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Articles citing this paper

Quantitative trait loci on chromosome 4B for coleoptile length and early vigour in wheat (Triticum aestivum L.)

G. J. Rebetzke, R. Appels, A. D. Morrison, R. A. Richards, G. McDonald, M. H. Ellis, W. Spielmeyer and D. G. Bonnett
52(12) pp.1221 - 1234


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LI Cun-dong, BAI Zhi-ying, Ye G, Miyagi M, Chapman S, Reader SM, LIU Chun-ji
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Genome‐wide association mapping of agronomic traits and grain characteristics in spring wheat under conventional and organic management systems
Semagn Kassa, Iqbal Muhammad, N'Diaye Amidou, Pozniak Curtis J., Ciechanowska Izabela, Barbu Steliana‐Paula, Spaner Dean
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Duan Shan, Zhao Zhangchen, Qiao Yue, Cui Chunge, Condon Anthony G., Chen Liang, Hu Yin‐Gang
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RAQUIN A.‐L., BRABANT P., RHONÉ B., BALFOURIER F., LEROY P., GOLDRINGER I.
Molecular Ecology. 2008 17(3). p.741
Managing and Breeding Wheat for Organic Systems (2014)
Asif Muhammad, Iqbal Muhammad, Randhawa Harpinder, Spaner Dean
Inheritance of coleoptile tiller appearance and size in wheat
Rebetzke G. J., López-Castañeda C., Acuña T. L. Botwright, Condon A. G., Richards R. A.
Australian Journal of Agricultural Research. 2008 59(9). p.863
GAR dwarf gene Rht14 reduced plant height and affected agronomic traits in durum wheat (Triticum durum)
Duan Shan, Zhao Zhangchen, Qiao Yue, Cui Chunge, Morgunov Alexey, Condon Anthony G., Chen Liang, Hu Yin-Gang
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Wang Jiankang, Chapman Scott C., Bonnett David G., Rebetzke Greg J.
Theoretical and Applied Genetics. 2009 119(1). p.65
Crop Physiology (2009)
McDonald Glenn K., Gill Gurjeet S.
Cell length instead of cell number becomes the predominant factor contributing to hypocotyl length genotypic differences under abiotic stress in Medicago truncatula
Youssef Chvan, Aubry Catherine, Montrichard Françoise, Beucher Daniel, Juchaux Marjorie, Ben Cécile, Prosperi Jean‐Marie, Teulat Béatrice
Physiologia Plantarum. 2016 156(1). p.108
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Genomic regions and underlying candidate genes associated with coleoptile length under deep sowing conditions in a wheat RIL population
Singh Kalpana, Shukla Sanyukta, Kadam Suhas, Semwal Vimal Kumar, Singh Nagendra Kumar, Khanna-Chopra Renu
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Genomic Regions for Embryo Size and Early Vigour in Multiple Wheat (Triticum aestivum L.) Populations
Moore Chris, Rebetzke Greg
Agronomy. 2015 5(2). p.152
Genetic analysis of coleoptile length and diameter in wheat
Rebetzke G. J., Richards R. A., Sirault X. R. R., Morrison A. D.
Australian Journal of Agricultural Research. 2004 55(7). p.733
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Vikhe Parimal, Patil Ravindra, Chavan Ajit, Oak Manoj, Tamhankar Shubhada
Molecular Breeding. 2017 37(3).
Molecular markers: actual and potential contributions to wheat genome characterization and breeding
Landjeva Svetlana, Korzun Viktor, Börner Andreas
Euphytica. 2007 156(3). p.271
Mapping quantitative trait loci associated with root penetration ability of wheat in contrasting environments
Botwright Acuña T. L., Rebetzke G. J., He X., Maynol E., Wade L. J.
Molecular Breeding. 2014 34(2). p.631
Türkiye Ekmeklik Buğday Genotiplerinde Tescil Yılı ile Bitki Boyu, Çim Kını Uzunluğu ve Tane Verimi Arasındaki İlişkiler
BAYRAM Sinan, ÖZTÜRK Ali, AYDIN Murat
Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi. 2017  p.7
Agronomic assessment of the durum
Rebetzke G. J., Rattey A. R., Bovill W. D., Richards R. A., Brooks B. J., Ellis M., Palta Jairo
Crop & Pasture Science. 2022 73(4). p.325
Genetic analysis and QTL mapping of a novel reduced height gene in common wheat (Triticum aestivum L.)
ZHOU Chun-yun, XIONG Hong-chun, LI Yu-ting, GUO Hui-jun, XIE Yong-dun, ZHAO Lin-shu, GU Jia-yu, ZHAO Shi-rong, DING Yu-ping, SONG Xi-yun, LIU Lu-xiang
Journal of Integrative Agriculture. 2020 19(7). p.1721
Increase in coleoptile length and establishment by Lcol-A1, a genetic locus with major effect in wheat
Bovill William D., Hyles Jessica, Zwart Alexander B., Ford Brett A., Perera Geetha, Phongkham Tanya, Brooks Brenton J., Rebetzke Gregory J., Hayden Matthew J., Hunt James R., Spielmeyer Wolfgang
BMC Plant Biology. 2019 19(1).
Relationship between QTL for grain shape, grain weight, test weight, milling yield, and plant height in the spring wheat cross RL4452/‘AC Domain’
Cabral Adrian L., Jordan Mark C., Larson Gary, Somers Daryl J., Humphreys D. Gavin, McCartney Curt A., Zhang Aimin
PLOS ONE. 2018 13(1). p.e0190681
A natural variation in Ribonuclease H-like gene underlies Rht8 to confer “Green Revolution” trait in wheat
Chai Lingling, Xin Mingming, Dong Chaoqun, Chen Zhaoyan, Zhai Huijie, Zhuang Junhong, Cheng Xuejiao, Wang Naijiao, Geng Jia, Wang Xiaobo, Bian Ruolin, Yao Yingyin, Guo Weilong, Hu Zhaorong, Peng Huiru, Bai Guihua, Sun Qixin, Su Zhenqi, Liu Jie, Ni Zhongfu
Molecular Plant. 2022 15(3). p.377
Molecular mapping of genes for Coleoptile growth in bread wheat (Triticum aestivum L.)
Rebetzke G. J., Ellis M. H., Bonnett D. G., Richards R. A.
Theoretical and Applied Genetics. 2007 114(7). p.1173
Doubled Haploid Production in Crop Plants (2003)
Forster B. P., Thomas W. T. B.
Genetic control of duration of pre-anthesis phases in wheat (Triticum aestivum L.) and relationships to leaf appearance, tillering, and dry matter accumulation
Borràs-Gelonch Gisela, Rebetzke Greg J., Richards Richard A., Romagosa Ignacio
Journal of Experimental Botany. 2012 63(1). p.69
Molecular mapping of genomic regions associated with wheat seedling growth under osmotic stress
Landjeva S., Neumann K., Lohwasser U., Börner A.
Biologia plantarum. 2008 52(2). p.259
Conditional and unconditional QTL mapping of drought-tolerance-related traits of wheat seedling using two related RIL populations
ZHANG HONG, CUI FA, WANG LIN, LI JUN, DING ANMING, ZHAO CHUNHUA, BAO YINGUANG, YANG QIUPING, WANG HONGGANG
Journal of Genetics. 2013 92(2). p.213
Genome-Wide Association Study Uncovers Genomic Regions Associated with Coleoptile Length in a Worldwide Collection of Oat
Zhou Pingping, Liu Yuankun, Yang Mengxian, Yan Honghai
Genes. 2024 15(4). p.411
Improving process-based crop models to better capture genotype×environment×management interactions
Wang Enli, Brown Hamish E, Rebetzke Greg J, Zhao Zhigan, Zheng Bangyou, Chapman Scott C
Journal of Experimental Botany. 2019 70(9). p.2389
Longer coleoptiles improve emergence through crop residues to increase seedling number and biomass in wheat (Triticum aestivum L.)
Rebetzke G. J., Bruce S. E., Kirkegaard J. A.
Plant and Soil. 2005 272(1-2). p.87
Identification of QTLs for seedling vigor in winter wheat
Li Xing-Mao, Chen Xin-Min, Xiao Yong-Gui, Xia Xian-Chun, Wang De-Sen, He Zhong-Hu, Wang Hua-Jun
Euphytica. 2014 198(2). p.199
Quantitative trait loci analysis of zinc efficiency and grain zinc concentration in wheat using whole genome average interval mapping
Genc Y., Verbyla A. P., Torun A. A., Cakmak I., Willsmore K., Wallwork H., McDonald G. K.
Plant and Soil. 2009 314(1-2). p.49
Wheat Science and Trade (2009)
Wrigley Colin, Asenstorfer Robert, Batey Ian, Cornish Geoffrey, Day Li, Mares Daryl, Mrva Kolumbina
Flour yield QTLs in three Australian doubled haploid wheat populations
Lehmensiek A., Eckermann P. J., Verbyla A. P., Appels R., Sutherland M. W., Martin D., Daggard G. E.
Australian Journal of Agricultural Research. 2006 57(10). p.1115
Novel Natural Allelic Variations at the Rht‐1 Loci in Wheat
Li Aixia, Yang Wenlong, Lou Xueyuan, Liu Dongcheng, Sun Jiazhu, Guo Xiaoli, Wang Jing, Li Yiwen, Zhan Kehui, Ling Hong‐Qing, Zhang Aimin
Journal of Integrative Plant Biology. 2013 55(11). p.1026
Mapping Quantitative Trait Loci for Long Coleoptile in Chinese Wheat Landrace Wangshuibai
Yu Jian‐Bin, Bai Gui‐Hua
Crop Science. 2010 50(1). p.43
Identification of modifiers of the plant height in wheat using an induced dwarf mutant controlled by RhtB4c allele
Agarwal Priyanka, Balyan H. S., Gupta P. K.
Physiology and Molecular Biology of Plants. 2020 26(11). p.2283
Wheat Science and Trade (2009)
Rebetzke Greg J., Chapman Scott C., McIntyre C. Lynne, Richards Richard A., Condon Anthony G., Watt Michelle, van Herwaarden Anthony F.
Wheat genotypes with high early vigour accumulate more nitrogen and have higher photosynthetic nitrogen use efficiency during early growth
Pang Jiayin, Palta Jairo A., Rebetzke Gregory J., Milroy Stephen P.
Functional Plant Biology. 2014 41(2). p.215
Genome-wide association study reveals genetic architecture of coleoptile length in wheat
Li Genqiao, Bai Guihua, Carver Brett F., Elliott Norman C., Bennett Rebecca S., Wu Yanqi, Hunger Robert, Bonman J. Michael, Xu Xiangyang
Theoretical and Applied Genetics. 2017 130(2). p.391
Scale and Complexity in Plant Systems Research (2007)
Chapman S.C., Wang J., Rebetzke G.J., Bonnett D.G.
Exploiting the Rht portfolio for hybrid wheat breeding
Würschum Tobias, Liu Guozheng, Boeven Philipp H. G., Longin C. Friedrich H., Mirdita Vilson, Kazman Ebrahim, Zhao Yusheng, Reif Jochen C.
Theoretical and Applied Genetics. 2018 131(7). p.1433
Green revolution ‘stumbles’ in a dry environment: Dwarf wheat with Rht genes fails to produce higher grain yield than taller plants under drought
Jatayev Satyvaldy, Sukhikh Igor, Vavilova Valeriya, Smolenskaya Svetlana E., Goncharov Nikolay P., Kurishbayev Akhylbek, Zotova Lyudmila, Absattarova Aiman, Serikbay Dauren, Hu Yin‐Gang, Borisjuk Nikolai, Gupta Narendra K., Jacobs Bertus, de Groot Stephan, Koekemoer Francois, Alharthi Badr, Lethola Katso, Cu Dan T., Schramm Carly, Anderson Peter, Jenkins Colin L. D., Soole Kathleen L., Shavrukov Yuri, Langridge Peter
Plant, Cell & Environment. 2020 43(10). p.2355
Wheat Seedling Emergence from Deep Planting Depths and Its Relationship with Coleoptile Length
Mohan Amita, Schillinger William F., Gill Kulvinder S., Niedz Randall P.
PLoS ONE. 2013 8(9). p.e73314
Genomewide association study for seeding emergence and tiller number using SNP markers in an elite winter wheat population
CHEN GUANG FENG, WU RU GANG, LI DONG MEI, YU HAI XIA, DENG ZHIYING, TIAN JI CHUN
Journal of Genetics. 2017 96(1). p.177
Phenotypic and transcriptomic characterization of a wheat tall mutant carrying an induced mutation in the C-terminal PFYRE motif of RHT-B1b
Mo Youngjun, Pearce Stephen, Dubcovsky Jorge
BMC Plant Biology. 2018 18(1).
Makarnalık Yerel Buğday Genotiplerinin (Triticum durum L.) Bazı Tarımsal Özellikler Bakımından Karakterizasyonu
AKTAŞ Hüsnü, DURMAZ Abdurrahman
Tekirdağ Ziraat Fakültesi Dergisi. 2023 20(4). p.740
Isolation of the dwarfing Rht-B1p (Rht17) gene from wheat and the development of an allele-specific PCR marker
Bazhenov M. S., Divashuk M. G., Amagai Y., Watanabe N., Karlov G. I.
Molecular Breeding. 2015 35(11).
Agronomic assessment of the wheat semi-dwarfing gene Rht8 in contrasting nitrogen treatments and water regimes
Kowalski Ania M., Gooding Mike, Ferrante Ariel, Slafer Gustavo A., Orford Simon, Gasperini Debora, Griffiths Simon
Field Crops Research. 2016 191 p.150
Mapping genomic regions of moisture deficit stress tolerance using backcross inbred lines in wheat (Triticum aestivum L.)
Puttamadanayaka Shashikumara, Harikrishna , Balaramaiah Manu, Biradar Sunil, Parmeshwarappa Sunilkumar V., Sinha Nivedita, Prasad S. V. Sai, Mishra P. C., Jain Neelu, Singh Pradeep Kumar, Singh Gyanendra Pratap, Prabhu Kumble Vinod
Scientific Reports. 2020 10(1).
Whole Genome Association Mapping of Plant Height in Winter Wheat (Triticum aestivum L.)
Zanke Christine D., Ling Jie, Plieske Jörg, Kollers Sonja, Ebmeyer Erhard, Korzun Viktor, Argillier Odile, Stiewe Gunther, Hinze Maike, Neumann Kerstin, Ganal Martin W., Röder Marion S., Hernandez Pilar
PLoS ONE. 2014 9(11). p.e113287
Identification of a novel and plant height-independent QTL for coleoptile length in barley and validation of its effect using near isogenic lines
Gao Shang, Su Zhouyang, Ma Jun, Ma Jian, Liu Chunji, Li Huihui, Zheng Zhi
Theoretical and Applied Genetics. 2024 137(3).
Fine mapping and characterization of a major QTL for plant height on chromosome 5A in wheat
Li Lingli, Xu Dengan, Bian Yingjie, Liu Bingyan, Zeng Jianqi, Xie Lina, Liu Siyang, Tian Xiuling, Liu Jindong, Xia Xianchun, He Zhonghu, Zhang Yan, Zhang Yong, Cao Shuanghe
Theoretical and Applied Genetics. 2023 136(7).
Phenotyping and Identification of Reduced Height (Rht) Alleles (Rht-B1b and Rht-D1b) in a Nepali Spring Wheat (Triticum aestivum L.) Diversity Panel to Enable Seedling Vigor Selection
Khadka Kamal, Kaviani Mina, Raizada Manish N., Navabi Alireza
Agronomy. 2021 11(12). p.2412
Response to selection, combining ability and heritability of coleoptile length in winter wheat
Murphy K., Balow K., Lyon S. R., Jones S. S.
Euphytica. 2008 164(3). p.709
Use of a large multiparent wheat mapping population in genomic dissection of coleoptile and seedling growth
Rebetzke Greg J., Verbyla Arunas P., Verbyla Klara L., Morell Matthew K., Cavanagh Colin R.
Plant Biotechnology Journal. 2014 12(2). p.219
Understanding the relationships between genetic and phenotypic structures of a collection of elite durum wheat accessions
Royo Conxita, Maccaferri Marco, Álvaro Fanny, Moragues Marc, Sanguineti Maria Corinna, Tuberosa Roberto, Maalouf Fouad, Moral Luis F. García del, Demontis Andrea, Rhouma Sayar, Nachit Miloudi, Nserallah Nasserlehaq, Villegas Dolors
Field Crops Research. 2010 119(1). p.91
Detection of quantitative trait loci (QTLs) for seedling traits and drought tolerance in wheat using three related recombinant inbred line (RIL) populations
Zhang Hong, Cui Fa, Wang Honggang
Euphytica. 2014 196(3). p.313
Quantitative trait loci analysis for resistance to Cephalosporium stripe, a vascular wilt disease of wheat
Quincke Martin C., Peterson C. James, Zemetra Robert S., Hansen Jennifer L., Chen Jianli, Riera-Lizarazu Oscar, Mundt Christopher C.
Theoretical and Applied Genetics. 2011 122(7). p.1339
Mapping QTLs for nitrogen uptake in relation to the early growth of wheat (Triticum aestivum L.)
An Diaoguo, Su Junying, Liu Quanyou, Zhu Yongguan, Tong Yiping, Li Junming, Jing Ruilian, Li Bin, Li Zhensheng
Plant and Soil. 2006 284(1-2). p.73
Suppression of glucan, water dikinase in the endosperm alters wheat grain properties, germination and coleoptile growth
Bowerman Andrew F., Newberry Marcus, Dielen Anne‐Sophie, Whan Alex, Larroque Oscar, Pritchard Jenifer, Gubler Frank, Howitt Crispin A., Pogson Barry J., Morell Matthew K., Ral Jean‐Philippe
Plant Biotechnology Journal. 2016 14(1). p.398
Gibberellin-responsive and -insensitive dwarfing alleles on wheat performance in contrasting tillage systems
Uppal R.K., Gooding M.J.
Field Crops Research. 2013 141 p.55
The Photoperiod-Insensitive Allele Ppd-D1a Promotes Earlier Flowering in Rht12 Dwarf Plants of Bread Wheat
Chen Liang, Du Yingying, Lu Qiumei, Chen Hua, Meng Ruishuang, Cui Chunge, Lu Shan, Yang Yang, Chai Yongmao, Li Juan, Liu Lulu, Qi Xiangning, Li Hang, Mishina Kohei, Yu Fei, Hu Yin-Gang
Frontiers in Plant Science. 2018 9
Cereals and Millets (2006)
Varshney Rajeev K., Balyan Harindra S., Langridge Peter
Genetic effect of dwarfing gene Rht13 compared with Rht-D1b on plant height and some agronomic traits in common wheat (Triticum aestivum L.)
Wang Yushen, Chen Liang, Du Yingying, Yang Zhiyuan, Condon Anthony Gerard, Hu Yin-Gang
Field Crops Research. 2014 162 p.39
Molecular mapping of gibberellin-responsive dwarfing genes in bread wheat
Ellis M. H., Rebetzke G. J., Azanza F., Richards R. A., Spielmeyer W.
Theoretical and Applied Genetics. 2005 111(3). p.423
The contribution of the gibberellin-insensitive semi-dwarfing (Rht) genes to genetic variation in wheat seedling growth in response to osmotic stress
LANDJEVA S., KORZUN V., STOIMENOVA E., TRUBERG B., GANEVA G., BÖRNER A.
The Journal of Agricultural Science. 2008 146(3). p.275
The effect of different height reducing genes on the early growth of wheat
Ellis Marc H., Rebetzke Greg J., Chandler Peter, Bonnett David, Spielmeyer Wolfgang, Richards Richard A.
Functional Plant Biology. 2004 31(6). p.583
Recent Progress in Germplasm Evaluation and Gene Mapping to Enable Breeding of Drought-Tolerant Wheat
Khadka Kamal, Raizada Manish N., Navabi Alireza
Frontiers in Plant Science. 2020 11
Comparing the effects of GA-responsive dwarfing genes Rht13 and Rht8 on plant height and some agronomic traits in common wheat
Wang Yushen, Du Yingying, Yang Zhiyuan, Chen Liang, Condon Anthony Gerard, Hu Yin-Gang
Field Crops Research. 2015 179 p.35
A modern Green Revolution gene for reduced height in wheat
Würschum Tobias, Langer Simon M., Longin C. Friedrich H., Tucker Matthew R., Leiser Willmar L.
The Plant Journal. 2017 92(5). p.892
The Influence of Climatic Variations on the Stability of Wheat Plant Height
Barbu Steliana Paula, Giura Aurel, Cristina Daniel, Cornea Călina Petruţa
“Agriculture for Life, Life for Agriculture” Conference Proceedings. 2018 1(1). p.508
Genome‐wide association analysis of coleoptile length and interaction with plant height in durum wheat
Sesiz Uğur, Alsaleh Ahmad, Bektas Harun, Topu Mustafa, Özkan Hakan
Agronomy Journal. 2024 116(1). p.1
Seedling growth under osmotic stress and agronomic traits in Bulgarian semi-dwarf wheat: comparison of genotypes with Rht8 and/or Rht-B1 genes
Landjeva Svetlana, Karceva Tania, Korzun Viktor, Ganeva Ganka
Crop and Pasture Science. 2011 62(12). p.1017
Comparison of Single-Trait and Multi-Trait Genome-Wide Association Models and Inclusion of Correlated Traits in the Dissection of the Genetic Architecture of a Complex Trait in a Breeding Program
Merrick Lance F., Burke Adrienne B., Zhang Zhiwu, Carter Arron H.
Frontiers in Plant Science. 2022 12
Dwarfing genes Rht4 and Rht-B1b affect plant height and key agronomic traits in common wheat under two water regimes
Liu Yuxiu, Zhang Junli, Hu Yin-Gang, Chen Jianli
Field Crops Research. 2017 204 p.242
A QTL on chromosome 6A in bread wheat (Triticum aestivum) is associated with longer coleoptiles, greater seedling vigour and final plant height
Spielmeyer W., Hyles J., Joaquim P., Azanza F., Bonnett D., Ellis M. E., Moore C., Richards R. A.
Theoretical and Applied Genetics. 2007 115(1). p.59
Plant Abiotic Stress (2013)
Fleury Delphine, Langridge Peter
Distribution of genes associated with yield potential and water-saving in Chinese Zone II wheat detected by developed functional markers
GAO ZHENXIAN, SHI ZHANLIANG, ZHANG AIMIN, GUO JINKAO
Journal of Genetics. 2015 94(1). p.35
Bioinformatics in Agriculture (2022)
Singh Dharmendra, Vyas Pritesh, Negi Chandranandani, Sheikh Imran, Mukhopadhyay Kunal
Impact of “Green Revolution” gene Rht-B1b on coleoptile length of wheat
Xu Dengan, Hao Qianlin, Yang Tingzhi, Lv Xinru, Qin Huimin, Wang Yalin, Jia Chenfei, Liu Wenxing, Dai Xuehuan, Zeng Jianbin, Zhang Hongsheng, He Zhonghu, Xia Xianchun, Cao Shuanghe, Ma Wujun
Frontiers in Plant Science. 2023 14
Modelling impact of early vigour on wheat yield in dryland regions
Zhao Zhigan, Rebetzke Greg J, Zheng Bangyou, Chapman Scott C, Wang Enli
Journal of Experimental Botany. 2019 70(9). p.2535
Environment-oriented selection criteria to overcome controversies in breeding for drought resistance in wheat
Poggi Giovanni Maria, Corneti Simona, Aloisi Iris, Ventura Francesca
Journal of Plant Physiology. 2023 280 p.153895
Global Diversity of the Brachypodium Species Complex as a Resource for Genome-Wide Association Studies Demonstrated for Agronomic Traits in Response to Climate
Wilson Pip B, Streich Jared C, Murray Kevin D, Eichten Steve R, Cheng Riyan, Aitken Nicola C, Spokas Kurt, Warthmann Norman, Gordon Sean P, Accession Contributors, Vogel John P, Borevitz Justin O
Genetics. 2019 211(1). p.317
Effects of specific Rht and Ppd alleles on agronomic traits in winter wheat cultivars grown in middle Europe
Šíp Václav, Chrpová Jana, Žofajová Alžběta, Pánková Kateřina, Užík Martin, Snape John W.
Euphytica. 2010 172(2). p.221
Mapping QTLs for Seminal Root Architecture and Coleoptile Length in Wheat
LIU Xiu-Lin, CHANG Xiao-Ping, LI Run-Zhi, JING Rui-Lian
ACTA AGRONOMICA SINICA. 2011 37(3). p.381
QTLs in barley controlling seedling elongation of deep-sown seeds
Takahashi H., Noda M., Sakurai K., Watanabe A., Akagi H., Sato K., Takeda K.
Euphytica. 2008 164(3). p.761
Covariation for Microsatellite Marker Alleles Associated with Rht8 and Coleoptile Length in Winter Wheat
Bai Guihua, Das Modan K., Carver Brett F., Xu Xiangyang, Krenzer Eugene G.
Crop Science. 2004 44(4). p.1187
Quantitative Trait Loci Analysis for the Effect of Rht‐B1 Dwarfing Gene on Coleoptile Length and Seedling Root Length and Number of Bread Wheat
Li P., Chen J., Wu P., Zhang J., Chu C., See D., Brown‐Guedira G., Zemetra R., Souza E.
Crop Science. 2011 51(6). p.2561
Integrating stay-green and PIN-FORMED genes: PIN-FORMED genes as potential targets for designing climate-resilient cereal ideotypes
Wong Albert Chern Sun, van Oosterom Erik J, Godwin Ian D, Borrell Andrew K, Doherty Colleen
AoB PLANTS. 2023 15(4).
Stress Responses in Plants (2015)
Khanna-Chopra Renu, Singh Kalpana
Novel wheat varieties facilitate deep sowing to beat the heat of changing climates
Zhao Zhigan, Wang Enli, Kirkegaard John A., Rebetzke Greg J.
Nature Climate Change. 2022 12(3). p.291
The dwarf gene Rht15 improved lodging resistance but differentially affected agronomic and quality traits in durum wheat
Zhao Zhangchen, Duan Shan, Hao Jiamin, Cui Chunge, Yang Yang, Condon Anthony G., Chen Feng, Hu Yin-Gang, Chen Liang
Field Crops Research. 2021 263 p.108058
QTL Mapping for Coleoptile Length and Radicle Length in Wheat under Dif-ferent Simulated Moisture Stresses
YUAN Qian-Qian, LI Zhuo-Kun, TIAN Ji-Chun, HAN Shu-Xiao
ACTA AGRONOMICA SINICA. 2011 37(2). p.294
The Rht13 dwarfing gene reduces peduncle length and plant height to increase grain number and yield of wheat
Rebetzke G.J., Ellis M.H., Bonnett D.G., Condon A.G., Falk D., Richards R.A.
Field Crops Research. 2011 124(3). p.323
Coleoptile length and plant height of modern tall and semi-dwarf European winter wheat varieties
Liatukas Žilvinas, Ruzgas Vytautas
Acta Societatis Botanicorum Poloniae. 2011 80(3). p.197
Effects of the GA-responsive dwarfing gene Rht18 from tetraploid wheat on agronomic traits of common wheat
Yang Zhiyuan, Zheng Jiacheng, Liu Caiyun, Wang Yushen, Condon Anthony Gerard, Chen Yaofeng, Hu Yin-Gang
Field Crops Research. 2015 183 p.92
Genotypic increases in coleoptile length improves stand establishment, vigour and grain yield of deep-sown wheat
Rebetzke G.J., Richards R.A., Fettell N.A., Long M., Condon A.G., Forrester R.I., Botwright T.L.
Field Crops Research. 2007 100(1). p.10
Novel Genetic Variants of GA-Insensitive Rht-1 Genes in Hexaploid Wheat and Their Potential Agronomic Value
Tan Mui-Keng, Koval Jason, Ghalayini Aida, Watson Michael
PLoS ONE. 2013 8(7). p.e69690
Assessment of the individual and combined effects of Rht8 and Ppd-D1a on plant height, time to heading and yield traits in common wheat
Zhang Kunpu, Wang Junjun, Qin Huanju, Wei Zhiying, Hang Libo, Zhang Pengwei, Reynolds Matthew, Wang Daowen
The Crop Journal. 2019 7(6). p.845
A Physio-Morphological Trait-Based Approach for Breeding Drought Tolerant Wheat
Khadka Kamal, Earl Hugh J., Raizada Manish N., Navabi Alireza
Frontiers in Plant Science. 2020 11
Fine mapping and candidate gene analysis of dwarf gene Rht14 in durum wheat (Triticum durum)
Duan Shan, Cui Chunge, Chen Liang, Yang Zujun, Hu Yin-Gang
Functional & Integrative Genomics. 2022 22(2). p.141
Reduced height (Rht) and photoperiod insensitivity (Ppd) allele associations with establishment and early growth of wheat in contrasting production systems
Addisu M., Snape J. W., Simmonds J. R., Gooding M. J.
Euphytica. 2009 166(2).
Effects of Rht dwarfing alleles on wheat seed vigour after controlled deterioration
Nagel Manuela, Behrens Anne-Kathrin, Börner Andreas
Crop and Pasture Science. 2013 64(9). p.857
Evaluation of seedling characteristics of wheat (Triticum aestivumL.) through canonical correlation analysis
Erayman Mustafa, Abeyo Bekele, Baenziger P., Budak Hikmet, Eskridge Kent
Cereal Research Communications. 2006 34(4). p.1231
Height reduction and agronomic performance for selected gibberellin-responsive dwarfing genes in bread wheat (Triticum aestivum L.)
Rebetzke G.J., Ellis M.H., Bonnett D.G., Mickelson B., Condon A.G., Richards R.A.
Field Crops Research. 2012 126 p.87
Fine mapping of reduced height locus RHT26 in common wheat
Song Jie, Li Lei, Liu Bingyan, Dong Yachao, Dong Yan, Li Faji, Liu Siyang, Luo Xumei, Sun Mengjing, Ni Zhongqiu, Fei Shuaipeng, Xia Xianchun, Ni Zhongfu, He Zhonghu, Cao Shuanghe
Theoretical and Applied Genetics. 2023 136(3).
The reduced height genes do not affect the root penetration ability in wheat
Kubo K., Jitsuyama Y., Iwama K., Watanabe N., Yanagisawa A., Elouafi I., Nachit M. M.
Euphytica. 2005 141(1-2). p.105
Identification and Fine-Mapping of Quantitative Trait Loci Controlling Plant Height in Central European Winter Triticale (×Triticosecale Wittmack)
Trini Johannes, Maurer Hans Peter, Neuweiler Jan Eric, Würschum Tobias
Plants. 2021 10(8). p.1592
Mapping QTL controlling maize deep-seeding tolerance-related traits and confirmation of a major QTL for mesocotyl length
Zhang Hongwei, Ma Pan, Zhao Zhengnan, Zhao Guangwu, Tian Baohua, Wang Jianhua, Wang Guoying
Theoretical and Applied Genetics. 2012 124(1). p.223
Field-based screening identifies resistance to Sunn pest (Eurygaster integriceps) feeding at vegetative stage in elite wheat genotypes
Emebiri Livinus, El Bousshini Mustapha, Tan Mui-Keng, Ogbonnaya Francis C.
Crop and Pasture Science. 2017 68(2). p.126
A QTL on Chromosome 3B in Bread Wheat (Triticum aestivum) Is Associated with Leaf Width Under Well-Watered and Water-Deficit Conditions
Ma Jun, Du Guangyue, Li Xihuan, Guo Jinkao, Yan Guijun
Plant Molecular Biology Reporter. 2016 34(3). p.690
Plant Breeding Reviews (2012)
Gupta P. K., Balyan H. S., Gahlaut V., Kulwal P. L.

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