Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

The emergence of semidwarf and standard wheats, and its association with coleoptile length

BR Whan
16(80) pp.411 - 416


33 articles found in Crossref database.

Evaluation of Near‐Isogenic Lines for Three Height‐Reducing Genes in Hard Red Spring Wheat
Lanning S. P., Martin J. M., Stougaard R. N., Guillen‐Portal F. R., Blake N. K., Sherman J. D., Robbins A. M., Kephart K. D., Lamb P., Carlson G. R., Pumphrey M., Talbert L. E.
Crop Science. 2012 52(3). p.1145
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
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
Developing Wheat for Improved Yield and Adaptation Under a Changing Climate: Optimization of a Few Key Genes
Nazim Ud Dowla M.A.N., Edwards Ian, O'Hara Graham, Islam Shahidul, Ma Wujun
Engineering. 2018 4(4). p.514
Phenology and related traits for wheat adaptation
Hyles Jessica, Bloomfield Maxwell T., Hunt James R., Trethowan Richard M., Trevaskis Ben
Heredity. 2020 125(6). p.417
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
Encyclopedia of Sustainability Science and Technology (2018)
Dreccer M. Fernanda, Bonnett David, Lafarge Tanguy
Do wheat breeders have suitable genetic variation to overcome short coleoptiles and poor establishment in the warmer soils of future climates?
Rebetzke Greg J., Zheng Bangyou, Chapman Scott C.
Functional Plant Biology. 2016 43(10). p.961
Advances in Wheat Breeding (2024)
Kalaycı Müfit, Küçüközdemir Ümran
Registration of ‘Sequoia’ Hard Red Winter Wheat
Carter A. H., Jones S. S., Lyon S. R., Balow K. A., Shelton G. B., Burke A., Higginbotham R. W., Schillinger W. F., Chen X. M., Engle D. A., Morris C. F.
Journal of Plant Registrations. 2017 11(3). p.269
Coleoptile length variation of near-isogenic Rht lines of modern CIMMYT bread and durum wheats
Trethowan R.M, Singh R.P, Huerta-Espino J, Crossa J, van Ginkel M
Field Crops Research. 2001 70(3). p.167
Challenges of breeding for longer coleoptile in bread wheat (Triticum aestivum L.)
Abdolshahi Roohollah, Foroodi-Safat Shahrzad, Mokhtarifar Khadijeh, Ataollahi Razieh, Moud Aliakbar Maghsoudi, Kazemipour Ali, Pourseyedi Shahram, Rahmani Ali
Genetic Resources and Crop Evolution. 2021 68(4). p.1517
Emergence, stand establishment and vigour of deep-sown Australian and CIMMYT wheats
Gooding S., Botwright Acuña T. L., Fox P. N., Wade L. J.
Australian Journal of Experimental Agriculture. 2006 46(9). p.1167
Resistance to water flow in the intracoleoptile internode of wheat
Cornish P. S.
Plant and Soil. 1981 59(1). p.119
Crop improvement for temperate Australia: Future opportunities
Richards R.A.
Field Crops Research. 1991 26(2). p.141
IS DEEP SOWING BENEFICIAL FOR DRY SEASON CROPPING WITHOUT IRRIGATION ON SANDY SOIL WITH SHALLOW WATER TABLE?
BUAKUM B., LIMPINUNTANA V., VORASOOT N., PANNANGPETCH K., BELL R. W.
Experimental Agriculture. 2013 49(3). p.366
Stripe rust reactions of Australasian wheats
Syme J. R., Thompson J. P.
Euphytica. 1986 35(2). p.593
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
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
Emergence of temperate pasture grases from different sowing depths: importance of seed weight, coleoptiele plus mesocotyl length and shoot strength
ANDREWS M., DOUGLAS A., JONES A V, MILBURN C E, PORTER D., McKENZIE B A
Annals of Applied Biology. 1997 130(3). p.549
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
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).
Coleoptile length comparison of three winter small grain cereals adapted to the Great Plains
Alam M., Kashif M., Easterly A. C., Wang F., Boehm J. D., Baenziger P. S.
Cereal Research Communications. 2022 50(1). p.127
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
Breeding Opportunities for Increasing the Efficiency of Water Use and Crop Yield in Temperate Cereals
Richards R. A., Rebetzke G. J., Condon A. G., van Herwaarden A. F.
Crop Science. 2002 42(1). p.111
(1997)
McMaster Gregory S.
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
Crop Science (2019)
Dreccer M. Fernanda, Bonnett David, Lafarge Tanguy
Breeding crops for reduced-tillage management in the intensive, rice–wheat systems of South Asia
Joshi A. K., Chand R., Arun B., Singh R. P., Ortiz Rodomiro
Euphytica. 2007 153(1-2). p.135
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
Opportunities to reduce heat damage in rain-fed wheat crops based on plant breeding and agronomic management
Hunt James R., Hayman Peter T., Richards Richard A., Passioura John B.
Field Crops Research. 2018 224 p.126
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
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

Committee on Publication Ethics


Abstract Export Citation Get Permission