2,542
Views
70
CrossRef citations to date
0
Altmetric
Symposium contribution/Contribution à un symposium

Wheat resistance to Fusarium head blight

, &
Pages 336-346 | Accepted 06 May 2018, Published online: 18 Jun 2018

References

  • Ágnes SH, Szabolcs LK, Mónika V, László P, János P, Csaba L, Ákos M. 2014. Differential influence of QTL linked to Fusarium head blight, Fusarium-damaged kernel, deoxynivalenol contents and associated morphological traits in a ‘Frontana’-derived wheat population. Euphytica. 200:9–26.
  • Anderson JA. 2012a. Overview of breeding for FHB resistance in wheat-where we’ve come from and where we are. In: Canty S, Clark A, Anderson-Scully A, Van Sanford D, editors. Proceedings of the 2012 National fusarium head blight forum. US Wheat and Barley Scab initiative; p. 45.
  • Anderson JA, Stack RW, Liu S, Waldron BL, Fjeld AD, Coyne C, Sevilla BM, Fetch JM, Song QJ, Cregan PB, et al. 2001. DNA markers for Fusarium head blight resistance QTLs in two wheat populations. Theor Appl Genet. 102:1164–1168.
  • Anderson JA, Wiersma JJ, Linkert GL, Kolmer JA, Jin Y, Dill-Macky R, Wiersma JV, Hareland GA. 2012b. Registration of ‘Sabin’ Wheat. J Plant Reg. 6:174.
  • Arruda MP, Brown PJ, Lipka AE, Krill AM, Kolb FL. 2015. Genomic selection for predicting Fusarium head blight resistance in a wheat breeding program. Plant Gen. 8:3.
  • Arthur JC. 1891. Wheat scab. Ind Agric Exp Stat Bull. 36:129–138.
  • Bai G, Kolb FL, Shaner G, Domier LL. 1999. Amplified fragment length polymorphism markers linked to a major quantitative trait locus controlling scab resistance in wheat. Phytopathology. 89:343–348.
  • Bai G, Shaner G. 2004. Management and resistance in wheat and barley to Fusarium head blight. Annu Rev Phytopathol. 42:135–161.
  • Bai GH, Plattner R, Desjardins A, Kolb F. 2001. Resistance to Fusarium head blight and deoxynivalenol accumulation in wheat. Plant Breed. 120:1–6.
  • Bai GH, Shaner G. 1994. Scab of wheat: prospects and control. Plant Dis. 78:760–766.
  • Ban T. 2001. Studies on the genetics of resistance to Fusarium head blight caused by F. graminearum Schwabe in wheat (Triticum aestivum L.). Bull Kyushu Natl Agric Exp Stn. 38:27–28.
  • Ban T. 2003. Comparative genetic analysis of FHB-resistant germplasm for wheat improvement. In: Canty SM, Lewis J, Siler L, Ward RW, editors, Proceedings of the National Fusarium Head Blight Forum. US Wheat and Barley Scab initiative, Michigan State University; p. 215–217.
  • Bernardo AN, Ma H, Zhang D, Bai G. 2011. Single nucleotide polymorphism in wheat chromosome region harboring Fhb1 for Fusarium head blight resistance. Mol Breed. 29:477–488.
  • Bockus WW, Fritz AK, Martin TJ. 2009. Reaction of the 2008 Kansas Intrastate Nursery to Fusarium head blight. Plant Dis Man Rep. 3:CF009.
  • Bonin CM, Kolb FL. 2009. Resistance to Fusarium head blight and kernel damage in a winter wheat recombinant inbred line population. Crop Sci. 49:1304–1312.
  • Bourdoncle W, Ohm HW. 2003. Quantitative trait loci for resistance to Fusarium head blight in recombinant inbred wheat lines from the cross ‘Huapei 57-2ʹ/‘Patterson’. Euphytica. 131:131–136.
  • Browne RA, Brindle KM. 2007. H NMR-based metabolite profiling as a potential selection tool for breeding passive resistance against Fusarium head blight (FHB) in wheat. Mol Plant Pathol. 8:401–410.
  • Brown-Guedira G, Griffey C, Kolb F, McKendry A, Murphy J, Sanford D. 2008. Breeding FHB-resistant soft winter wheat: progress and prospects. Cereal Res Commun. 36:31–35.
  • Buerstmayr H, Ban T, Anderson JA. 2009. QTL mapping and marker-assisted selection for Fusarium head blight resistance in wheat: a review. Plant Breed. 128:1–26.
  • Buerstmayr H, Steiner B, Hartl L, Griesser M, Angerer N, Lengauer D, Miedaner T, Schneider B, Lemmens M. 2003. Molecular mapping of QTLs for Fusarium head blight resistance in spring wheat. II. Resistance to fungal penetration and spread. Theor Appl Genet. 107:503–508.
  • Buerstmayr M, Huber K, Heckmann J, Steiner B, Nelson JC, Buerstmayr H. 2012. Mapping of QTL for Fusarium head blight resistance and morphological and developmental traits in three backcross populations derived from Triticum dicoccum x Triticum durum. Theor Appl Genet. 125:1751–1765.
  • Buerstmayr M, Lemmens M, Steiner B, Buerstmayr H. 2011. Advanced backcross QTL mapping of resistance to Fusarium head blight and plant morphological traits in a Triticum macha x T. aestivum population. Theor Appl Genet. 123:293–306.
  • Burt C, Steed A, Gosman N, Lemmens M, Bird N, Ramirez-Gonzalez R, Holdgate S, Nicholson P. 2015. Mapping a Type 1 FHB resistance on chromosome 4AS of Triticum macha and deployment in combination with two Type 2 resistances. Theor Appl Genet. 128:1725–1738.
  • Cai J 2016. Meta-analysis of QTL for Fusarium head blight resistance in Chinese heat landraces using genotyping-by-sequencing [ Ph.D. Thesis]. Kansas State University.
  • Cai J, Bai G. 2014. Quantitative trait loci for Fusarium head blight resistance in ‘Huangcandou’ × ‘Jagger’ wheat population. Crop Sci. 54:2520–2528.
  • Cai X, Xu S, Oliver R, Zhang Q, Stack R, Zhong S, Friesen T, Halley S, Elias E 2008. Alien introgression for FHB resistance in wheat - challenges and strategies. In: Appels R, Eastwood R, Lagudah E, Langridge P,Mackay M,McIntyre L and Sharp P, editors. Proceedings of the 11th International Wheat Genet Symposium; Aug 24–29; Brisbane, Qld, Australia: Sydney Univ Press, Sydney (Australia).
  • Cainong JC, Bockus WW, Feng Y, Chen P, Qi L, Sehgal SK, Danilova TV, Koo DH, Friebe B, Gill BS. 2015. Chromosome engineering, mapping, and transferring of resistance to Fusarium head blight disease from Elymus tsukushiensis into wheat. Theor Appl Genet. 128:1019–1027.
  • Chu C, Niu Z, Zhong S, Chao S, Friesen TL, Halley S, Elias EM, Dong Y, Faris JD, Xu SS. 2011. Identification and molecular mapping of two QTLs with major effects for resistance to Fusarium head blight in wheat. Theor Appl Genet. 123:1107–1119.
  • Clark AJ, Sarti-Dvorjak D, Brown-Guedira G, Dong Y, Baik B-K, Van Sanford DA. 2016. Identifying rare FHB resistant segregants in intransigent backcross and F2 winter wheat populations. Front Microbiol. 7:277.
  • Cuthbert PA, Somers DJ, Brule-Babel A. 2007. Mapping of Fhb2 on chromosome 6BS: a gene controlling Fusarium head blight field resistance in bread wheat (Triticum aestivum L.). Theor Appl Genet. 114:429–437.
  • Cuthbert PA, Somers DJ, Thomas J, Cloutier S, Brule-Babel A. 2006. Fine mapping Fhb1, a major gene controlling Fusarium head blight resistance in bread wheat (Triticum aestivum L.). Theor Appl Genet. 112:1465–1472.
  • De Wolf ED, Madden L, Lipps P. 2003. Risk assessment models for wheat Fusarium head blight epidemics based on within-season weather data. Phytopathology. 93:428–435.
  • Ding L, Xu H, Yi H, Yang L, Kong Z, Zhang L, Xue S, Jia H, Ma Z. 2011. Resistance to hemi-biotrophic F. graminearum infection is associated with coordinated and ordered expression of diverse defense signaling pathways. PLoS One. 6:e19008.
  • Dubin J, Gilchrist L, Reeves J, McNab A, editors. 1997. Fusarium head scab: global status and future prospects. Proceedings of a Workshop, El Batan (Mexico); 10- 13-96– 10-17-96. 1997; Mexico (DF (Mexico)): CIMMYT. vi, 130 p.
  • Fatima N 2016. Identification and deployment of QTLs for Fusarium head blight resistance in U.S. winter wheat. [ Ph.D. thesis]. Kansas State University.
  • Ferrigo D, Raiola A, Causin R. 2016. Fusarium toxins in cereals: occurrence, legislation, factors promoting the appearance and their management. Molecules. 21:627.
  • Gervais L, Dedryver F, Morlais JY, Bodusseau V, Negre S, Bilous M, Groos C, Trottet M. 2003. Mapping of quantitative trait loci for field resistance to Fusarium head blight in an European winter wheat. Theor Appl Genet. 106:961–970.
  • Gilbert J, Haber S. 2013. Overview of some recent research developments in Fusarium head blight of wheat. Can J Plant Pathol. 35:149–174.
  • Goswami RS, Kistler HC. 2004. Heading for disaster: fusarium graminearum on cereal crops. Mol Plant Pathol. 5:515–525.
  • Guo J, Zhang X, Hou Y, Cai J, Shen X, Zhou T, Xu H, Ohm HW, Wang H, Li A, et al. 2015. High-density mapping of the major FHB resistance gene Fhb7 derived from Thinopyrum ponticum and its pyramiding with Fhb1 by marker-assisted selection. Theor Appl Genet. 128:2301–2316.
  • He X,Lillemo M, Shi J, Wu J, Bjørnstad Å, Belova T, Dreisigacker S, Duveiller E, Singh P. 2016. QTL characterization of Fusarium head blight resistance in CIMMYT bread wheat line Soru#1. PLoS ONE 11: e0158052.
  • He X, Singh PK, Schlang N, Duveiller E, Dreisigacker S, Payne T, He Z. 2013. Characterization of Chinese wheat germplasm for resistance to Fusarium head blight at CIMMYT, Mexico. Euphytica. 195:383–395.
  • Holzapfel J, Voss H, Miedaner T, Korzun V, Häberle J, Schweizer G, Mohler V, Zimmermann G, Hartl L. 2008. Inheritance of resistance to Fusarium head blight in three European winter wheat populations. Theor Appl Genet. 117:1119–1128.
  • Jia G, Chen P, Qin G, Bai G, Wang X, Wang S, Zhou B, Zhang S, Liu D. 2006. QTLs for Fusarium head blight response in a wheat DH population of ‘Wangshuibai’/’Alondra‘s”. Euphytica. 146:183–191.
  • Jiang GL, Dong Y, Shi J, Ward RW. 2007a. QTL analysis of resistance to Fusarium head blight in the novel wheat germplasm ‘CJ 9306ʹ. II. Resistance to deoxynivalenol accumulation and grain yield loss. Theor Appl Genet. 115:1043–1052.
  • Jiang GL, Shi J, Ward RW. 2007b. QTL analysis of resistance to Fusarium head blight in the novel wheat germplasm ‘CJ 9306ʹ. I. Resistance to fungal spread. Theor Appl Genet. 116:3–13.
  • Jin F, Bai GH, Zhang DD, Dong YH, Ma LJ, Bockus W, Dowell F. 2014. Fusarium-damaged kernels and deoxynivalenol in Fusarium-infected U.S. winter wheat. Phytopathology. 104:472–478.
  • Jin F, Zhang D, Bockus W, Baenziger PS, Carver B, Bai G. 2013. Fusarium head blight resistance in U.S. winter wheat cultivars and elite breeding lines. Crop Sci. 53:2006–2013.
  • Kolb FL, Bai GH, Muehlbauer GJ, Anderson JA, Smith KP, Fedak G. 2001. Host plant resistance genes for Fusarium head blight: mapping and manipulation with molecular markers. Crop Sci. 41:611–619.
  • Li G, Yen Y. 2008. Jasmonate and ethylene signaling pathway may mediate Fusarium head blight resistance in wheat. Crop Sci. 48:1888–18976.
  • Li T, Bai G, Wu S, Gu S. 2011. Quantitative trait loci for resistance to Fusarium head blight in a Chinese wheat landrace ‘Haiyanzhong’. Theor Appl Genet. 122:1497–1502.
  • Li T, Bai G, Wu S, Gu S. 2012. Quantitative trait loci for resistance to Fusarium head blight in the Chinese wheat landrace ‘Huangfangzhu’. Euphytica. 185:93–102.
  • Li T, Luo M, Zhang D, Wu D, Li L, Bai G. 2016. Effective marker alleles associated with type II resistance to Fusarium head blight infection in fields. Breed Sci. 66:350–357.
  • Li X, Michlmayr H, Schweiger W, Malachova A, Shin S, Huang Y, Dong YH, Wiesenberger G, McCormick S, Lemmens M, et al. 2017. A barley UDP-glucosyltransferase inactivates nivalenol and provides fusarium head blight resistance in transgenic wheat. J Exp Bot. 68:2187–2197.
  • Li X, Shin S, Heinen S, Dill-Macky R, Berthiller F, Nersesian N, Clemente T, McCormick S, Muehlbauer G. 2015. Transgenic wheat expressing a barley UDP-glucosyltransferase detoxifies deoxynivalenol and provides high levels of resistance to Fusarium graminearum. Mol Plant-Microb Interact. 28:1237–1246.
  • Lin F, Xue SL, Zhang ZZ, Zhang CQ, Kong ZX, Yao GQ, Tian DG, Zhu HL, Li CJ, Cao Y, et al. 2006. Mapping QTL associated with resistance to Fusarium head blight in the ‘Nanda2419ʹ x ‘Wangshuibai’ population II: type I resistance. Theor Appl Genet. 112:528–535.
  • Liu S, Abate ZA, Lu H, Musket T, Davis GL, McKendry AL. 2007. QTL associated with Fusarium head blight resistance in the soft red winter wheat ‘Ernie’. Theor Appl Genet. 115:417–427.
  • Liu S, Abate ZA, McKendry AL. 2005. Inheritance of Fusarium head blight resistance in the soft red winter wheat ‘Ernie’. Theor Appl Genet. 110:454–461.
  • Liu S, Griffey CA, Hall MD, McKendry AL, Chen J, Brooks WS, Brown-Guedira G, Van Sanford D, Schmale DG. 2013. Molecular characterization of field resistance to Fusarium head blight in two U.S. soft red winter wheat cultivars. Theor Appl Genet. 126:2485–2498.
  • Liu S, Hall MD, Griffey CA, McKendry AL. 2009. Meta-analysis of QTL associated with Fusarium head blight resistance in wheat. Crop Sci. 49:1955–1968.
  • Liu S, Pumphrey MO, Gill BS, Trick HN, Zhang JX, Dolezel J, Chalhoub B, Anderson JA. 2008. Toward positional cloning of fhb1, a major QTL for Fusarium head blight resistance in wheat. Cereal Res Commun Suppl. 36:195–201.
  • Löffler M, Schön C, Miedaner T. 2009. Revealing the genetic architecture of FHB resistance in hexaploid wheat (Triticum aestivum L.) by QTL meta-analysis. Mol Breed. 23:473–488.
  • Mackintosh CA, Lewis J, Radmer LE, Shin S, Heinen SJ, Smith LA, Wyckoff MN, Dill-Macky R, Evans CK, Kravchenko S, et al. 2007. Overexpression of defense response genes in transgenic wheat enhances resistance to Fusarium head blight. Plant Cell Rep. 26:479–488.
  • Mardi M, Pazouki L, Delavar H, Kazemi MB, Ghareyazie B, Steiner B, Nolz R, Lemmens M, Buerstmayr H. 2006. QTL analysis of resistance to Fusarium head blight in wheat using a ‘Frontana’-derived population. Plant Breed. 125:313–317.
  • McCartney CA, Brûlé-Babel AL, Fedak G, Martin RA, McCallum BD, Gilbert J, Hiebert CW and Pozniak CJ. 2016. Fusarium head blight resistance QTL in the spring wheat cross Kenyon/86ISMN 2137. Front. Microbiol. 7:1542.
  • McMullen M, Bergstrom G, De Wolf E, Dill-Macky R, Hershman D, Shaner G, Van Sanford D. 2012. A unified effort to fight an enemy of wheat and barley: fusarium head blight. Plant Dis. 96:1712–1728.
  • Mergoum M, Frohberg RC, Stack RW 2007. Breeding hard red spring wheat for Fusarium head blight resistance, successes and challenges. In: Buck HT, Nisi JE, Salomo´N N, editors. Wheat production in Stressed Environments. Proceedings of the 7th International Wheat Conference; Nov 27–Dec 2, 2005; Mar del Plata, Argentina, Netherlands: Springer. p. 161–167.
  • Mesterhazy A. 1995. Types and components of resistance to Fusarium head blight of wheat. Plant Breed. 114:377–386.
  • Mesterhazy A, Bartok T, Mirocha CG, Komoroczy AR. 1999. Nature of wheat resistance to Fusarium head blight and the role of deoxynivalenol for breeding. Plant Breed. 118:97–110.
  • Miller JD, Young JC, Sampson RD. 1985. Deoxynivalenol and Fusarium head blight resistance in spring cereals. Phytopathol Z. 113:359–367.
  • Nganje WE, Kaitibie S, Wilson WW, Leistritz FL, Bangsund DA 2004. Economic impacts of Fusarium head blight in wheat and barley:1993-2001. Agribus Appl Econ Rep. No 538.
  • Oliver RE, Cai X, Xu SS, Chen X, Stack RW. 2005. Wheat-alien species derivatives. Crop Sci. 45:1353.
  • Paillard S, Schnurbusch T, Tiwari R, Messmer M, Winzeler M, Keller B, Schachermayr G. 2004. QTL analysis of resistance to Fusarium head blight in Swiss winter wheat (Triticum aestivum L). Theor Appl Genet. 109:323–332.
  • Paul PA, Lipps P, Madden LV. 2006. Meta-analysis of regression coefficients for the relationship between Fusarium head blight and deoxynivalenol content of wheat. Phytopathology. 96:951–961.
  • Prat1 N, Guilbert C, Prah U, Wachter E, Steiner B, Langin T, Robert O, Buerstmayr H. 2017. QTL mapping of Fusarium head blight resistance in three related durum wheat populations. Theor Appl Genet. 130:13–27.
  • Pritsch C, Muehlbauer GJ, Bushnell WR, Somers DA, Vancel CP. 2000. Fungal development and induction of defense response genes during early infection of wheat spikes by Fusarium graminearum. Mol Plant-Microbe Interact. 13:159–169.
  • Qi LL, Pumphrey MO, Friebe B, Chen PD, Gill BS. 2008. Molecular cytogenetic characterization of alien introgressions with gene Fhb3 for resistance to Fusarium head blight disease of wheat. Theor Appl Genet. 117:1155–1166.
  • Rawat N, Pumphrey MO, Liu S, Zhang X, Tiwari VK, Ando K, Trick HN, Bockus WW, Akhunov E, Anderson JA, et al. 2016. Wheat Fhb1 encodes a chimeric lectin with agglutinin domains and a pore-forming toxin-like domain conferring resistance to Fusarium head blight. Nat Genet. 48:1576–1580.
  • Ribichich KF, Lopez SE, Vegetti AC. 2000. Histopathological spikelet changes produced by Fusarium graminearum in susceptible and resistant wheat cultivars. Plant Dis. 84:794–802.
  • Rudd JC, Horsley RD, McKendry AL, Elias EM. 2001. Host plant resistance genes for Fusarium head blight: sources, mechanisms, and utility in conventional breeding. Crop Sci. 41:620–627.
  • Schroeder H, Christensen J. 1963. Factors affecting resistance of wheat to scab caused by Gibberella zeae. Phytopathology. 53:831–838.
  • Schweiger W, Steiner B, Vautrin S, Nussbaumer T, Siegwart G, Zamini M, Jungreithmeier F, Gratl V, Lemmens M, Mayer KF, et al. 2016. Suppressed recombination and unique candidate genes in the divergent haplotype encoding Fhb1, a major Fusarium head blight resistance locus in wheat. Theor Appl Genet. 129:1607–1623.
  • Semagn K, Skinnes H, Å B, Marøy AG, Tarkegne Y. 2007. Quantitative trait loci controlling Fusarium head blight resistance and low deoxynivalenol content in hexaploid wheat population from ‘Arina’ and ‘NK93604ʹ. Crop Sci. 47:294–303.
  • Shen XR, Ittu M, Ohm HW. 2003. Quantitative trait loci conditioning resistance to Fusarium head blight in wheat line F201R. Crop Sci. 43:850–857.
  • Sneller C, Paul P, Herald L, Sugerman B. 2012. Report on the 2011-2012 Northern uniform winter wheat scab nurseries (NUWWSN and PNUWWSN). In: Canty S, Clark A, Anderson-Scully A, Van Sanford D, editors. Proceedings of the 2012 National Fusarium Head Blight Forum. US Wheat and Barley Scab initiative; ASAP Printing, Inc., Lansing, MI; p. Pg. 100–104.
  • Somers DJ, Fedak G, Savard M. 2003. Molecular mapping of novel genes controlling Fusarium head blight resistance and deoxynivalenol accumulation in spring wheat. Genome. 46:555–564.
  • Somers DJ, Isaac P, Edwards K. 2004. A high-density microsatellite consensus map for bread wheat (Triticum aestivum L.). Theor Appl Genet. 109:1105–1114.
  • Steiner B, Lemmens M, Griesser M, Scholz U, Schondelmaier J, Buerstmayr H. 2004. Molecular mapping of resistance to Fusarium head blight in the spring wheat cultivar ‘Frontana’. Theor Appl Genet. 109:215–224.
  • Su Z, Bernardo A, Tian B, Wang S, Ma H, Cai S, Liu D, Zhang D, Li T, Trick HN, et al. 2016. Development of high-throughput diagnostic markers for Fhb1, a major gene for FHB resistance in wheat. In: Canty S, Clark A, Anderson-Scully A, Van Sanford D, editors. Proceedings of the 2016 National Fusarium Head Blight Forum. US Wheat and Barley Scab initiative; p. 95.
  • Su Z, Jin S, Bernardo A, St Amand P, Bai G 2017. A sequence deletion in HRC-like gene confers Fhb1 resistance to Fusarium head blight in wheat. Proceedings of the Plant Animal Genome XXV Conference, Jan 14–18, San Diego, CA. P0894.
  • Suzuki T, Sato M, Takeuchi T. 2012. Evaluation of the effects of five QTL regions on Fusarium head blight resistance and agronomic traits in spring wheat (Triticum aestivum L.). Breed Sci. 62:11–17.
  • Szabó-Hevér Á, Lehoczki-Krsjak S, Tóth B, Purnhauser L, Buerstmayr H, Steiner B, Mesterházy Á. 2012. Identification and validation of Fusarium head blight and Fusarium-damaged kernel QTL in a ‘Frontana’/’Remus’ DH mapping population. Can J Plant Pathol. 34:224–238.
  • Waldron BL, Moreno-Sevilla B, Anderson JA, Stack RW, Frohberg RC. 1999. RFLP mapping of QTL for Fusarium head blight resistance in wheat. Crop Sci. 39:805–811.
  • Xue S, Li G, Jia H, Xu F, Lin F, Tang M, Wang Y, An X, Xu H, Zhang L, et al. 2010. Fine mapping Fhb4, a major QTL conditioning resistance to Fusarium infection in bread wheat (Triticum aestivum L.). Theor Appl Genet. 121:147–156.
  • Xue S, Xu F, Tang M, Zhou Y, Li G, An X, Lin F, Xu H, Jia H, Zhang L, et al. 2011. Precise mapping Fhb5, a major QTL conditioning resistance to Fusarium infection in bread wheat (Triticum aestivum L). Theor Appl Genet. 123:1055–1063.
  • Yang J, Bai G, Shaner GE. 2005a. Novel quantitative trait loci (QTL) for Fusarium head blight resistance in wheat cultivar ‘Chokwang’. Theor Appl Genet. 111:1571–1579.
  • Yang Z, Gilbert J, Fedak G, Somers DJ. 2005b. Genetic characterization of QTL associated with resistance to Fusarium head blight in a doubled-haploid spring wheat population. Genome. 48:187–196.
  • Yu J, Bai G, Cai S, Dong Y, Ban T. 2008a. New Fusarium head blight resistant sources from Asian wheat germplasm. Crop Sci. 48:1090–1097.
  • Yu JB, Bai GH, Zhou WC, Dong YH, Kolb FL. 2008b. Quantitative trait loci for Fusarium head blight resistance in a recombinant inbred population of ‘Wangshuibai’/’Wheaton’. Phytopathology. 98:87–94.
  • Zhang X, Bai G, Bockus W, Ji X, Pan H. 2012a. Quantitative trait loci for Fusarium head blight resistance in U.S. hard winter wheat cultivar ‘Heyne’. Crop Sci. 52:1187–1194.
  • Zhang X, Fu J, Hiromasa Y, Pan H, Bai G. 2013. Differentially expressed proteins associated with Fusarium head blight resistance in wheat. PLoS ONE. 8:e82079.
  • Zhang X, Pan H, Bai G. 2012b. Quantitative trait loci responsible for Fusarium head blight resistance in Chinese landrace ‘Baishanyuehuang’. Theor Appl Genet. 125:495–502.
  • Zhou W, Kolb FL, Yu J, Bai GH, Boze LK, Domier LL. 2004. Molecular characterization of Fusarium head blight resistance in ‘Wangshuibai’ with simple sequence repeat and amplified fragment length polymorphism markers. Genome. 47:1137–1143.
  • Zhou WC, Kolb FL, Bai GH, Dromie LL, Boze LK, Smith NJ. 2003. Validation of a major QTL for scab resistance with SSR markers and use of marker-assisted selection in wheat. Plant Breed. 122:40–46.
  • Zhou WC, Kolb FL, Bai GH, Shaner GE, Domier LL. 2002. Genetic analysis of scab resistance QTL in wheat with microsatellite and AFLP markers. Genome: 45:1–9.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.