Acta Agron Sin ›› 2015, Vol. 41 ›› Issue (02): 251-258.doi: 10.3724/SP.J.1006.2015.00251
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
ZHANG Yong,ZHANG Xiao,GUO Jie,GAO De-Rong,ZHANG Bo-Qiao*
[1]昝香存, 周桂英, 吴丽娜, 王爽, 胡学旭, 陆伟, 王步军. 我国小麦品质现状分析. 麦类作物学报, 2006, 26(6): 46–49Zan X C, Zhou G Y, Wu L N, Wang S, Hu X X, Lu W, Wang B J. Present status of wheat quality in China. J Triticeae Crops, 2006, 26(6) : 46–49 (in Chinese with English abstract)[2]张伯桥, 张晓, 高德荣, 吕国锋, 朱冬梅, 马谈斌. 吹泡仪参数作为弱筋小麦品质育种选择指标的评价. 麦类作物学报, 2010, 30: 29–33Zhang B Q, Zhang X, Gao D R, Lü G F, Zhu D M, Ma T B. The value of alveograph parameters used as selection index in weak-gluten wheat breeding. J Triticeae Crops, 2010, 30: 29–33 (in Chinese with English abstract)[3]何中虎, 林作楫, 王龙俊, 肖志敏, 万富世, 庄巧生. 中国小麦品质区划的研究. 中国农业科学, 2002, 35: 359–364He Z H, Lin Z J, Wang L J, Xiao Z M, Wan F S, Zhuang Q S. Classification on Chinese wheat regions based on quality. Sci Agric Sin, 2002, 35: 359–364 (in Chinese with English abstract)[4]姚金保, 马鸿翔, 张平平, 姚国才, 杨学明,张鹏. 中国弱筋小麦品质研究进展. 江苏农业学报, 2009, 25: 919–924Yao J B, Ma H X, Zhang P P, Yao G C, Yang X M, Zhang P. Progress on soft wheat quality research in China. Jiangsu J Agric Sci, 2009, 25: 919–924 (in Chinese with English abstract)[5]张晓, 张勇, 高德荣, 别同德, 张伯桥. 中国弱筋小麦育种进展及生产现状. 麦类作物学报, 2012, 32: 184–189Zhang X, Zhang Y, Gao D R, Bie T D, Zhang B Q. The Development and present of weak-gluten situation of its wheat breeding production. J Triticeae Crops, 2012, 32: 184–189 (in Chinese with English abstract)[6]Haynes L C, Bettge A D, Slade L. Soft wheat and flour products methods review: solvent retention capacity equation correction. Cereal Foods World, 2009, 54: 174–175[7]Gaines C. Report of the AACC committee on soft wheat flour. Method 56-11, solvent retention capacity profile. Cereal Foods World, 2000, 45: 303-306[8]Kweon M, Slade L, Levine H. Solvent retention capacity (SRC) testing of wheat flour: principles and value in predicting flour functionality in different wheat-based food processes and in wheat breeding: a review. Cereal Chem, 2011, 88: 537–552[9]Souza E, Guttieri M J. Sources of variation in the solvent retention capacity test of wheat flour. Crop Sci, 2003, 43: 1628–1633[10]夏云祥, 马传喜, 司红起, 乔玉强, 何贤芳. 小麦溶剂保持力的基因型和环境及其互作效应分析. 麦类作物学报, 2008, 28: 448–451Xia Y X, Ma C X, Si H Q, Qiao Y Q, He X F. Effects of genotype, environment and genotype × environment interaction on solvent retention capacity in common wheat. J Triticeae Crops, 2008, 28: 448–451 (in Chinese with English abstract)[11]Souza E, Bowen D, Gannon D, O’Brien K, Guttieri M J. Solvent retention capacities of irrigated soft white spring wheat flours. Crop Sci, 2001, 41: 1054–1061[12]Guttieri M J, McLean R, Lanning S P, Talbert L E, Souza E J. Assessing environmental influences on solvent retention capacities of two soft white spring wheat cultivars. Cereal Chem, 2002, 79: 880–884[13]张岐军, 何中虎, 闫俊, 钱森和, 张艳, 葛秀秀, 王继忠. 溶剂保持力在软质小麦品质评价中的应用. 麦类作物学报, 2004, 24(4): 140–142Zhang Q J, He Z H, Yan J, Qian S H, Zhang Y, Ge X X, Wang J Z. Application of Solvent Retention Capacity in Soft Wheat Quality Evaluation. J Triticeae Crops, 2004, 24(4): 140–142 (in Chinese with English abstract)[14]Guttieri M J, Becker C, Souza E J. Application of wheat meal solvent retention capacity tests within soft wheat breeding populations. Cereal Chem, 2004, 81: 261-266[15]姚金保, Souza E, 马鸿翔, 张平平, 姚国才, 杨学明, 任丽娟, 张鹏. 软红冬小麦品质性状与饼干直径的关系. 作物学报, 2010, 36: 695–700Yao J B, Souza E, Ma H X, Zhang P P, Yao G C, Yang X M, Ren L J, Zhang P. Relationship between quality traits of soft red winter wheat and cookie diameter. Acta Agron Sin, 2010, 36: 695–700 (in Chinese with English abstract)[16]Pasha I, Anjum F M, Butt M. Genotypic variation of spring wheats for solvent retention capacities in relation to end-use quality. LWT-Food Sci Technol, 2009, 42: 418–423[17]Flint-Garcia S A, Thornsberry J M, Buckler E S. Structure of linkage disequilibrium in plants. Annu Rev Plant Biol, 2003, 54: 357–374[18]Thornsberry J M, Goodman M M, Doebley J, Kresovich S, Nielsen D, Buckler E S. Dwarf8 polymorphisms associate with variation in flowering time. Nat Genet, 2001, 28: 286–289[19]Flint-Garcia S A, Thuillet A C, Yu J, Pressoir G, Romero S M, Mitchell S E, Doebley J, Kresovich S, Goodman M M, Buckler E S. Maize association population: a high-resolution platform for quantitative trait locus dissection. Plant J, 2005, 44: 1054–1064[20]Gupta P K, Rustgi S, Kulwal P L. Linkage disequilibrium and association studies in higher plants: present status and future prospects. Plant Mol Biol, 2005, 57: 461–485[21]Bryant R, Proctor A, Hawkridge M, Jackson A, Yeater K, Counce P, Yan W, McClung A, Fjellstrom R. Genetic variation and association mapping of silica concentration in rice hulls using a germplasm collection. Genetica, 2011, 139: 1383–1398[22]张焕欣,翁建峰,张晓聪,刘昌林,雍洪军,郝转芳,李新海. 玉米穗行数全基因组关联分析. 作物学报, 2014, 40: 1–6Zhang H X, Weng J F, Zhang X C, Liu C L, Yong H J, Hao Z F, Li X H, Genome-wide association analysis of kernel row number in maize. Acta Agron Sin, 2014, 40: 1–6 (in Chinese with English abstract)[23]Niedziela A, Bednarek P T, Cichy H, Budzianowski G, Kilian A, Aniol A. Aluminum tolerance association mapping in triticale. BMC Genomics, 2012, 13: 67[24]Wang L, Ge H, Hao C, Dong Y, Zhang X. Identifying loci influencing 1000-kernel weight in wheat by microsatellite screening for evidence of selection during breeding. PloS One, 2012, 7: e29432[25]Campbell K G, Finney P L, Bergman C J, Gualberto D G, Anderson J A, Giroux M J, Siritunga D, Zhu J Q, Gendre F, Roué C, Vérel A, Sorrells M E. Quantitative trait loci associated with milling and baking quality in a soft × hard wheat cross. Crop Sci, 2001, 41: 1275–1285[26]Smith N, Souza E, Sneller C, Sorrells M, Griffey C, Ohm H, Van-Sanford D, Guttieri M J, Sturbaum A K. Association analysis of soft wheat quality traits in eastern US soft winter wheat. 2008 Joint Annual Meeting of ASA-CSSA-SSSA. Oct 3-7, 2008, Houston, TX,USA[27]Bettge A D, Morris C F, Demacon V L, Kidwell K K. Adaption of AACC method 56-11, Solvent retention capacity, for use as an early generation selection for cultivar development. Cereal Chem, 2002, 79: 670–674[28]周淼平, 吴宏亚, 余桂红, 张旭, 马鸿翔. 小麦溶剂保持力微量测定方法的建立. 江苏农业学报, 2007, 23: 270–275Zhou M P, Wu H Y, Yu G H, Zhang X, Ma H X. Microdetermination of solvent retention capacity in wheat. Jiangsu J Agric Sci, 2007, 23: 270–275 (in Chinese with English abstract)[29]Van der Beek J G, Verkerk R, Zabel P, Lindhout P. Mapping strategy for resistance genes in tomato based on RFLPs between cultivars: Cf9 (resistance to Cladosporium fulvum) on chromosome 1. Theor Appl Genet, 1992, 84: 106–112[30]Knapp S J, Stroup W W, Ross W M. Exact confidence intervals for heritability on a progeny mean basis. Crop Sci, 1985, 25: 192–194[31]Liu K, Muse S V. PowerMarker: an integrated analysis environment for genetic marker analysis. Bioinformatics, 2005, 21: 2128–2129[32]Pritchard J K, Stephens M, Donnelly P. Inference of population structure using multilocus genotype data. Genetics, 2000, 155: 945–959[33]Evanno G, Regnaut S, Goudet J. Detecting the number of clusters of individuals using the software STRUCTURE: a simulation study. Mol Ecol, 2005, 14: 2611–2620[34]Yu J, Pressoir G, Briggs W H, Bi I V, Yamasaki M, Doebley J, McMullen M D, Gaut B S, Nielsen D M, Holland J B, Kresovich S, Buckler E S. A unified mixed-model method for association mapping that accounts for multiple levels of relatedness. Nat Genet, 2006, 38: 203–208[35]Somers D J, Isaac P, Edwards K. A high-density microsatellite consensus map for bread wheat (Triticum aestivum L.). Theor Appl Genet, 2004, 109: 1105–1114[36]张勇, 金艳, 张伯桥, 张晓, 徐亮, 徐扬, 徐辰武, 程顺和. 不同来源品种在长江下游麦区的溶剂保持力特性及相关分析. 麦类作物学报, 2012, 32: 750–756Zhang Y, Jin Y, Zhang B Q, Zhang X, Xu L, Xu Y, Xu C W, Cheng S H. Characteristics of solvent retention capacity (SRC) of different varieties planted in the low Yangtze wheat region and analysis on their correlations. J Triticeae Crops, 2012, 32: 750–756 (in Chinese with English abstract)[37]张勇, 金艳, 张伯桥, 张晓, 徐亮, 徐扬, 程顺和, 徐辰武. 我国不同麦区小麦品种的面粉溶剂保持力. 作物学报, 2012, 38: 2131–2137Zhang Y, Jin Y, Zhang B Q, Zhang X, Xu L, Xu Y, Cheng S H, Xu C W. Solvent retention capacities of varieties from different wheat regions in China. Acta Agron Sin, 2012, 38: 2131–2137 (in Chinese with English abstract)[38]马庆. 小麦溶剂保持力的QTL定位及其与加工品质的关系, 扬州: 扬州大学硕士论文, 江苏扬州, 2009Ma Q. QTL Mapping for Common Wheat SRC and Relationship with Processing Quality. MS Thesis of Yangzhou University,Yangzhou, China, 2009 (in Chinese with English abstract) |
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