Molecular mapping of durable rust resistance in wheat and its implication in breeding

Paper


Bariana, H. S., Miah, H., Brown, G. N., Willey, N. and Lehmensiek, A.. 2007. "Molecular mapping of durable rust resistance in wheat and its implication in breeding." 7th International Wheat Conference (IWC 2005). Argentina 27 Nov - 02 Dec 2005 https://doi.org/10.1007/1-4020-5497-1_88
Paper/Presentation Title

Molecular mapping of durable rust resistance in wheat and its implication in breeding

Presentation TypePaper
AuthorsBariana, H. S., Miah, H., Brown, G. N., Willey, N. and Lehmensiek, A.
Journal or Proceedings TitleProceedings of the 7th International Wheat Conference (IWC 2005)
Journal Citation12, pp. 723-728
Year2007
ISBN9781402054969
Digital Object Identifier (DOI)https://doi.org/10.1007/1-4020-5497-1_88
Web Address (URL) of Paperhttps://link.springer.com/chapter/10.1007/1-4020-5497-1_88
Web Address (URL) of Conference Proceedingshttps://link.springer.com/book/10.1007/1-4020-5497-1
Conference/Event7th International Wheat Conference (IWC 2005)
Event Details
7th International Wheat Conference (IWC 2005)
Delivery
Online
Event Date
27 Nov 2005 to end of 02 Dec 2005
Event Location
Argentina
Abstract

Genetic characterization of sources of durable resistance enables their strategic deployment in breeding programs. Genomic locations of uncharacterized adult plant resistance (APR) sources to leaf rust and stripe rust diseases of wheat were determined. Two genomic regions, 3DS (Halberd) and 5DS (Cranbrook) controlled APR to both leaf rust and stripe rust. Chromosomes 6B (Cranbrook) and 7B (Halberd) reduced leaf rust severity. Chromosomes 2DS, 3BS and 7A also reduced stripe rust severities in at least one crop season. Stem rust resistance genes Sr2 (3BS) and Sr30 (5DL) from Cranbrook explained stem rust response variation. Regression analysis also indicated strong positive interaction of these two loci in controlling stem rust. Expression of Sr2-linked psuedo black chaff (Pbc) was controlled by a major gene on chromosome 3BS and three modifiers located on chromosomes 6A, 3D and 7A. The chromosome 7A located region was not consistent across all seasons and sites. QTLs detected consistently in different experiments were temporarily designated as QYr/Lr3D, QYr/Lr5D, QLr6B and QLr7B.

Keywordsdurable resistance; adult plant resistance; stem rust; stripe rust
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SeriesDevelopments in Plant Breeding
Byline AffiliationsUniversity of Sydney
University of Southern Queensland
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Lehmensiek, A., Campbell, A. W., Williamson, P. M., Michalowitz, M., Sutherland, M. W. and Daggard, G. E.. 2004. "QTLs for black-point resistance in wheat and the identification of potential markers for use in breeding programmes." Plant Breeding. 123 (5), pp. 410-416. https://doi.org/10.1111/j.1439-0523.2004.01013.x
Resistance gene analogues of wheat: molecular genetic analysis of ESTs
McFadden, H. G., Lehmensiek, A. and Lagudah, E. S.. 2006. "Resistance gene analogues of wheat: molecular genetic analysis of ESTs." Theoretical and Applied Genetics: international journal of plant breeding research. 113 (6), pp. 987-1002. https://doi.org/10.1007/s00122-006-0358-3
Diversity arrays technology (DArT) for high-throughput profiling of the hexaploid wheat genome
Akbari, Mona, Wenzl, Peter, Caig, Vanessa, Carling, Jason, Xia, Ling, Yang, Shiying, Uszynski, Grzegorz, Mohler, Volker, Lehmensiek, Anke, Kuchel, Haydn, Hayden, Mathew J., Howes, Neil, Sharp, Peter, Vaughan, Peter, Rathmell, Bill, Huttner, Eric and Kilian, Andrzej. 2006. "Diversity arrays technology (DArT) for high-throughput profiling of the hexaploid wheat genome." Theoretical and Applied Genetics: international journal of plant breeding research. 113 (8), pp. 1409-1420. https://doi.org/10.1007/s00122-006-0365-4
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. and Daggard, G. E.. 2006. "Flour yield QTLs in three Australian doubled haploid wheat populations." Australian Journal of Agricultural Research. 57 (10), pp. 1115-1122. https://doi.org/10.1071/AR05375
Development of molecular markers for crown rot resistance in wheat: mapping of QTLs for seedling resistance in a '2-49' x 'Janz' population
Collard, B. C. Y., Grams, R. A., Bovill, W. D., Percy, C. D., Jolley, R., Lehmensiek, A., Wildermuth, G. B. and Sutherland, M. W.. 2005. "Development of molecular markers for crown rot resistance in wheat: mapping of QTLs for seedling resistance in a '2-49' x 'Janz' population." Plant Breeding. 124 (6), pp. 532-537. https://doi.org/10.1111/j.1439-0523.2005.01163.x
Molecular characterization of a Triticum timopheevii introgression in a Wentworth/Lang population
Lehmensiek, A., Bovill, W. D., Banks, P. M. and Sutherland, M. W.. 2008. "Molecular characterization of a Triticum timopheevii introgression in a Wentworth/Lang population." Appels, Rudi (ed.) 11th International Wheat Genetics Symposium 2008 (IWGS 2008). Brisbane, Australia 24 - 29 Aug 2008 Sydney, Australia.
Infection of wheat tissues by fusarium pseudograminearum
Knight, N. L., Percy, C., Lehmensiek, A., Herde, D. J. and Sutherland, M. W.. 2008. "Infection of wheat tissues by fusarium pseudograminearum." Appels, Rudi (ed.) 11th International Wheat Genetics Symposium 2008 (IWGS 2008). Brisbane, Australia 24 - 29 Aug 2008 Sydney, Australia.
Validation of black point QTL in wheat
Tah, P. R., Lehmensiek, A., Williamson, P. M., Michalowitz, M., Done, A. and Daggard, G. E.. 2008. "Validation of black point QTL in wheat." Appels, Rudi, Eastwood, Russell, Lagudah, Peter, Mackay, Michael, McIntyre, Lynne and Sharp, Peter J. (ed.) 11th International Wheat Genetics Symposium 2008 (IWGS 2008). Brisbane, Australia 24 - 29 Aug 2008 Sydney, Australia.
Identification of genetic regions associated with black point in barley
Tah, Priya R., Lehmensiek, A., Fox, Glen P., Mace, Emma, Sulman, Maria, Bloustein, Gary and Daggard, Grant E.. 2010. "Identification of genetic regions associated with black point in barley." Field Crops Research. 115 (1), pp. 61-66. https://doi.org/10.1016/j.fcr.2009.10.003
Molecular mapping of adult plant stripe rust resistance in wheat and identification of pyramided QTL genotypes
Bariana, H. S., Bansal, U. K., Schmidt, A., Lehmensiek, A., Kaur, J., Miah, H., Howes, N. and McIntyre, C. L.. 2010. "Molecular mapping of adult plant stripe rust resistance in wheat and identification of pyramided QTL genotypes." Euphytica: international journal on plant breeding. 176 (2), pp. 251-260. https://doi.org/10.1007/s10681-010-0240-x
Mapping spot blotch resistance genes in four barley populations
Bovill, Jessica, Lehmensiek, Anke, Sutherland, Mark W., Platz, Greg. J., Usher, Terry, Franckowiak, Jerome and Mace, Emma. 2010. "Mapping spot blotch resistance genes in four barley populations." Molecular Breeding: new strategies in plant improvement. 26 (4), pp. 653-666. https://doi.org/10.1007/s11032-010-9401-9
Chromosome composition of an F2 Triticum aestivum × T. turgidum spp. durum cross analysed by DArT markers and MCFISH
Eberhard, Friederike S., Zhang, Peng, Lehmensiek, Anke, Hare, Ray A., Simpfendorfer, Steven and Sutherland, Mark W.. 2010. "Chromosome composition of an F2 Triticum aestivum × T. turgidum spp. durum cross analysed by DArT markers and MCFISH." Crop and Pasture Science. 61 (8), pp. 619-624. https://doi.org/10.1071/CP10131
An investigation of genetic variation among Australian isolates of Bipolaris sorokiniana from different cereal tissues and comparison of their abilities to cause spot blotch on barley
Knight, N. L., Platz, G. J., Lehmensiek, A. and Sutherland, M. W.. 2010. "An investigation of genetic variation among Australian isolates of Bipolaris sorokiniana from different cereal tissues and comparison of their abilities to cause spot blotch on barley." Australasian Plant Pathology. 39 (3), pp. 207-216. https://doi.org/10.1071/AP09082
Genomic regions associated with common root rot resistance in the barley variety Delta
Lehmensiek, A., Bovill, J., Sutherland, M. W. and McNamara, R. B.. 2010. "Genomic regions associated with common root rot resistance in the barley variety Delta." Australasian Plant Pathology. 39 (3), pp. 241-246. https://doi.org/10.1071/AP09089
Population structure of South African and Australian Pyrenophora teres isolates
Lehmensiek, A., Bester-van der Merwe, A. E., Sutherland, M. W., Platz, G., Kriel, W. M., Potgieter, G. F. and Prins, R.. 2010. "Population structure of South African and Australian Pyrenophora teres isolates." Plant Pathology. 59 (3), pp. 504-515. https://doi.org/10.1111/j.1365-3059.2009.02231.x
Genetic mapping in the Triticeae
Lehmensiek, Anke, Bovill, William, Wenzl, Peter, Langridge, Peter and Appels, Rudi. 2009. "Genetic mapping in the Triticeae." Feuillet, Catherine and Muehlbauer, Gary (ed.) Genetics and genomics of the Triticeae. New York, NY. United States. Springer. pp. 201-235
QTL mapping of stripe, leaf and stem rust resistance genes in a Kariega x Avocet S doubled haploid wheat population
Prins, R., Pretorius, Z. A., Bender, C. M. and Lehmensiek, A.. 2011. "QTL mapping of stripe, leaf and stem rust resistance genes in a Kariega x Avocet S doubled haploid wheat population." Molecular Breeding: new strategies in plant improvement. 27 (2), pp. 259-270. https://doi.org/10.1007/s11032-010-9428-y
Bipolaris sorokiniana resistance loci identified on chromosomes 3HS and 7HS in three related barley
Sutherland, M. W., Lehmensiek, A., Leist, C., Platz, G. and Usher, T. R.. 2009. "Bipolaris sorokiniana resistance loci identified on chromosomes 3HS and 7HS in three related barley." Poulsen, David (ed.) ABTS 2009: Barley - The Grain for Gain. Sunshine Coast, Australia 13 - 16 Sep 2009 Indooroopilly, Australia.
Chromosome composition in an F2 hexaploid x durum cross analysed by DArT markers and MCFISH
Eberhard, F. S., Zhang, P., Lehmensiek, A., Sutherland, M. W., Hare, R. and Simpfendorfer, S.. 2008. "Chromosome composition in an F2 hexaploid x durum cross analysed by DArT markers and MCFISH." Appels, Rudi, Eastwood, Russell, Lagudah, Evans, Mackay, Michael, McIntyre, Lynne, Sharp, Peter and Langridge, Peter (ed.) 11th International Wheat Genetics Sympoium (IWGS 2008). Brisbane, Australia 24 - 29 Aug 2008 Sydney, Australia.
The application of molecular markers for partial resistance against fusarium crown rot in hexaploid and tetraploid wheats
Sutherland, Mark, Bovill, W. D., Horne, M., Lehmensiek, A., Eberhard, F., Percy, C., Wildermuth, G. B., Simpfendorfer, S. and Hare, R.. 2008. "The application of molecular markers for partial resistance against fusarium crown rot in hexaploid and tetraploid wheats." 10th International Fusarium and Fusarium Genomics Workshop 2008. Sardinia, Italy 30 Aug - 02 Sep 2008 Sardinia,Italy.
Mapping markers for priority traits in the northern grains region of Australia
Mace, E., Sutherland, Mark, Lehmensiek, Anke, Bovill, Bill, Bovill, Jessica, Collard, Bert, Daggard, Grant and Christopher, M. J.. 2006. "Mapping markers for priority traits in the northern grains region of Australia." ITMI Workshop and ACPFG Genomics Symposium (2006). Victor Harbour, Australia 27 - 31 Aug 2006
Strategies for fine mapping QTLs for crown rot resistance in wheats
Bovill, W. D., Collard, B. C. Y., Lehmensiek, Anke, Wildermuth, G. B. and Sutherland, Mark W.. 2005. "Strategies for fine mapping QTLs for crown rot resistance in wheats." Cahill, David (ed.) 15th Biennial Australasian Plant Pathology Society Conference. Geelong, Australia 26 - 29 Sep 2005 Geelong.
Genetic mapping of gray leaf spot (GLS) resistance genes in maize
Lehmensiek, A., Esterhuizen, A. M., Van Staden, D., Nelson, S. W. and Retief, A. E.. 2001. "Genetic mapping of gray leaf spot (GLS) resistance genes in maize ." Theoretical and Applied Genetics: international journal of plant breeding research. 103 (5), pp. 797-803. https://doi.org/10.1007/s001220100599