Acta Agronomica Sinica ›› 2021, Vol. 47 ›› Issue (5): 869-881.doi: 10.3724/SP.J.1006.2021.01051
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
JIANG Peng1,2(), ZHANG Xu1,3, WU Lei1, HE Yi1, ZHANG Ping-Ping1, MA Hong-Xiang1,*(), KONG Ling-Rang2,*()
[1] | 周延辉, 朱新开, 郭文善, 封超年. 稻茬小麦中高产水平下产量及其构成因素分析. 麦类作物学报, 2018,38:293-297. |
Zhou Y H, Zhu X K, Guo W S, Feng C N. Analysis of yield and yield components of wheat after rice on medium-high-yielding level. J Triticeae Crop, 2018,38:293-297 (in Chinese with English abstract). | |
[2] | 田纪春, 邓志英, 胡瑞波, 王延训. 不同类型超级小麦产量构成因素及籽粒产量的通径分析. 作物学报, 2006,32:1699-1705. |
Tian J C, Deng Z Y, Hu R B, Wang Y X. Yield components of super wheat cultivars with different types and the path coefficient analysis on grain yield. Acta Agron Sin, 2006,32:1699-1705 (in Chinese with English abstract). | |
[3] | 肖世和, 何中虎. 小麦产量潜力和品质的改良. 见: 庄巧生. 中国小麦品种改良及系谱分析. 北京: 中国农业出版社, 2003. pp 497-542. |
Xiao S H, He Z H. Improvement of Wheat Yield Potential and Quality. In: Zhuang Q S eds. Chinese Wheat Improvement and Pedigree. Beijing: China Agriculture Press, 2003. pp 497-542(in Chinese). | |
[4] | Zhang L Y, Liu D C, Guo X L, Yang W L, Sun J Z, Wang D W, Zhang A. Genomic distribution of quantitative trait loci for yield and yield-related traits in common wheat. J Integr Plant Biol, 2010,52:996-1007. |
[5] | Mason R E, Hays D B, Mondal S, Ibrahim A M H, Basnet B R. QTL for yield, yield components and canopy temperature depression in wheat under late sown field conditions. Euphytica, 2013,194:243-259. |
[6] | Hu J, Wang X, Zhang G, Jiang P, Chen W, Hao Y, Ma X, Xu S, Jia J, Kong L, Wang H. QTL mapping for yield-related traits in wheat based on four RIL populations. Theor Appl Genet, 2020,133:917-933. |
[7] | Tura H, Edwards J, Gahlaut V, Garcia M, Sznajder B, Baumann U, Shahinnia F, Reynolds M, Langridge P, Balyan H S, Gupta P K, Schnurbusch T, Fleury D. QTL analysis and fine mapping of a QTL for yield-related traits in wheat grown in dry and hot environments. Theor Appl Genet, 2020,133:239-257. |
[8] | Cavanagh C R, Shiaoman C, Shichen W, Bevan Emma H, Stuart S, Seifollah K, Kerrie F, Cyrille S, Brown-Guedira G L, Alina A. Genome-wide comparative diversity uncovers multiple targets of selection for improvement in hexaploid wheat landraces and cultivars. Proc Natl Acad Sci USA, 2013,110:8057-8062. |
[9] | Wang S, Wong D, Forrest K, Allen A, Chao S, Huang B E, MacCaferri M, Salvi S, Milner S G, Cattivelli L. Characterization of polyploid wheat genomic diversity using a high-density 90,000 single nucleotide polymorphism array. Plant Biotechnol J, 2014,12:787-796. |
[10] | Cui F, Zhang N, Fan X, Zhang W, Zhao C, Yang L, Pan R, Chen M, Han J, Zhao X. Utilization of a wheat 660k SNP array-derived high-density genetic map for high-resolution mapping of a major QTL for kernel number. Sci Rep, 2017,7:3788. |
[11] | Semagn K, Babu R, Hearne S, Olsen M. Single nucleotide polymorphism genotyping using Kompetitive Allele Specific PCR (KASP): overview of the technology and its application in crop improvement. Mol Breed, 2014,33:1-14. |
[12] | 姚金保, 马鸿翔, 张平平, 姚国才, 杨学明, 任丽娟, 张鹏, 周淼平. 小麦优良亲本宁麦9号的研究与利用. 核农学报, 2012,26:17-21. |
Yao J B, Ma H X, Zhang P P, Yao G C, Yang X M, Ren L J, Zhang P, Zhou M P. Research of wheat elite parent Ningmai 9 and its utilization. Acta Agric Nucl Sin, 2012,26:17-21 (in Chinese with English abstract). | |
[13] | 施汉萍, 冯永明, 余敦智, 易峰, 孙丽. “扬麦158”高产栽培技术. 上海农业科技, 2009, (4):84. |
Shi H P, Feng Y M, Yu D Z, Yi F, Sun L. High-yield culture technique of Yangmai 158. Shanghai Agric Sci Technol, 2009, (4):84 (in Chinese). | |
[14] | Lan C, Zhang Y, Herrera-Foessel S A, Basnet B R, Huerta-Espino J, Lagudah E S, Singh R P. Identification and characterization of pleiotropic and co-located resistance loci to leaf rust and stripe rust in bread wheat cultivar Sujata. Theor Appl Genet, 2015,128:549-561. |
[15] | He X, Lillemo M, Shi J, Wu J, Bjørnstad Å, Belova T, Dreisigacker S, Duveiller E, Singh P. QTL characterization of Fusarium head blight resistance in CIMMYT bread wheat line Soru#1. PLoS One, 2016,11:e0158052. |
[16] | Jiang P, Zhang X, Wu L, He Y, Zhuang W, Cheng X, Ge W, Ma H, Kong L. A novel QTL on chromosome 5AL of Yangmai 158 increases resistance to Fusarium head blight in wheat. Plant Pathol, 2020,69:249-258. |
[17] | Meng L, Li H, Zhang L, Wang J. QTL IciMapping: integrated software for genetic linkage map construction and quantitative trait locus mapping in biparental populations. Crop J, 2015,3:269-283. |
[18] | Saghai-Maroof M A, Soliman K M, Jorgensen R A, Allard R W. Ribosomal DNA spacer-length polymorphisms in barley: mendelian inheritance, chromosomal location, and population dynamics. Proc Natl Acad Sci USA, 1984,81:8014-8018. |
[19] | Cuthbert J, Somers D, Brule-Babel A, Brown P, Crow G. Molecular mapping of quantitative trait loci for yield and yield components in spring wheat ( Triticum Aestivum L.). Theor Appl Genet, 2008,117:595-608. |
[20] | Fu Y B, Somers D J. Allelic changes in bread wheat cultivars were associated with long-term wheat trait improvements. Euphytica, 2011,179:209-225. |
[21] | Zheng B S, Le Gouis J, Leflon M, Rong W Y, Laperche A, Brancourt-Hulmel M. Using probe genotypes to dissect QTL × environment interactions for grain yield components in winter wheat. Theor Appl Genet, 2010,121:1501-1517. |
[22] | Zhang H, Zhang F, Li G, Zhang S, Zhang Z, Ma L. Genetic diversity and association mapping of agronomic yield traits in eighty six synthetic hexaploid wheat. Euphytica, 2017,213:111. |
[23] | Cao S, Xu D, Hanif M, Xia X, He Z. Genetic architecture underpinning yield component traits in wheat. Theor Appl Genet, 2020,133:1811-1823. |
[24] | Sherman J D, Martin J M, Blake N K, Lanning S P, Talbert L E. Genetic basis of agronomic differences between a modern and a historical spring wheat cultivar. Crop Sci, 2014,54:1-13. |
[25] | Reif J, Maurer H P, Korzun V, Ebmeyer E, Miedaner T, Würschum T. Mapping QTLs with main and epistatic effects underlying grain yield and heading time in soft winter wheat. Theor Appl Genet, 2011,123:283-292. |
[26] | Roncallo P F, Cervigni G L, Jensen C, Miranda R, Carrera A D, Helguera M, Echenique V. QTL analysis of main and epistatic effects for flour color traits in durum wheat. Euphytica, 2012,185:77-92. |
[27] | Genc Y, Oldach K, Gogel B, Wallwork H, McDonald G K, Smith A B. Quantitative trait loci for agronomic and physiological traits for a bread wheat population grown in environments with a range of salinity levels. Mol Breed, 2013,32:39-59. |
[28] | Zhang J, Dell B, Biddulph B, Khan N, Xu Y, Luo H, Appels R. Vernalization gene combination to maximize grain yield in bread wheat ( Triticum aestivum L.) in diverse environments. Euphytica, 2014,198:439-454. |
[29] | Zorić M, Dodig D, Kobiljski B, Quarrie S, Barnes J. Population structure in a wheat core collection and genomic loci associated with yield under contrasting environments. Genetica, 2012,140:259-275. |
[30] | Sallam A, Amro A, Elakhdar A, Dawood M F A, Moursi Y S, Baenziger P S. Marker-trait association for grain weight of spring barley in well-watered and drought environments. Mol Biol Rep, 2019,46:2907-2918. |
[31] | Yao J, Wang L, Liu L, Zhao C, Zheng Y. Association mapping of agronomic traits on chromosome 2A of wheat. Genetica, 2009,137:67-75. |
[32] | Wang R X, Hai L, Zhang X Y, You G X, Yan C S, Xiao S H. QTL mapping for grain filling rate and yield-related traits in RILs of the Chinese winter wheat population Heshangmai × Yu 8679. Theor Appl Genet, 2009,118:313-325. |
[33] | Lin H, Guo H, Wagner C, Xiao S, Friedt W. Genomic regions for yield and yield parameters in Chinese winter wheat ( Triticum aestivum L.) genotypes tested under varying environments correspond to QTL in widely different wheat materials. Plant Sci, 2008,175:226-232. |
[34] | Su J Y, Zheng Q, Li H W, Li B, Jing R L, Tong Y P, Li Z S. Detection of QTLs for phosphorus use efficiency in relation to agronomic performance of wheat grown under phosphorus sufficient and limited conditions. Plant Sci, 2009,176:824-836. |
[35] | 何中虎, 夏先春, 陈新民, 庄巧生. 中国小麦育种进展与展望. 作物学报, 2011,37:202-215. |
He Z H, Xia X C, Chen X M, Zhuang Q S. Progress of wheat breeding in China and the future perspective. Acta Agron Sin, 2011,37:202-215 (in Chinese with English abstract). | |
[36] | 贾继增, 高丽锋, 赵光耀, 周文斌, 张卫建. 作物基因组学与作物科学革命. 中国农业科学, 2015,48:1-32. |
Jia J Z, Gao L F, Zhao G Y, Zhou W B, Zhang W J. Crop genomics and crop science revolutions. Sci Agric Sin, 2015,48:1-32 (in Chinese with English abstract). | |
[37] | 何中虎, 庄巧生, 程顺和, 于振文, 赵振东, 刘旭. 中国小麦产业发展与科技进步. 农学学报, 2018,8:107-114. |
He Z H, Zhuang Q S, Cheng S H, Yu Z W, Zhao Z D, Liu X. Wheat production and technology improvement in China. J Agric, 2018,8:107-114 (in Chinese with English abstract). | |
[38] | 程顺和, 郭文善, 王龙俊. 中国南方小麦. 南京: 江苏科学技术出版社, 2012. pp 255-259. |
Cheng S H, Guo W S, Wang L J. Wheat in Southern China. Nanjing: Jiangsu Science and Technology Publishing House, 2012. pp 255-259(in Chinese). | |
[39] | 宋健民, 戴双, 李豪圣, 程敦公, 刘爱峰, 曹新有, 刘建军, 赵振东. 山东省近年来审定小麦品种农艺和品质性状演变分析. 中国农业科学, 2013,46:1114-1126. |
Song J M, Dai S, Li H S, Cheng D G, Liu A F, Cao X Y, Liu J J, Zhao Z D. Evolution of agronomic and quality traits of wheat cultivars released in Shandong province recently. Sci Agric Sin, 2013,46:1114-1126 (in Chinese with English abstract). | |
[40] | 沈磊, 赵凯铭. 近年来河南省小麦审定品种主要性状的演变规律. 农业科技通讯, 2016, (1):54-56. |
Shen L, Zhao K M. The evolvement rule for the main characters of wheat cultivars in Henan province in recent years. Bull Agric Sci Technol, 2016, (1):54-56 (in Chinese). | |
[41] | 蒋进, 蒋云, 王淑荣. 四川省近年育成小麦品种农艺性状和品质性状分析. 麦类作物学报, 2019,39:682-691. |
Jiang J, Jiang Y, Wang S R. Agronomic and quality traits of wheat varieties in Sichuan in recent years. J Triticeae Crop, 2019,39:682-691 (in Chinese with English abstract). | |
[42] | 姚国才, 马鸿翔, 姚金保, 张鹏, 杨学明. 长江中下游地区小麦产量育种方向及策略探讨. 中国农学通报, 2010,26(17):168-171. |
Yao G C, Ma H X, Yao J B, Zhang P, Yang X M. The breeding strategies and direction on wheat yield in region of middle and lower reaches of the Yangtze River. Chin Agric Sci Bull, 2010,26(17):168-171 (in Chinese with English abstract). | |
[43] | 王翠玲, 王书子, 张学品, 吴少辉, 段国辉, 吕树作. 冬小麦主要性状的杂种优势测定和遗传分析. 安徽农业科学, 2003,31(2):173-174. |
Wang C L, Wang S Z, Zhang X P, Wu S H, Duan G H, Lyu S Z. Analysis of heterosis and heredity of main characters in winter wheat. J Anhui Agric Sci, 2003,31(2):173-174 (in Chinese with English abstract). | |
[44] | 张晗, 孙加梅, 韩瑞玺, 陈建省, 刘宾, 邓志英, 李汝玉, 田纪春. 基于小麦产量三要素的产量条件QTL分析. 麦类作物学报, 2019,39:46-53. |
Zhang H, Sun J M, Han R X, Chen J S, Liu B, Deng Z Y, Li R Y, Tian J C. Conditional QTL analysis of three yield components in wheat ( Triticum aestivum L.). J Triticeae Crop, 2019,39:46-53 (in Chinese with English abstract). | |
[45] | 卢娟, 姚永定, 史华伟, 史雨刚, 王曙光, 孙黛珍. 小麦产量构成因素相关性状与群体产量的遗传相关分析. 山西农业科学, 2018,46:501-503. |
Lu J, Yao Y D, Shi H W, Shi Y G, Wang S G, Sun D Z. Genetic correlation analysis between yield components related traits and population yield in wheat. J Shanxi Agric Sci, 2018,46:501-503 (in Chinese with English abstract). | |
[46] | 丁安明, 李君, 崔法, 赵春华, 马航运, 王洪刚. 利用小麦关联RIL群体定位产量相关性状QTL. 作物学报, 2011,37:1511-1524. |
Ding A M, Li J, Cui F, Zhao C H, Ma H Y, Wang H G. QTL mapping for yield related traits using two associated RIL populations of wheat. Acta Agron Sin, 2011,37:1511-1524 (in Chinese with English abstract). | |
[47] | Heidari B, Sayed-Tabatabaei B E, Saeidi G, Kearsey M, Suenaga K, Gulick P. Mapping QTL for grain yield, yield components, and spike features in a doubled haploid population of bread wheat. Genome, 2011,54:517-527. |
[48] | Bhusal N, Sarial A K, Sharma P, Sareen S. Mapping QTLs for grain yield components in wheat under heat stress. PLoS One, 2017,12:e0189594. |
[49] | 阎素红, 杨兆生, 柴升. 小麦上三叶性状与产量及其构成因素的关系. 麦类作物学报, 2004,24:39-42. |
Yan S H, Yang Z S, Chai S. Relation between characters of the top-three leaves and yield and its compositions of wheat. J Triticeae Crop, 2004,24:39-42 (in Chinese with English abstract). | |
[50] | Narasimhamoorthy B, Gill B S, Fritz A K, Nelson J C, Brown-Guedira G L. Advanced backcross QTL analysis of a hard winter wheat × synthetic wheat population. Theor Appl Genet, 2006,112:787-796. |
[51] | Campbell B T, Baenziger P S, Gill K S, Eskridge K M, Budak H, Erayman M, Dweikat I, Yen Y. Identification of QTLs and environmental interactions associated with agronomic traits on chromosome 3A of wheat. Crop Sci, 2003,43:1493-1505. |
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