Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (7): 1274-1281.doi: 10.3724/SP.J.1006.2009.01274
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
YIN Gui-Hong1,2,3,WANG Jian-Wu1,2,WEN Wei-E2,HE Zhong-Hu2,4,LI Zai-Feng5,WANG Hui1,XIA Xian-Chun2*
[1]Line R F. Stripe rust of wheat and barley in North America: A retrospective historical review. Annu Rev Phytopathol, 2002, 40: 75-118 [2]Li Z-Q(李振岐), Zeng S-M(曾士迈).Wheat Rust in China (中国小麦锈病). Beijing: China Agriculture Press, 2002. pp 1-3 (in Chinese) [3]Wan A M, Zhao Z H, Chen X M, He Z H, Jin S L, Jia Q Z, Yao G, Yang J X, Wang B T, Li G B, Bi Y Q, Yuan Z Y. Wheat stripe rust epidemic and virulence of Puccinia striiformis f. sp. tritici in China in 2002.Plant Dis, 2004, 88: 896-904 [4].Zhao Z-H(赵中华). Characteristic of national stripe rust epidemiology in 2003 and its management strategy. China Plant Prot (中国植保导刊), 2004, 24(2): 16-18 (in Chinese) [5]The National Agro-Tech Extension and Service Center (全国农业技术推广服务中心). Prediction of the outbreak of significant disease and pest for crops in national scale in 2004. China Plant Prot (中国植保导刊), 2004, 24(3): 21-22 (in Chinese) [6]Zhang Y-J(张跃进), Wang J-Q(王建强), Jang Y-Y(姜玉英), Feng X-D(冯晓东), Xia B(夏冰). Prediction of the outbreak of disease and pest for crops in national scale in 2005. China Plant Prot(中国植保导刊), 2005, 25(4): 28-30 (in Chinese) [7]Zhang Y-J(张跃进), Wang J-Q(王建强), Jiang Y-Y(姜玉英), Feng X-D(冯晓东), Xia B(夏冰). Prediction of the outbreak of disease and pest for crops in national scale in 2006. China Plant Prot(中国植保导刊), 2006, 26(4): 5-8 (in Chinese) [8]Zhang Y-J(张跃进), Wang J-Q(王建强), Jiang Y-Y(姜玉英), Feng X-D(冯晓东), Xia B(夏冰), Liu Y(刘宇), Zeng J(曾娟). Prediction of the outbreak of disease and pest for crops in national scale in 2007. China Plant Prot(中国植保导刊), 2007, 27(2): 32-35 (in Chinese) [9]McIntosh R A, Devos K M, Dubcovsky J, Rogers W J, Morris C F, Appels R, Somers D J, Anderson O A. Catalogue of Gene Symbols for Wheat, 2008 (supplement). [2008-12-21], http://www.wheat.pw.usda.gov/GG2/Triticum/Wgc/2008/Catalogue 2008. pdf [10]Yan G P, Chen X M, Line R F, Wellings C R. Resistance gene-analog polymorph- hism markers co-segregating with the Yr5 gene for resistance to wheat stripe rust. Theor Appl Genet, 2003, 106: 636-643 [11]Shi Z X, Chen X M, Line R F, Leung H, Wellings C R. Development of resistance gene-analog polymorphism markers for the Yr9 gene resistance to wheat stripe rust. Genome, 2001, 44: 509-516 [12]Wen W E, Li G Q, He Z H, Yang W Y, Xu M L, Xia X C. Development of an STS marker tightly linked to Yr26 against wheat stripe rust using the resistance gene-analog polymorphism (RGAP) technique. Mol Breed, 2008, 22: 507-515 Lin F, Chen X M. Genetics and molecular mapping of genes race-specific all-stageresistance and non-race-specific high-temperature adult-plant resistance to stripe rust in spring wheat cultivar Alpowa. Theor Appl Genet, 2007, 114: 1277-1287 [14]Xiao W K, Zhao J, Fan S C, Li L, Dai J R, Xu M L. Mapping of genome-wide resistance gene analogs (RGAs) in maize (Zea mays L.). Theor Appl Genet, 2007, 115: 501-508 [15]Van Ooijen G, Van den Burg H A, Cornelissen B J, Takken F L. Structure and function of resistance proteins in solanaceous plants. Annu Rev Phytopathol,2007, 45: 43-72 [16]Chen R G, Zhang L Y, Zhang J H, Xiao J H, Li H X, Ye Z B. CaMi, a rootknot nematode resistance gene from hot pepper (Capsium annuum L.) confersne- matode resistance in tomato. Plant Cell Rep, 2007, 26: 895-905 [17]Chen X M, Line R F, Leung H. Genome scanning for resistance-gene analogs in rice, barley, and wheat by high-resolution electrophoresis. Theor Appl Genet, 1998, 97: 345-355 [18]Lin F, Chen X M. Molecular mapping of genes for race-specific overall resistance to stripe rust in wheat cultivar express. Theor Appl Genet, 2008, 116: 797-806 [19]Madsen L H, Collins N S, Rakwalska M, Backes G, SandalN, Krusell L, Jensen J, Waterman E H. Barley disease resistance gene analogs of the NBS-LRR class: identification and mapping. Mol Genet Gen, 2003, 269: 150-161 [20]Yan G P, Chen X M. Molecular mapping of a recessive gene for resistance to stripe rust in barley. Theor Appl Genet, 2006, 113: 529-537 [21]Yan, G P, Chen X M. Molecular mapping of the rps:Arecessive gene for resistance to stripe rust in BBA 2890 barley. Phytopathology, 2007, 97: 668-673
Cregan P, Shoemaker R C. Expression and genome organization of resistance gene analogs in soy bean. Genome, 2000, 43: 86-93 [23]Quint M, Mihaljevic R, Dussle C M, Xu M L, Melchinger A E, Lübberstedt T. Development of RGA-CAPS markers and genetic mapping of candidate genes for sugarcane mosaic virus resistance in maize. Theor Appl Genet, 2002, 105: 355-363
Wu J L, Lee S W, Baraoidan M, George M L, Cohen M B, Hulbert S H, Leach J E, Leung H. Candidate defense genes from rice, barley, and maize and their association with qualitative and quantitative resistance in rice. Mol Plant Microbe Interact, 2003, 16: 14-24 [25]Li Z F, Zheng T C, He Z H, Li G Q,Xu S C, Li X P, Yang G Y, Singh R P, Xia X C. Molecular tagging of stripe rust resistance gene YrZH84 in Chinese wheat line Zhou 8425B. Theor Appl Genet, 2006, 112: 1098-1103 [26]Lincoln S, Daly M, Lander E. Constructing genetic maps with MAPMAKER /EXP3.0, 3rd edn. In: Whitehead Institute Technical Report, Cambridge, Massachusetts, 1992 [27]Ling H Q, Zhu Y, Keller B. High-resolution mapping of the leaf rust disease resistance gene Lr1 in wheat and characterization of BAC clones from the Lr1 locus. Theor Appl Genet, 2003, 106: 875-882 [28]Smith P H, Hadfield J, Hart N J, Koebner R M, Boyd L A. STS markers for the wheat yellow rust resistance gene Yr5 suggest a NBS-LRR-type resistance gene cluster. Genome, 2007,50: 259-265 |
[1] | JIN Yi-Rong, LIU Jin-Dong, LIU Cai-Yun, JIA De-Xin, LIU Peng, WANG Ya-Mei. Genome-wide association study of nitrogen use efficiency related traits in common wheat (Triticum aestivum L.) [J]. Acta Agronomica Sinica, 2021, 47(3): 394-404. |
[2] | ZHANG Ping-Ping,YAO Jin-Bao,WANG Hua-Dun,SONG Gui-Cheng,JIANG Peng,ZHANG Peng,MA Hong-Xiang. Soft wheat quality traits in Jiangsu province and their relationship with cookie making quality [J]. Acta Agronomica Sinica, 2020, 46(4): 491-502. |
[3] | Di JIN,Dong-Zhi WANG,Huan-Xue WANG,Run-Zhi LI,Shu-Lin CHEN,Wen-Long YANG,Ai-Min ZHANG,Dong-Cheng LIU,Ke-Hui ZHAN. Fine mapping and candidate gene analysis of awn inhibiting gene B2 in common wheat [J]. Acta Agronomica Sinica, 2019, 45(6): 807-817. |
[4] | Fang-Ping YANG,Jin-Dong LIU,Ying GUO,Ao-Lin JIA,Wei-E WEN,Kai-Xiang CHAO,Ling WU,Wei-Yun YUE,Ya-Chao DONG,Xian-Chun XIA. QTL mapping of adult-plant resistance to stripe rust in wheat variety holdfast [J]. Acta Agronomica Sinica, 2019, 45(12): 1832-1840. |
[5] | Yong-Jie MIAO, Jun YAN, De-Hui ZHAO, Yu-Bing TIAN, Jun-Liang YAN, Xian-Chun XIA, Yong ZHANG, Zhong-Hu HE. Relationship between Grain Filling Parameters and Grain Weight in Leading Wheat Cultivars in the Yellow and Huai Rivers Valley [J]. Acta Agronomica Sinica, 2018, 44(02): 260-267. |
[6] | XIAO Yong-Gui,Susanne DREISIGACKER,Claudia NU?EZ-RíOS,HU Wei-Guo,XIA Xian-Chun,HE Zhong-Hu. dsDNA Fluorescent Quantification and Genotyping in Common Wheat by FLUOstar System [J]. Acta Agron Sin, 2017, 43(07): 947-953. |
[7] | DONG Xue,LIU Meng,ZHAO Xian-Lin,FENG Yu-Mei,YANG Yan. Isolation and Characterization of LMW-GS Glu-A3 in Common Wheat Related Species [J]. Acta Agron Sin, 2017, 43(06): 829-838. |
[8] | LIU Kai,DENG Zhi-Ying,ZHANG Ying,WANG Fang-Fang,LIU Tong-Tong,LI Qing-Fang,SHAO Wen,ZHAO Bin,TIAN Ji-Chun*,CHEN Jian-Sheng*. Linkage Analysis and Genome-Wide Association Study of QTLs Controlling Stem-Breaking-Strength-Related Traits in Wheat [J]. Acta Agron Sin, 2017, 43(04): 483-495. |
[9] | GONG Xi,JIANG Yun-Feng,XU Bin-Jie,QIAO Yuan-Yuan,HUA Shi-Yu,WU Wang,MA Jian,ZHOU Xiao-Hong,QI Peng-Fei,LAN Xiu-Jin. Mapping QTLs for Awn Length in Recombinant Inbred Line Population Derived from the Cross between Common Wheat and Tibetan Semi-wild Wheat [J]. Acta Agron Sin, 2017, 43(04): 496-500. |
[10] | XU Wen,SHEN Hao,GUO Jun,YU Xiao-Cong,LI Xiang,YANG Yan-Hui,MA Xiao,ZHAO Shi-Jie,SONG Jian-Min. Drought Resistance of Wheat NILs with Different Cuticular Wax Contents in Flag Leaf [J]. Acta Agron Sin, 2016, 42(11): 1700-1707. |
[11] | WANG Xin,MA Ying-Xue,YANG Yang,WANG Dan-Feng,YIN Hui-Juan,WANG Hong-Gang. Identification of Dwarfing Wheat Germplasm SN224 and Analysis of QTLs for Its Agronomic Characters [J]. Acta Agron Sin, 2016, 42(08): 1134-1142. |
[12] | LIU Kai,DENG Zhi-Ying,LI Qing-Fang,ZHANG Ying,SUN Cai-Ling,TIAN Ji-Chun*,CHEN Jian-Sheng*. Mapping QTLs For Wheat Panicle Traits with High Density SNP Genetic Map [J]. Acta Agron Sin, 2016, 42(06): 820-831. |
[13] | ZHAO De-Hui,YAN Jun,HUANG Yu-Lian,XIA Xian-Chun,ZHANG Yan,TIAN Yu-Bing,HE Zhong-Hu,ZHANG Yong. Effect of 1BL/1RS Translocation on Gluten Protein Fraction Quantities and Dough Rheological Properties [J]. Acta Agron Sin, 2015, 41(11): 1648-1656. |
[14] | XIAO Yong-Gui, LI Si-Min, LI Fa-Ji, ZHANG Hong-Yan, CHEN Xin-Min, WANG De-Sen, XIA Xian-Chun, HE Zhong-Hu. Genetic Analysis of Yield and Physiological Traits in Elite Parent Jing 411 and Its Derivatives under Two Fertilization Environments [J]. Acta Agron Sin, 2015, 41(09): 1333-1342. |
[15] | ANG Li,HUANG Yu-Lian,CHANG Ping,YAN Jun,ZHANG Ye-Lun,XIA Xian-Chun,TIAN Yu-Bing,HE Zhong-Hu,ZHANG Yong. QTL Mapping for Arabinoxylans Content and Its Relationship with Processing Quality in Common Wheat [J]. Acta Agron Sin, 2014, 40(09): 1695-1701. |
|