参考文献/References:
[1]李淼淼,南富波,刘伟, 等. VIGS技术在禾本科植物中的应用研究进展[J]. 麦类作物学报, 2013,33(2):401-406.
[2]KUMAGAI M H, DONSON J, DELLA-CIOPPA G, et al. Cytoplasmic inhibition of carotenoid biosynthesis with virus-derived RNA[J]. Proceedings of the National Academy of Sciences, 1995,92(5):1679-1683.
[3]SCOFIELD S R, HUANG L, BRANDT A S, et al. Development of a virus-induced gene-silencing system for hexaploid wheat and its use in functionalanalysisof the Lr21-mediated leaf rust resistance pathway[J]. Plant Physiology, 2005,138(4):2165-2173.
[4]VRALLYAY E, GICZEY G,BURGYN J. Virus-induced gene silencing of Mlo genes induces powdery mildew resistance in Triticumaestivum[J]. Archives of Virology, 2012, 157(7): 1345-1350.
[5]赵丹,赵继荣,黄茜,等, 利用BSMV-VIGS技术快速分析小麦TNBL1基因的抗黄矮病功能[J]. 作物学报, 2011,37(11):2106-2110.
[6]陆维忠,程顺和,王裕中. 小麦赤霉病研究[M]. 北京:科学出版社, 2001.
[7]徐云,高苹,缪燕,等.江苏省小麦赤霉病气象条件适宜度判别指标[J].江苏农业科学,2016,44(8):188-192.
[8]段成鼎,任兰柱,范建芝,等. 种子包衣结合扬花期喷雾对小麦赤霉病防治效果研究[J].山东农业科学,2015,47(6):104-106.
[9]程顺和,张勇,别同德,等.中国小麦赤霉病的危害及抗性遗传改良[J]. 江苏农业学报, 2012, 28(5):938-942.
[10]马鸿翔,陆维忠.小麦赤霉病抗性改良研究进展[J].江苏农业学报, 2010, 26(1):197-203.
[11]BUERSTMAYR H, BAN T, ANDERSON J A. QTL mapping and marker-assisted selection for Fusarium head blight resistance in wheat: a review[J]. Plant Breeding, 2009, 128:1-16.
[12]LIN F, KONG Z X, ZHU H L, et al. Mapping QTL associated with resistance to Fusarium head blight in the Nanda2419/Wangshuibai population. I. Type II resistance[J]. Theoretical and Applied Genetics, 2004, 109:1504-1511
[13]WALDRON B L, MORENO-SEVILLA B, ANDERSON J A, et al. RFLP mapping of QTL for Fusariumhead blight resistanceinwheat[J]. Crop Science, 1999, 39:805-811.
[14]BUERSTMAYR H, LEMMENS M,HARTL L, et al. Molecular mapping of QTLs for Fusarium head blight resistance in spring wheat.I. Resistance to fungal spread (type II resistance)[J]. Theoretical and Applied Genetics, 2002, 104:84-91.
[15]CHOULET F, ALBERTI A, THEIL S, et al. Structuraland functional partitioning of bread wheat chromosome 3B[J]. Science, 2014, 345(6194):1249721.
[16]张旭,任丽娟,谭秀云,等. 利用分子标记研究小麦遗传群体的赤霉病抗性鉴定方法[J]. 南京大学学报, 2005,41(2):125-132.
[17]南富波,李淼淼,王昊龙,等. 小麦PDS基因VIGS载体构建体系的优化及验证[J]. 麦类作物学报, 2014,34(3):285-291.
[18]BUHROW L M, CLARK S M,LOEWEN M C. Identification of an attenuated barley stripe mosaic virus for the virus-inducedgene silencing of pathogenesis-related wheat genes[J]. Plant Methods, 2016 12:12. DOI 10.1186/s13007-016-0112-z.
[19]ALEXANDRE P, JIA J G, AMAL K, et al. TaFROGencodes a Pooideaeorphan protein that interacts with SnRK1 and enhances resistance to the mycotoxigenicfungus Fusariumgraminearum[J]. Plant Physiology, 2015, 169:2895-2906.
[20]WALTER S, KAHLA A, ARUNACHALAM C, et al. A wheat ABC transporter contributes to both grain formation and mycotoxintolerance[J]. Journal of Experimental Botany, 2015,66(9):2583-2593.
[21]WALTER S, NICHOLSON P, DOOHAN F. Action and reaction of host and pathogen during Fusarium head blight disease[J]. New Phytologist, 2010, 185:54-66.
[22]KAZAN K, GARDINER D M, MANNERS J M. On the trail of a cereal killer: recent advances in Fusariumgraminearumpathogenomics and host resistance[J]. Molecular Plant Pathology, 2012,13(4):399-413.
[23]NUSSBAUMER T, WARTH B, SHARMA S, et al. Joint transcriptomic and metabolomic analyses reveal changes in the primary metabolism and imbalances in the subgenome orchestration in the bread wheat molecular response to Fusariumgraminearum[J]. Genes Genomes Genetics, 2015, 5:2579-2592.
[24]GUNNAIAH R, KUSHALAPPA A C, DUGGAVATHI R, et al. Integrated metabolo-proteomic approach to decipher the mechanisms by which wheat QTL(FHb1) contribute to resistance against Fusariumgraminearum[J]. PLOS One, 2012, 7(7): e40695. DOI:10.1371/journal.pone.0040695
[25]XIAO J, JIN X, JIA X, et al. Transcriptome-based discovery of pathways and genes related to resistance against Fusarium head blight in wheat landrace Wangshuibai[J]. BMC Genomics, 2013,14:197.
[26]SCHWEIGER W, STEINER B, AMETZ C, et al. Transcriptomic characterization of two major Fusarium resistance quantitative trait loci (QTLs), Fhb1 and Qfhs.ifa-5A, identifies novel candidate genes[J]. Molecular Plant Pathology, 2013,14(8):772-785.
相似文献/References:
[1]伍 宏,朱昌华,夏 凯,等.叶面喷施激动素对小麦品种济麦22品质的影响[J].江苏农业学报,2016,(02):299.[doi:10.3969/j.issn.1000-4440.2016.02.010]
WU Hong,ZHU Chang-hua,XIA Kai,et al.Effect of foliar application of kinetin on quality of Triticum aestivum L. Jimai 22[J].,2016,(02):299.[doi:10.3969/j.issn.1000-4440.2016.02.010]
[2]蒋正宁,别同德,赵仁惠,等.受条锈菌诱导的小麦丝氨酸苏氨酸激酶基因TaS/TK的克隆与表达[J].江苏农业学报,2016,(05):980.[doi:10.3969/j.issn.1000-4440.2016.05.004]
JIANG Zheng-ning,BIE Tong-de,ZHAO Ren-hui,et al.Cloning and expression analysis of a Serine/Threonine protein kinase gene TaS/TK in wheat in response to stripe rust fungal infection[J].,2016,(02):980.[doi:10.3969/j.issn.1000-4440.2016.05.004]
[3]丁彬彬,张旭,吴磊,等.小麦3B 短臂染色体抗赤霉病主效 QTL 区域候选基因的表达[J].江苏农业学报,2017,(01):6.[doi:10.3969/j.issn.1000-4440.2017.01.002
]
DING Bin-bin,ZHANG Xu,WU Lei,et al.Expression of candidate genes on the region of a major QTL for the resistance to Fusarium head blight on the short arm of chromosome 3B in wheat[J].,2017,(02):6.[doi:10.3969/j.issn.1000-4440.2017.01.002
]
[4]周淼平,姚金保,张鹏,等.小麦幼苗纹枯病抗性评价新方法[J].江苏农业学报,2017,(01):61.[doi:10.3969/j.issn.1000-4440.2017.01.010
]
ZHOU Miao-ping,YAO Jin-bao,ZHANG Peng,et al.New method for the resistance evaluation of wheat sharp eyespot in seedling[J].,2017,(02):61.[doi:10.3969/j.issn.1000-4440.2017.01.010
]
[5]邵继锋,陈荣府,董晓英,等.利用分根技术研究小麦铝磷交互作用[J].江苏农业学报,2016,(01):78.[doi:10.3969/j.issn.1000-4440.2016.01.012
]
SHAO Ji-feng,CHEN Rong-fu,DONG Xiao-ying,et al.Aluminum-phosphorus interaction in wheat grown in a split-root device[J].,2016,(02):78.[doi:10.3969/j.issn.1000-4440.2016.01.012
]
[6]叶景秀.小麦籽粒蛋白质双向电泳体系的优化[J].江苏农业学报,2015,(05):957.[doi:doi:10.3969/j.issn.1000-4440.2015.05.002]
YE Jing-xiu.Optimization of two-dimensional electrophresis system for grain protein in spring wheat[J].,2015,(02):957.[doi:doi:10.3969/j.issn.1000-4440.2015.05.002]
[7]郑舒文,徐其隆,邹华文.脱落酸对涝渍胁迫下小麦产量的影响[J].江苏农业学报,2015,(05):967.[doi:doi:10.3969/j.issn.1000-4440.2015.05.004]
ZHENG Shu-wen,XU Qi-long,ZOU Hua-wen.Yield of waterlogged wheat in response to ABA application[J].,2015,(02):967.[doi:doi:10.3969/j.issn.1000-4440.2015.05.004]
[8]张玉萍,马占鸿.不同施氮量下小麦遥感估产模型构建[J].江苏农业学报,2015,(06):1325.[doi:doi:10.3969/j.issn.1000-4440.2015.06.020]
ZHANG Yu-ping,MA Zhan-hong.Yield estimation model of wheat based on remote sensing data under different nitrogen supply conditions[J].,2015,(02):1325.[doi:doi:10.3969/j.issn.1000-4440.2015.06.020]
[9]张卓亚,王晓琳,许晓明,等.腐植酸对小麦扬花期水分利用效率及灌浆进程的影响[J].江苏农业学报,2015,(04):725.[doi:10.3969/j.issn.1000-4440.2015.04.003]
ZHANG Zhuo-ya,WANG Xiao-ling,XU Xiao-ming,et al.Effect of humic acid on water use efficiency and grouting process of wheat at flowering[J].,2015,(02):725.[doi:10.3969/j.issn.1000-4440.2015.04.003]
[10]周淼平,姚金保,张鹏,等.小麦基部茎秆禾谷丝核菌DNA含量的定量检测[J].江苏农业学报,2015,(04):750.[doi:10.3969/j.issn.1000-4440.2015.04.007]
ZHOU Miao-ping,YAO Jin-bao,ZHANG Peng,et al.Quantitative detection and application of Rhizoctonia cerealis DNA content in basal stalk of wheat[J].,2015,(02):750.[doi:10.3969/j.issn.1000-4440.2015.04.007]