Acta Agron Sin ›› 2010, Vol. 36 ›› Issue (3): 526-532.doi: 10.3724/SP.J.1006.2010.00526
• RESEARCH ACTIVITIES • Previous Articles Next Articles
WANG Ming-Xia1,GAO Xiang1,2,*,CHEN Qi-Jiao1,2,DONG Jian1,2,ZHAO Wan-Chun1,2, LI Yan-Liang1,LI Min1,CHEN Rui-Ji1,PANG Hong-Xi1,2,LI zhe-Qing1,2,LIU Jun1,2
| [1] Bushuk W. Wheat cultivar identification by gliadin electrophoregrams. Can J Plant Sci, 1978, 58: 505−515 [2] Harbred N P, Bartels D, Thompson R D. Analysis of the gliadin multigene loci in bread wheat using nulisomic tetrasomic lines. Mol Gen Genet, 1985, 198: 234−242 [3] Wrifley C W, Robinson P J, Williams W T. Association between individual gliadin proteins and quality, agronomic and morphological attributes of wheat cultivars. Aust Agric Res, 1982, 33: 409−418 [4] Redaelli R. Two-dimensional mapping of gliadins using biotypes and null mutants of common wheat cultivar Saratovskaya 29. Hereditas, 1994, 121: 131−137 [5] Peter R, Nigel G. Cereal seed storage proteins: structures properties and role in grain utilization. J Exp Pathol, 2002, 53: 370 [6] Yan Y-M(晏月明), Ru Y-Y(茹岩岩), Yu J-Z(余建中), Liu G-T(刘广田), Prodanovic S. Analysis of gliadin allele composition at Gli-1 and Gli-2 loci in Chinese wheat cultivars. J Agric Biotechnol (农业生物技术学报), 2000, 6(1): 23−27 (in Chinese with English abstract) [7] Branlard G, Dardevet M. Diversity of grain proteins and bread wheat quality I correlation between gliadin bands and flour quality characteristics. Cereal Sci, 1985,13: 329−343 [8] Payne P I. Genetics of wheat storage proteins and the effect of allelic variation on bread-making quality. Annu Rev Genet, 1987, 38: 141−153 [9] Xu Z-F (徐兆飞), Zhang H-Y (张惠叶), Zhang D-Y (张定一). Wheat Quality and Its Improvement (小麦品质及其改良). Beijing: Meteorological Press, 2000. pp 47−51 (in Chinese) [10] Murray H G, Thompson W F. Rapid isolation of high molecular weight DNA. Nucl Acids Res, 1980, 8: 4321−4325 [11] Tamura K, Dudley J, Nei M, Kumar S. MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0. Mol Biol Evol, 2007, 24: 1596−1599 [12] Higo K, Ugawa Y, Iwamoto M, Korenaga T. Plant cis-acting regulatory DNA elements (PLACE) database:1999. Nucl Acids Res, 1999, 27: 297−300 [13] Crooks G E, Hon G, Chandonia J M, Brenner S E. WebLogo: A sequence logo generator. Genome Res, 2004, 14:1188−1190 [14] Schneider T D, Stephens R M. Sequence Logos: A new way to display consensus sequences. Nucl Acids Res, 1990, 18: 6097−6100 [15] Bartels D, Thompson R D. The characterization of cDNA clones coding for wheat storage proteins. Nucl Acids Res, 1983, 11: 2961−2977 [16] Kasarda D D, Okita T W, Bernardin J E. Nucleic acid and amino acid sequences of α-type gliadins from wheat. Proc Natl Acad Sci, 1984, 81: 4712-4716 [17] Jackson E A, Morel M H, T Sontag-Strohm. Proposal for combination the classification system of alleles of Gli-1 and Gli-3 loci in bread wheat. Genet Breed, 1996, 50: 321-336 [18] Anderson O D, Hisa C C, Torres V. The wheat γ-gliadin genes: characterization of ten new sequences and further understanding of γ-gliadin gene family structure. Theor Appl Genet, 2001, 103: 323−330 [19] Yan Y-M(晏月明), Liu G-T(刘广田), Prodanovic S, Zoric D. Genetic and quality improvement on wheat gliadin. Tritical Crops(麦类作物), 1998, 18(1): 1−4 (in Chinese with English abstract) [20] Sun C-X(孙崇荣), Huang W-D(黄伟达). Expression regulation of storage genes in seeds of wheat. Commun Plant Physiol (植物生理学通讯), 1995, 31(1): 71−73 (in Chinese) [21] Thomas M S, Flavell R B. Identification of an enhancer element for the endosperm specific expression of high molecular weight glutenin. Plant Cell, 1990, 2: 1171−1180 [22] Vellanoveth R L, Okita T W. Analysis of nuclear proteins interacting with a wheat gliadin seed storage protein gene. Plant Mol Biol, 1993, 22: 25−41 [23] Gupta R B, MacRcitchie F. Allelic variation at glutenin subunit and gliadin loci, Glu-1, Glu-3, Gli-1 of common wheat: II. Biochemical basis of the allelic effects on dough properties. J Cereal Sic, 1994, 19: 19−29 [24] Vensel W H, Tarr G E, Kasarda D D. C-terminal and internal sequence of a low molecular weight (LMW-s) type of glutenin subunit. Cereal Chem, 1995, 72: 356−359 |
| [1] | Yu Kai-Hang, Zhou Hong-Bin, Luo Liang-Zha, Wang Mei-Li, Jiang Rui-Mei, Dong-Chen Wen-Hua, Li Shi-Jin, Mao Xiao-Qiang, Chen Sheng-Wei. Cloning and expression analysis of the HvLRR-RLK-510 gene encoding a leucine-rich repeat receptor-like kinase in barley [J]. Acta Agronomica Sinica, 2026, 52(2): 421-432. |
| [2] | ZHAN Zong-Bing, JIN Qi-Feng, LIU Di, LYU Ying-Chun, GUO Ying, ZHANG Xue-Ting, HU Meng-Xia, WANG Shang, YANG Fang-Ping. Molecular characterization and evaluation of important traits of landrace wheat Laomangmai in Gansu province, China [J]. Acta Agronomica Sinica, 2025, 51(3): 609-620. |
| [3] | WANG Zhe, HU Yan-Ling, GONG Fang-Yi, YI Rui, ZHAO Shu-Hong, LIU Rui-Qin, LIU Yu-Hang, ZHANG Tian, ZHANG Ya-Zhou, ZHENG You-Liang, LIU Deng-Cai, HUANG Lin, WU Bi-Hua. QTL mapping of grain protein content in the introgression line BAd7-209 derived from wild emmer [J]. Acta Agronomica Sinica, 2025, 51(12): 3238-3250. |
| [4] | HU Yao-Jie, LIU Ya-Ping, ZHENG Jun-Yan, HAN Ting, MA Bo-Jun, YE Ya-Feng, LIU Bin-Mei, CHEN Xi-Feng. Phenotype identification and gene mapping of lesion mimic and early senescence mutant lmes6 in rice [J]. Acta Agronomica Sinica, 2024, 50(11): 2764-2774. |
| [5] | LIU Jia, GONG Fang-Yi, LIU Ya-Xi, YAN Ze-Hong, ZHONG Xiao-Ying, CHEN Hou-Lin, HUANG Lin, and WU Bi-Hua. Genome-wide association study for agronomic traits in common wheat lines derived from wild emmer wheat [J]. Acta Agronomica Sinica, 2023, 49(5): 1184-1196. |
| [6] | JING Xiao-Jing, YANG Xin-Sun, JIN Xiao-Jie, LIU Yi, LEI Jian, WANG Lian-Jun, CHAI Sha-Sha, ZHANG Wen-Ying, JIAO Chun-Hai. Cloning and characterization of IbMAPKK9 gene associated with Fusarium oxysporum f. sp. batatas in sweet potato [J]. Acta Agronomica Sinica, 2023, 49(12): 3289-3301. |
| [7] | 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. |
| [8] | 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. |
| [9] | 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. |
| [10] | Tao FENG,Chun-Yun GUAN. Cloning and characterization of phytochrome interacting factor 4 (BnaPIF4) gene from Brassica napus L. [J]. Acta Agronomica Sinica, 2019, 45(2): 204-213. |
| [11] | 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. |
| [12] | Tao FENG,Chun-Yun GUAN. Cloning and Characterization of Brassinazole-resistant (BnaBZR1 and BnaBES1) CDS from Brassica napus L. [J]. Acta Agronomica Sinica, 2018, 44(12): 1793-1801. |
| [13] | 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. |
| [14] | HAO Xin-Yuan,YUEChuan,TANG Hu,QIAN Wen-Jun,WANG Yu-Chun,WANG Lu, WANG Xin-Chao,YANG Ya-Jun. Cloning of β-amylase Gene (CsBAM3) and ItsExpression ModelResponseto Cold Stress in Tea Plant [J]. Acta Agron Sin, 2017, 43(10): 1417-1425. |
| [15] | 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. |
|
||