035/j.issn.1001-7283.2021.03.006.
[3]王絲雨,李巧云,姜玉梅,徐凱歌,李夢(mèng)鈺,牛吉山,閆亞洲.小麥山農(nóng)4143抗黑胚病遺傳分析及抗性遺傳位點(diǎn)檢測(cè)[J].植物病理學(xué)報(bào),2021,51(02):225-235+96-99.DOI:10.13926/j.cnki.apps.000359.
[4]牛皓,姜玉梅,牛吉山.小麥抗赤霉病遺傳育種研究進(jìn)展[J].農(nóng)業(yè)生物技術(shù)學(xué)報(bào),2020,28(03):530-542.
[5]徐喬喬,李巧云,牛吉山,于東艷,段宗彪,梁曉龍,焦志鑫.45份小麥種質(zhì)赤霉病抗性評(píng)價(jià)與農(nóng)藝性狀分析[J].麥類作物學(xué)報(bào),2019,39(04):393-399.
[6]夏國(guó)軍,王新國(guó),牛吉山,張鋒,張立東.豐產(chǎn)穩(wěn)產(chǎn)國(guó)審小麥新品種—賽德麥1號(hào)[J].麥類作物學(xué)報(bào),2019,39(02):124.
[7]夏國(guó)軍,李巧云,王新國(guó),牛吉山,張鋒,張立東.小麥新品種賽德麥7號(hào)的選育[J].中國(guó)種業(yè),2018(09):79-80.DOI:10.19462/j.cnki.1671-895x.20180829.014.
[8]孫玉龍,朱欣欣,何瑞士,李俊暢,安俊航,焦志鑫,姜玉梅,李巧云,牛吉山.EMS誘導(dǎo)的盛農(nóng)1號(hào)小麥突變體篩選與鑒定[J].麥類作物學(xué)報(bào),2018,38(07):782-790.
[9]徐喬喬,李俊暢,李巧云,姜玉梅,牛吉山.小麥黑胚病遺傳力及氣象因子與黑胚率的相關(guān)性分析[J].麥類作物學(xué)報(bào),2018,38(07):765-772.
[10]何瑞士,倪永靜,孫玉龍,姜玉梅,李巧云,牛吉山.矮化獨(dú)稈小麥突變體的生物學(xué)特征和遺傳分析[J].河南農(nóng)業(yè)大學(xué)學(xué)報(bào),2018,52(01):11-15+29.DOI:10.16445/j.cnki.1000-2340.2018.01.003.
[11]李巧云,徐凱歌,牛吉山.小麥黑胚病抗性遺傳研究進(jìn)展[J].麥類作物學(xué)報(bào),2018,38(02):152-156.
[12]焦志鑫,李俊暢,牛吉山.小麥MIKC型MADS-box基因家族分析[J].農(nóng)業(yè)生物技術(shù)學(xué)報(bào),2017,25(11):1756-1769.
[13]夏國(guó)軍,王新國(guó),牛吉山.小麥品種沃德麥365的選育[J].中國(guó)種業(yè),2017(11):61-62.DOI:10.19462/j.cnki.1671-895x.20171103.010.
[14]張立東,張鋒,孟國(guó)良,蘇延賓,王新國(guó),牛吉山,夏國(guó)軍.高產(chǎn)抗病早熟小麥新品種—沃德麥365[J].麥類作物學(xué)報(bào),2017,37(10):1398.
[15]劉紅杰,倪永靜,陳玉霞,任德超,黃建英,牛吉山,胡新.播期和播量對(duì)冬小麥國(guó)麥301農(nóng)藝性狀及產(chǎn)量的影響[J].江蘇農(nóng)業(yè)科學(xué),2017,45(14):49-53.DOI:10.15889/j.issn.1002-1302.2017.14.015.
[16]李巧云,姜玉梅,宰曹寧,梁曉龍,朱欣欣,牛吉山.接菌時(shí)期與保濕時(shí)間對(duì)麥根腐平臍蠕孢小麥黑胚病的影響[J].河南農(nóng)業(yè),2017(06):51-52.DOI:10.15904/j.cnki.hnny.2017.06.022.
[17]梁曉龍,李巧云,牛吉山.小麥黑胚病籽粒黑變機(jī)制研究進(jìn)展[J].河南農(nóng)業(yè)科學(xué),2016,45(08):1-6.DOI:10.15933/j.cnki.1004-3268.2016.08.001.
[18]于東艷,朱欣欣,李巧云,姜玉梅,牛吉山.小麥dms突變體株高與赤霉素代謝的關(guān)系[J].河南農(nóng)業(yè)科學(xué),2016,45(05):18-21+27.DOI:10.15933/j.cnki.1004-3268.2016.05.004.
[19]高紅云,楊習(xí)文,賀德先,牛吉山,王晨陽,吳寅.小麥白粉病對(duì)籽粒產(chǎn)量和品質(zhì)的影響及防控途徑[J].山東農(nóng)業(yè)科學(xué),2015,47(10):139-144.DOI:10.14083/j.issn.1001-4942.2015.10.033.
[20]倪永靜,朱培培,劉紅杰,胡新,李巧云,牛吉山.EMS誘導(dǎo)國(guó)麥301小麥突變體庫的建立與鑒定[J].河南農(nóng)業(yè)科學(xué),2015,44(04):42-45+92.DOI:10.15933/j.cnki.1004-3268.2015.04.009.
[21]沈椿才,秦召,李巧云,呂桂珍,段宗彪,倪永靜,牛吉山.小麥矮化、多雌蕊、不育新突變體的形態(tài)和遺傳分析[J].河南農(nóng)業(yè)大學(xué)學(xué)報(bào),2014,48(05):535-541.DOI:10.16445/j.cnki.1000-2340.2014.05.014.
[22]秦召,李巧云,段宗彪,姜玉梅,牛吉山.一種快速、特異性檢測(cè)小麥中鏈格孢菌(Alternaria alternata)的巢式PCR方法[J].河南農(nóng)業(yè)科學(xué),2014,43(10):67-73.DOI:10.15933/j.cnki.1004-3268.2014.10.051.
[23]倪永靜,李巧云,王新國(guó),王翔,牛吉山.高產(chǎn)抗白粉病小麥新品種——國(guó)麥301[J].麥類作物學(xué)報(bào),2014,34(05):724.
[24]呂桂珍,馬文斌,郭俊峰,孫武勇,趙冰琳,李巧云,牛吉山.液相色譜質(zhì)譜-質(zhì)譜法檢測(cè)小麥葉片中茉莉酸的研究[J].河南農(nóng)業(yè)大學(xué)學(xué)報(bào),2013,47(03):256-261.DOI:10.16445/j.cnki.1000-2340.2013.03.019.
[25]張佳佳,袁虹霞,張瑞奇,邢小萍,代君麗,牛吉山,李洪連,陳佩度.普通小麥-簇毛麥種質(zhì)對(duì)菲利普孢囊線蟲的抗性分析[J].作物學(xué)報(bào),2012,38(11):1969-1976.
[26]王麗,王正陽,牛吉山,馬文斌,呂桂珍.河南部分小麥育種親本的高分子量麥谷蛋白亞基組成分析[J].河南農(nóng)業(yè)大學(xué)學(xué)報(bào),2012,46(02):115-120.DOI:10.16445/j.cnki.1000-2340.2012.02.015.
[27]牛吉山,馬文斌,李巧云,賀德先.小麥籽粒色污病及其病因研究進(jìn)展[J].河南農(nóng)業(yè)科學(xué),2012,41(01):6-10+15.DOI:10.15933/j.cnki.1004-3268.2012.01.020.
[28]馬冬云,左毅,牛吉山,張艷菲,郭天財(cái).中國(guó)冬小麥品種籽粒植酸含量差異及其與蛋白質(zhì)含量的關(guān)系(英文)[J].Agricultural Science & Technology,2012,13(01):108-112+245.DOI:10.16175/j.cnki.1009-4229.2012.01.033.
[29]李巧云,尹鈞,牛吉山,馬文斌,劉靖,姜玉梅.2010年鄭州地區(qū)小麥黑胚率及黑胚粒發(fā)芽特性[J].河南農(nóng)業(yè)科學(xué),2011,40(10):88-91.DOI:10.15933/j.cnki.1004-3268.2011.10.010.
[30]牛吉山,劉靖,倪永靜,尹鈞.茉莉酸對(duì)PR-1、PR-2、PR-5和Ta-JA2基因表達(dá)以及小麥白粉病抗性的誘導(dǎo)[J].植物病理學(xué)報(bào),2011,41(03):270-277.DOI:10.13926/j.cnki.apps.2011.03.018.
[31]牛吉山,劉靖,馬文斌,李巧云,王正陽,賀德先.茉莉酸甲酯誘導(dǎo)的小麥白粉病抗性與9個(gè)抗病相關(guān)基因表達(dá)間的關(guān)系(英文)[J].Agricultural Science & Technology,2011,12(04):504-508.DOI:10.16175/j.cnki.1009-4229.2011.04.017.
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[4]張佳佳;宗瑩瑩;袁虹霞;邢小萍;代君麗;牛吉山;李洪連. 簇毛麥中抗禾谷胞囊線蟲病基因的初步研究[C]//.中國(guó)植物病理學(xué)會(huì)2011年學(xué)術(shù)年會(huì)論文集.,2011:384-388.
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