References (page 39 of 40)⌂ Home
- Wu LR, Zhu T, He HG, Cao XY, Li HS, Xu HX, Jia MS, Zhang LP, Song JC, Mirzaghaderi G, Liu Cc, Ma PT 2022 Genetic dissection of the powdery mildew resistance in wheat breeding line LS5082 using BSR-Seq. The Crop Journal 10: 1120-1130. DOI: 10.1016/j.cj.2021.12.008.
- Wang Y, Abrouk M, Gourdoupis S, Koo D-H, Karafiátová M, Molnár I, Holusova K, Doležel J, Athiyannan N, Cavalet-Giorsa, E, Jaremko Ł, Poland J and Krattinger SG 2023 An unusual tandem kinase fusion protein confers leaf rust resistance in wheat. Nature Genetics 55: 914–920. DOI:10.1038/s41588-023-01401-2.
- Yu GT, Matny O, Gourdoupis S, Rayapuram N, Aljedaani FR, Wang YL, Nürnberger T, Johnson R, Crean EE, Saur IM-L, Gardener C, Yue YJ, Kangara N, Steuernagel B, Hayta H, Smedley M, Harwood W, Patpour M, Wu SY, Poland J, Jones JDG, Reuber TL, Ronen M, Sharon A, Rouse MN, Xu S, Holušová K, Bartoš J, Molnár I, Karafiátová M, Hirt H, Blilou I, Jaremko L, Doležel J, Steffenson BJ and Wulff BBH 2023 The wheat stem rust resistance gene_Sr43_encodes an unusual protein kinase. Nature Genetics 55: 921-926. DOI: 1038/s41588-023-01402-1.
- Arora S, Steed A, Goddard R, Gaurav K, O’Hara T, Schoen A, Rawat N, Elkot AF, Korolev AV, Chinoy C, Nicholson MH, Asuke S, Antoniou-Kourounioti R, Steuernagel B, Yu JT, Awal R, Forner-Martínez M, Wingen L, Baggs E, Clarke J, Saunders DGO, Krasileva KV, Tosa Y, Jones JDG, Vijay K, Tiwari VK, Wulff BBH and Nicholson P 2022 A wheat
- Tan C-T, Yu HJ, Yang, Xu XY, Chen MS, Rudd JC, Xue QW, Ibrahim AMH, Garza L, Wang SC, Sorrells ME and Liu SY 2017 Development and validation of KASP markers for the greenbug resistance gene_Gb7_and the Hessian fly resistance gene_H32_in wheat. Theoretical and Applied Genetics 130: 1867-1864. DOI: 10.1007/s00122-017-2930-4.
- Niu FU, Xu YF, Liu XM, Zhao LF, Bernardo A, Li YG, Liu GX, Chen M-S, Cao LM, Hu ZB, Xu XY and Bai GH 2020 The Hessian fly recessive resistance gene_h4_mapped to chromosome 1A of the wheat cultivar ‘Java’ using genotyping‐by‐sequencing. Theoretical and Applied Genetics 133: 2927-2935. DOI: 10.1007/s00122-020-03624-9.
- Zhang LR, Xu YF, Chen M-S, Su ZQ, Liu Y, Xu YZ, La GX and Bai GH 2022 Identification of a major QTL for Hessian fly resistance in wheat cultivar ‘Chokwang’. The Crop Journal 10: 775-782. DOI: 10.1016/j.cj.2021.08.004.
- Mahlandt A, Rawat N, Leonard J, Venglat P, Datla R, Meier N, Gill BS, Riera‑Lizarazu O, Coleman G, Murphy AS and Tiwari VK 2021 High‑resolution mapping of the_Mov‑1_locus in wheat by combining radiation hybrid (RH) and recombination‑based mapping approaches. Theoretical and Applied Genetics 134: 2302-2314. DOI: 10.1007/s00122-021- 03827-w.
- Zhang ZC, Friesen TL, Xu SS, Shi GJ, Liu ZH, Rasmussen JB and Faris JD 2011 Two putatively homoeologous wheat genes mediate recognition of SnTox3 to confer effector- triggered susceptibility to_Stagonospora nodorum_. The Plant Journal 65, 27–38. DOI: 10.1111/j.1365-313X.2010.04407.x.
- Kolmer JA, Bajgain P, Rouse MN, Li J and Zhang P 2023 Mapping and characterization of the recessive leaf rust resistance gene_Lr83_on wheat chromosome arm 1DS. Theoretical and Applied Genetics 136, 115. DOI: 10.1007/s00122-023-04361-7.
- Li ZK, Yuan C, Herrera-Foessel SA, Randhawa MS, Huerta-Espino J, Liu DM, Dreisigacker S, Singh RP and Lan CX 2019. Four consistent adult plant resistance loci confer resistance to leaf rust in two durum wheat lines Heller#1 and Dunkler. Phytopathology 110: 892-899. DOI: 10.1094/PHYTO-09-19-0348-R.
- Li, Lan CX, et al. 2022 Rapid cloning and functional gene analysis for a leaf rust resistance locus in durum wheat. Submitted.
- Zhu ZW, Cao QA, Han DJ, Wu JH, Wu L, Tong JY, Xu XW, Yan J, Zhang Y, Xu KJ, Wang FJ, Dong YC, Gao CB, He ZH, Xia XC and Hao YF 2023 Molecular characterization and validation of adult-plant stripe rust resistance gene_Yr86_in Chinese wheat cultivar Zhongmai 895. Theoretical and Applied Genetics (2023) 136, 142. DOI: 10.1007/s00122-023-04374- 2.
- Xiong HC, Zhou CY, Fu MY, Guo HJ, Xie SR, Zhao LS, Li YT, Zhang JZ, Wang K, Li XJ and Liu LX 2022: Cloning and functional characterization of_Rht8_, a “Green Revolution” replacement gene in wheat. Molecular Plant 15: 373-376. DOI: 10.1016/j.molp.2022.01.014.
- Guttieri MJ, Bowden RL, Zhang G, Haley S, Frels K, Hein GL and Jordan KW 2022 Agronomic and quality impact of a shortened translocation for wheat streak mosaic virus resistance. Crop Science 63: 622-634. DOI: 10.1002/csc2.20876.
- Bowden R et al. 2023 Personal communication.
- Chen YM, Ji JL, Kong DH, Tang XO, Wen MX, Wang GQ, Dai KL, Shi PY, Zhang X, Zhang HL, Jiao CX, Wang ZK, Sun L, Yuan CX, Wang HY, Zhang ZY, Sun BJ, Fei XR, Guo H, Xiao J and Wang XE 2023 Resistance of_QYm.nau‑2D_to wheat yellow mosaic
- Zhao MH, Su B, Zhang XX, Zhang XM, Li RB, Cheng P, Wang BT and Li QA 2022 Molecular mapping of a recessive gene for stripe rust resistance at the_YrCf75_locus using bulked segregant analysis combined with single nucleotide polymorphism genotyping arrays and bulked segregant analysis. Plant Disease 106: 2090-2096. DOI: 10.1094/PDIS- 11-21-2564-RE.
- Liang X, Xu HX, Zhu SY, Zheng YS, Zhong W, Li HS, Niu LP, Wu LR, Zhang LP, Song JC, He HG, Liu C and Ma PT 2022 Genetically detecting the novel powdery mildew resistance gene in wheat breeding line PBDH1607. Plant Disease 106: 2145-2154. DOI: 10.1094/PDIS-12-2771-RE.
- Li X, Xiang ZP, Chen WQ, Huang QL, Liu TG, Li Q, Zhong SF, Zhang M, Guo JW, Lei L and Luo PG 2017 Reevaluation of two quantitative trait loci for type II resistance to Fusarium head blight in wheat germplasm PI 672538. Phytopathology 107: 92-99. DOI: 10.1094/PHYTO-04-16-0170-R.
- Guo JW, Shi GJ, Kalil A, Friskop A, Elias E, Xu SS, Faris JD and Liu ZH 2020 _Pyrenophora tritici-repentis_race 4 isolates cause disease on tetraploid wheat. Phytopathology 110: 1781-1790. DOI: 10.1094/PHYTO-05-20-0179-R
- Dong CH, Zhang LC, Zhang QA, Yang YX, Li DP, Xie ZC, Cui GQ, Chen YY, Wu LF, Li Z, Liu GX, Zhang XY, Liu CM, Chu JF, Zhao GY, Xia CA, Jia JZ, Sun JQ, Kong XY and Liu X 2023 Tiller Number1 encodes an ankyrin repeat protein that controls tillering in bread wheat. Nature Communications 14, 836. DOI: 10.1038/s41467-023-36271-z
- Zhang Q, Li Y, Li Y, Fahima T, Shen Q and Xie C 2021 Introgression of the powdery mildew resistance genes_Pm60_and_Pm60b_from_Triticum urartu_to common wheat using durum as a'bridge'. Pathogens 11, 25. DOI:10.3390/pathogens11010025.
- Wang SZ, Asuke S, Vy TTP, Inoue Y, Chuma I, Win J, Kato K and Tosa Y 2018 A new resistance gene in combination with_Rmg8_confers strong resistance against_Triticum_ isolates of_Pyricularia oryzae_in a common wheat landrace. Phytopathology 108: 1299- 1306. DOI: 10.1094/PHYTO-12-17-0400-R.
- Nsabiyera V, Qureshi N, Li J, Randhawa M, Zhang P, Forrest K, Bansal U and Bariana H 2023 Relocation of_Sr48_to chromosome 2D using an alternative mapping population and development of a closely linked marker using diverse molecular technologies. Plants 12, 1601. DOI: 10.3390/plants12081601.
- Xie YC, Nachappa P, Nalam VJ and Pearce S 2022 Genomic and molecular characterization of wheat streak mosaic virus resistance locus 2 (_Wsm2_) in common wheat (_Triticum aestivum_L.) Frontiers in Plant Science 13, 928949. DOI: 10.3389/flps.2022.928949.
- Bapela T, Shimelis H, Terefe T, Bourras S, Sánchez-Martín J, Douchkov D, Desiderio F and Tsilo TJ 2023 Breeding wheat for powdery mildew resistance: Genetic resources and methodologies-A review. Agronomy 13, 1173. DOI: 10.3390/agronomy13041173.
- Singh K, Wegulo SN, Skoracka A and Kunmar Kundu J 2018 Wheat_streak mosaic virus_: a centuries old virus with rising importance worldwide. Molecular Plant Pathology 19: 2193-2206 DOI: 10.1111.mpp.12683.
- Hyles J, Vautrin S, Pettolino F, MacMillan C, Stachurski Z, Breen J, Berges H, Wicker T and W. Spielmeyer W 2017 Repeat-length variation in a wheat cellulose synthase-like gene is associated with altered tiller number and stem cell wall composition. Journal of Experimental Botany 68:1519-1529.DOI:10.1093/jxb/erx051.
- Bouvet L, Percival-Alwyn L, Berry S, Fenwick P, Holdgate S, Mackay IJ and Cockram J 2022 Genetic resistance to yellow rust infection of the wheat ear is controlled by genes controlling foliar resistance and flowering time. Crop Science 62: 1758-1770. DOI: 10.1002/csc2.20768.
- Zhang JL, Li CX, Zhang WJ, Zhang XQ, Mo YJ, Tranquilli GE, Vanzetti LS, and J Dubcovsky J 2023 Wheat plant height locus_RHT25_encodes a PLATZ transcription factor that interacts with DELLA (_RHT1_). Proceedings of the National Academy of Sciences of the United States of America 120: e2300203120. DOI: 10.1073/pnas.2300203120.
- Kobayashi F, Kojima H, Tanaka T, Saito M, Kiribuchi-Otobe and Nakamura T 2020 Characterization of the_Q.Ymym_region on wheat chromosome 2D associated with wheat yellow mosaic virus resistance. Plant Breeding 139: 93-106. DOI:10.1111/pbr.12759.
- Yao DY, Ijaz W, Liu Y, Hu JH, Peng WT, Zhang BW, Wen XL, Wang JA, Qiu D, Li HJ, Xiao SH and Sun GZ 2022 Identification of a_Pm4_allele as a powdery mildew resistance gene in wheat line Xiaomaomai. International Journal of Molecular Science 23, 1194. DOI: 10.3390/ijms23031194.
- Li HQ, Fan ZW, Ma C, Zhao Y, Wang CL, Tian XB, Chen QF, Miao JN, He JQ, Qian JJ, Sehgal SK, Li HH, and Liu WX 2022 Mapping of the novel powdery mildew resistance gene_Pm2Mb_from_Aegilops biuncialis_based on_ph1b_‑induced homoeologous recombination. Theoretical and Applied Genetics 135: 2993-3003. DOI: 10.1007/s00122- 022-04162-4.
- Athiyannan N, Zhang P, McIntosh R, Chakraborty S, Hewitt, Bhatt D, Forrest K, Upadhyaya, Steuernagel B, Arora S5, Huerta J, Hayden M, Wulff BDH5, Ayliffe M, Hickey LT, Lagudah E and Periyannan 2022 Haplotype variants of the stripe rust resistance gene_Yr28_in_Aegilops tauschii_. Theoretical and Applied Genetics 135: 4327- 4336. DOI: 10.1007/s00122-022-04221-w.
- Zhu KY, Li MM, Wu HB, Zhang DY, Dong LL, Wu QH, Chen YX, Xie JZ, Lu P, Guo G , Zhang HZ, Zhang PP, Li BB, Li WL, Dong L, Wang QF, Zhu JH, Hu WL6, Guo LQ, Wang RG, Yuan CG, Li HJ, Liu ZY and Hua W 2022 Fine mapping of powdery mildew resistance gene_MlWE74_derived from wild emmer wheat (_Triticum turgidum_ssp. _dicoccoides_) in an NBS‑LRR gene cluster. Theoretical and Applied Genetics 135:1235- 1245. DOI: 10.1007/s00122-021-04027-2.
- Yin HY, Fang XJ, Li PH, Yang YH, Hao YC, Liang XM, Bo CY, Ni F, Ma X, Du XY, Li AF, Wang HW, Nevo E and Kong LR 2021 Genetic mapping of a novel powdery mildew resistance gene in wild emmer wheat from “Evolution Canyon” in Mt. Carmel Israel. Theoretical and Applied Genetics 134: 909-921. DOI: 10.1007/s00122-020-03741-7.
- Bi C, Wei CX, Tian S, Li JH, Zhang YF, Ma J and You MS 2023 Dosage effect of anthocyanin biosynthesis in purple-grained wheat (_Triticum aestivum_L.). Euphytica 219, 55. DOI: 10.1007/s10681-023-03183-4.
- Chumanova E, Efremova T and Vavilova V 2023. Characterization of the_Vrn-A1_allele introgressed from_T. aestivum_ssp._petropavlovsky_that influences the heading time in bread wheat. Euphytica 219, 53. DOI: 10.1007/s10681-023-03178-1.
- Kaur S, Pennington T, Conley EM, Green A, Kolmer j, Anderson J, Gupta R and Gill U 2023 High-resolution melting-based marker development for wheat leaf rust resistance gene_Lr34_. Phytopathology 113: 508-515. DOI: 10.1094/PHYTO-08-22-0313-R.
- Kanwal M, Qureshi N, Gessese M, Forrest K, Babu P, Bariana H and Bansal U 2021 An adult plant stripe rust resistance gene maps on chromosome 7A of Australian wheat cultivar Axe. Theoretical and Applied Genetics 134: 2213-2220. DOI: 10.1007/s00122-021-03818- x.
- Jiang YF, Duan LY, Guan FN, Yao FJ, Long L, Wang YQ, Zhao XY, Li H, Li W, Xu QA, Jiang QT, Wang JR, Wei YM, Ma JA, Hang HY, Qi PF, Deng M, Zheng YL and Chen GY 2022. Exome sequencing from bulked segregant analysis identifies a gene for all-stage resistance on chromosome 1AL in Chinese wheat landrace ‘Xiaohemai’. Plant Disease 106: 1209-1215. DOI: 10.1094/PDIOS-08-21-1618-RE.
- Yang X, Jiang YF, Yu XH, Zhang HP, Wang YQ, Guan FN, Long L, Li H, Li W, Jiang QT, Wang JR, Wei YM, Ma JA, Kang HY, Qi PF, Xu QA, Deng M, Zhang YZ, Zheng YL, Zhou YH and Chen GY 2023. Fine mapping and transcriptome sequencing reveal candidate genes conferring all-stage resistance to stripe rust on chromosome arm 1AL in Chinese wheat landrace AS1676. The Crop Journal 11: 1501-1511. DOI: 10.1016/j.cj.2023.04.011.
- Li HN, Luo J, Zhang WJ, Hua L, Li K, Wang JA, Xu BY, Yang C, Wang GP, Rouse MN, Dubcovsky J and Chen SS 2023 High‑resolution mapping of_SrTm4_, a recessive resistance gene to wheat stem rust. Theoretical and Applied Genetics 136, 120. DOI: 10.1007/s00122- 023-04369-z.
- Hou S, Lin Y, Yu SF, Yan N, Chen H, Shi HR, Li CX, Wan ZQ and Liu YX 2023 Genome‑wide association analysis of Fusarium crown rot resistance in Chinese wheat landraces. Theoretical and Applied Genetics 136, 101. DOI: 10.1007/s00122-023-04289-y.
- Li YH, Lin RM, Hu JH, Shu XH, Qiu D, Wu PP, Goitom GH, Wang SQ, Zhang HJ, Yang L, Liu HW, Wu QH, Xie JZ, Zhou Y, Liu ZY and Li HJ 2022 Mapping of wheat stripe rust resistance gene_Yr041133_by BSR-Seq analysis. The Crop Journal 10: 447-455. DOI: 10.1016/j.cj2021.06.009.
- Wang X, Li GQ, Jia, HY, Cheng R, Zhong JK, Shi JX, Chen RT, Wen, YX and Ma ZQ 2024 Breeding evaluation and precise mapping of_Fhb8_for Fusarium head blight resistance in wheat (_Triticum aestivum_). Plant Breeding 143: 26-33.DOI: 10.1111/pbr.13113.
- Wang PS, Huang J, Li N, Zhang J, Gu CM, Yuan Y, Wen ZR, Jia HY, Kong ZX and Ma ZQ 2023 Identification and fine mapping of_PmNJ3946_for powdery mildew resistance in einkorn wheat. The Crop Journal 11: 1846-1851. DOI: 10.1016/j.cj.2023.05.010.
- Wu JZ, Jia HY, Qiao LY, Fu BS, Brown‑Guedira G, Nagarajan R and Yan LL 2023 Genetic basis of resistance against powdery mildew in the wheat cultivar “Tabasco”. Molecular Breeding 43, 56. https://doi.org/10.1007/s11032-023-01402-3.
- Chen C, Hao WH, Wu JC, Si HQ, Xia XC and Ma CX 2022 Fine mapping of stripe-rust- resistance gene_YrJ22_in common wheat by BSR-Seq and MutMap-based sequencing**_._** Plants 11, 3244. DOI: 10.3390/plants1123324.
- Sheng DC, Qiao LY, Zhang XJ, Li X, Chang LF, Guo HJ, Zhang SW, Chen F and Chang ZJ 2022 Fine mapping of a recessive leaf rust resistance locus on chromosome 2BS in wheat accession CH1539. Molecular Breeding 42, 52. DOI: 10.1007/s11032-022-01318-4.
- Graybosch RA, Peterson, CJ, Baenziger PS, Baltensperger DD, Nelson LA, Jin Y, Kolmer J, Seabourn B, French R, Hein G, Martin TJ, Beecher B, Schwarzacher T and Heslop- Harrison P 2009 Registration of ‘Mace’ hard red winter wheat. Journal of Plant Registrations 3: 51-56. DOI: 10.3198/jpr2008.06.0345crc.
- Norman M, Chen CH, Miah H, Patpour M, Sørensen C, Hovmøller M, Forrest K, Kumar5 S, Prasad P, Gangwar OP, Bhardwaj S, Bariana H, Periyannan S and Bansal U 2024_Sr65_:
- Millet E, Manisterski J, Ben-Yehuda P, Distelfield A, Deek J, Wan A, Chen X and Stefffenson BJ 2014. Introgression of leaf rust and stripe rust resistance from Sharon goatgrass (_Aegilops sharonensis_ Eig) into bread wheat (_Triticum aestivum_ L.) Genome 57. DOI: 10.1139/gen-2014-0004.
- Khazan S, Minz-Dub A, Sela H, Manisterski J, Ben-Yehuda P, Sharon A and Millet E 2020 Reducing the size of an alien segment carrying leaf rust and stripe rust resistance in wheat. BMC Plant Biology 20,153. DOI: 10.1186/s12870-020-2306-9.
- Cavalet-Giorsa E, Gonza-Munoz A, Athiyannan N, Holden S, Salhi A, Gardener C, Quiroz- Chavez J, Rustamova SM, Elkot AF, Patpour M, Rasheed A, Mao L, Lagudah ES, Periyannan SK, Sharon S, Himmelbach A, Reif JC, Knauft M, Mascher M, Stein N, Chayut N, Ghosh S, Perovic D, Putra A, Perera AB, Hu C-Y, Yu GT, Ahmed HI, Laquai KD, Rivera LF, Chen RJ, Wang YJ, Gao X, Liu SZ, Raupp WJ, Olson EL, Lee J-Y, Chhuneja P, Kaur S, Zhang P, Park RF, Ding Y, Liu D-C, Li WL, Nasyrova FY, Dvorak J, Abbasi M, Li M, Kumar N, Meyer WB, Boshoff WHP, Steffenson BJ, Matny O, Sharma PK, Tiwari VK, Grewal S, Pozniak C, Chawla HS, Ens J, Dunning LT, Kolmer JA, Lazo GR, Xu S, Gu YQ, Xu XY, Uauy C, Abrouk M, Bougouffa S, Brar GS, Wulff BBH and Krattinger SG 2024. Origin and evolution of the bread wheat D genome. Nature XXXX DOI: 10.1038/s41586-024-07808-z.
- Han G, Liu H, Zhu S, Gu T, Ca, L, Ya, H, Jin Y, Wang J, Liu S, Zhou Y, Shi Z, He H and An D 2023 Two functional CC-NBS-LRR proteins from rye chromosome 6RS confer differential age-related powdery mildew resistance to wheat. Plant Biotechnology Journal 22: 66-81. DOI: 10.1111/pbi.14165.
- Che MZ, Hiebert CW, McCartney CA, Zhang ZJ and McCallum BD 2019 Mapping and DNA marker development for_Lr33_from the leaf rust resistant line KU168-2. Euphytica 215, 29. DOI: 1007/s10681-019-2343-
- Sharma JS, Che MZ, Fetch T, McCallum BD, Xu SS and, Hiebert CW 2024 Identification of_Sr67_, a new gene for stem rust resistance in KU168‑2 located close to the_Sr13_locus in wheat Theoretical and Applied Genetics 137, 30. DOI: 10.1007/s00122-023-04530-8.
- Lin X, N’Diaye A, Walkowiak S, Nilsen KT, Cory AT, Haile J, Kutcher HR, Ammar K, Loladze A, Huerta-Espino J, Clarke JM, Ruan YF, Knox R, Fobert P, Sharpe AG and Pozniak CJ 2018 Genetic analysis of resistance to stripe rust in durum wheat (_Triticum_ _turgidum_L. var. durum). PLoS ONE 13: e0203283. DOI: 10.1371/journal.pone.0203283.
- Simmonds J, Scott P, Brinton J, Mestre TC, Bush M, del Blanco A, Dubcovsky J and·Uauy C 2016 A splice acceptor site mutation in TaGW2‑A1 increases thousand grain weight in tetraploid and hexaploid wheat through wider and longer grains. Theoretical and Applied Genetics 129: 1099–1112. DOI 10.1007/s00122-016-2686-2.
- Rivera‑Burgos L, VanGesse C, Guedira M, Smith J, Marshall D, Jin Y, Rouse M and Brown‑Guedira G. 2024 Fine mapping of stem rust resistance derived from soft red winter wheat cultivar AGS2000 to an NLR gene cluster on chromosome 6D. Theoretical and Applied Genetics 137, 206. DOI:10.1007/s00122-024-04702-0.
- Ni F, Zheng YY, Liu XK, Yu Y, Zhang GQ, Epstein L, Mao XE, Wu JZ, Yuan CL, Lv B, Yu HX, Li JL, Zhao Q, Yang QY, Liu, JJ, Qi JA, Fu DL and Wu JJ 2023 Sequencing trait- associated mutations to clone wheat rust-resistance gene_YrNAM_. Nature Communications 14, 4253. DOI:10.1038/s41467-023-39993-2.
- Lunzer M, Buerstmayr M, Grausgruber H, Müllner AE, Fallbacher I·and Buerstmayr H 2023 Wheat (_Triticum aestivum_) chromosome 6D harbours the broad spectrum common bunt resistance gene_Bt11_. Theoretical and Applied Genetics 136, 207. DOI:10.1007/s00122-023-04452-5.
- Gaurav G, Arora S, Silva P, Sánchez-Martín J, Horsnell R, Gao LL, Brar GS, Widrig V, Raupp WJ, Singh N, Wu SY, Kale SM, Chinoy C, Nicholson P, Quiroz-Chávez J, Simmonds J, Hayta S, Smedley MA, Harwood W, Pearce S, Gilbert D, Kangara N, Gardener C, Forner-Martínez M, Liu JQ, Yu GT, Boden SA, Pascucci A, Ghosh S, Hafeez AN, O’Hara T, Waites J, Cheema J, Steuernagel B, Patpour M, Justesen AF, Liu SY, Rudd JC, Avni R, Sharon A, Steiner B, Kiranam RP, Buerstmayr H, Firuza M, Nasyrova Y, Chayut N, Matny O, Steffenson BJ, Sandhu N, Chhuneja P, Lagudah E, Elkot AF, Tyrrell S, Bian XD, Davey RP, Simonsen M, Schauser L, Tiwari VK, Kutcher HR, Hucl P, Li AL, Liu D-C, Mao L, Xu S, Brown-Guedira G, Faris J, Dvorak J, Luo M-C, Krasileva K, Lux T, Artmeier S, Mayer KFX, Uauy C, Mascher M, Bentley AR, Keller B, Poland J and Wulff BBH 2022. Population genomic analysis of_Aegilops tauschii_identifies targets for bread wheat improvement. Nature Biotechnology 40: 422-431. DOI: 10.1038/s41587-021-01058- 4.
- Tang XO, Dai FX, Hao YL, Chen YM, Zhang JP, Wang GQ, Li, XY Peng XJ, Tao Xu, Yuan CX, Sun L, Xiao J, Wang HY, Shi WQ, Yang LJ, Wang XK and Wang XE 2023 Fine mapping of two recessive powdery mildew resistance genes from_Aegilops tauschii_ accession CIae8.Theoretical and Applied Genetics136, 206. DOI: 10.1007/s00122-023- 04454-3.
- Liu SJ, Liu D, Zhang CL, Zhang WJ, Wang XT, Mi ZW, Gao X, Ren Y, Lan CX, Liu XK, Zhao ZD, Liu JJ, Li HS, Yuan FP, Su BF,·Kang ZS, Li CL, Han DJ, Wang CF, Cao XY and Wu JH 2023 Slow stripe rusting in Chinese wheat Jimai 44 conferred by_Yr29_in combination with a major QTL on chromosome arm 6AL. Theoretical and Applied Genetics 136, 175 DOI: 10.1007/s00122-023-04420-z.
- Lim AS, WL, Lou XY, Liu DC, Sun JZ, Guo XL, J, Zhan KH, Ling H-Q and Zhang AM 2013 Novel natural allelic variations at the_Rht_-1 loci in wheat. Journal of Integrative Plant Biology 65: 1026-1037. DOI: 10.1111/jipb12103.
- Narang D1, Kaur S, Steuernagel B, Ghosh S, Bansal M, Li JB, Zhang P, Bhardwaj S, Uauy C, Wulff BBH and Chhuneja P 2020 Discovery and characterization of a new leaf rust resistance gene introgressed in wheat from wild wheat_Aegilops peregrina_. Scientific Reports 10, 7573. DOI: 10.1038/s41598-020-64166-2.
- Xu SS, Lyu ZF, Zhang N, Li MZ, Wei XY, Gao YH, Cheng XX, Ge WY,·Li ZF, Bao YG, Yang ZJ, Ma X, Wang HW and Kong LR 2023 Genetic mapping of the wheat leaf rust resistance gene_Lr19_and development of translocation lines to break its linkage with yellow pigment. Theoretical and Applied Genetics 136, 200. DOI: 10.1007/s00122-023-04425-8.
- Thambugala D, Lewarne MK, McCallum BD, Bilichak A, Hiebert CW and· McCartney CA 2023 Genetic mapping of the wheat leaf rust resistance gene_Lr2a_and its importance in Canadian wheat cultivars. Theoretical and Applied Genetics (2023) 136, 198.DOI: 10.1007/s00122-023-04440-9.
- Su FY, Han GH, Yu ZY, Li HS, Wang XL, Chang L, Xiao LN, Mu YJ, Bian QZ, Wang Ft, Jin YL and Ma PT 2023 Identification of a_Pm4_allele conferring powdery mildew resistance in wheat breeding line GR18-1. Plant Disease 107: 2104-2111. DOI: 10.1094/PDIS-11-22-2627-RE./-
- Hu JH, Gebremariam GG, Zhang P, Qu YF, Qiu D, Shi ZH, Li YH, Wu QH, Luo M, Yang LJ, Liu HW, Zhou Y, Liu ZH and Wang BT 2023 Resistance to powdery mildew is conferred by different genetic loci at the adult-plant and seedling stages in winter wheat line Tianmin 668. Plant Disease 107: 2133-2143. DOI: 10.1094/PDIS-11-22-2633-RE.
- Zhao RH, Liu BL, Jiang ZN, Chen TT, Wang L, Ji YY, Hu ZB, He HG and Bie TD 2019. Comparative analysis of genetic effects of wheat‐_Dasypyrum villosum_translocations T6V#2S·6AL and T6V#4S·6DL. Plant Breeding 138:503-512. DOI: 10.1111/pbr.12711.
- Zhang X, Wang WR, Liu C, Zhu SY, Gao HM, Xu HX, Zhang LP, Song JC, Song WY, Liu KC, He HG and Ma PT 2021 Diagnostic kompetitive allele-specific PCR markers of wheat broad-spectrum powdery mildew resistance genes_Pm21_,_PmV_and_Pm12_developed for high-throughput marker-assisted selection. Plant Disease 105: 2844-2850. DOI: 10.1094/PDIS-02-21-0308-RE.
- Wu YA, Yu XT, Zhang X, Yan LJ, Gao L, Hao YQ, Wang XY, Xue XL, Qu YF, Hu TZ, Fu BS, Li SP, Li HJ, Li CX, Ma PT and Xu HX 2021 Characterization of_PmDGM_ conferring powdery mildew resistance in Chinese wheat landrace Duanganmang. Plant Disease 105: 3127-3133. DOI: 10.1094/PDIS-12-20-2719-RE.
- Li YX, Liu L, Wang MN, Ruff T, See DR, Hu XP and Chen XM 2023 Characterization and molecular mapping of a gene conferring high-temperature adult-plant resistance to stripe rust originally from_Aegilops ventricosa_. Plant Disease 107: 431-442. DOI: 10.1094/PDIS-06-22-1419-RE.
- Qiu D, Huang JA, Guo GH, Hu JH, Li YH, Zhang HJ, Liu HW, Yang L, Zhou Y, Yang BZ, Zhang YD, Liu ZY and Li HJ 2022 The_Pm5e_gene has no negative effect on wheat agronomic performance: Evidence from newly established near-isogenic lines. Frontiers in Plant Science 13, 918559. DOI: 10.3389/fpls.2022.918559.
- Han GH, Yan HW, Gu TT, Cao LJ, Zhou YL, Liu W, Liu DC and An DG 2023 Identification of a wheat powdery mildew dominant resistance gene in the_Pm5_locus for high-throughput marker-assisted selection. Plant Disease 107: 450-456. DOI: 10.1094/PDIS-07-22-1545-RE.
- Nigro D, Blanco A, Piarulli L, Signorile MA, Colasuonno P, Blanco E, and Simeone R. 2022 Fine mapping and candidate gene analysis of_Pm36_, a wild emmer-derived powdery mildew resistance locus in durum wheat. International Journal of Molecular Sciences 23, 13659. DOI:10.3390/ijms232113659.
- Zhong SF, Ma LX, Fatima SA, Yang JZ, Chen WQ, W, Liu TG, Hu YT, Li Q, Guo JW, Zhang M, Lei L, Li X, Tang SW and Luo PG. 201 Collinearity analysis and high-density genetic mapping of the wheat powdery mildew resistance gene_Pm40_in PI 672538. PLoS ONE 11: e0164815. DOI: 10.1371/journal.pone.0164815.
- Yang H, Zhong SF, Chen C, Yang H, Chen W, Tan FQ, Zhang M, Chen WQ, Ren TH, Li and Luo P 2021 Identification and cloning of a CC-NBS-NBS-LRR gene as a candidate of _Pm40_by integrated analysis of both the available transcriptional data and published linkage mapping. International Journal of Molecular Sciences 22, 10239. DOI: 10.3390/ijms221910239.
- Sharma D, Avni R, Gutierrez-Gonzalez J, Kumar R, Sela H, Ranjan R, Prusty M, Cohen A, Molnár I, Holušová K, Said M, Doležel J, Millet E, Khazan-Kost S, Landau U, Bethke G, Ezrati S, Ronen M, Maatuk O, Eilam T, Manisterski J, Ben-Yehuda P, Anikster Y, Matny O, Steffenson BJ, Mascher M, Brabham HJ, Moscou MJ, Liang Y, Yu GT, Wulff BBH, Muehlbauer G, Minz-Dub A and Sharon A 2023 A single NLR gene confers resistance to leaf and stripe rust in wheat,Research Square. DOI: 10.21203/rs.3.rs-3146908/v1.
- Crawford AC and Francki MG. 2013 Lycopene-e-cyclase (e-LCY3A) is functionally associated with quantitative trait loci for flour b* colour on chromosome 3A in wheat (_Triticum aestivum_L.) Molecular Breeding 31: 737-741. DOI 10.1007/s11032-012-9812-x.
- Wu PP, Hu JH, Zou JW, Qiu D, Qu YF, Li YH, Li T, Zhang HJ, Yang L, Liu HW, Zhou Y, Zhang ZJ, Li JT, Liu ZY and Li HJ 2019 Fine mapping of the wheat powdery mildew resistance gene_Pm52_using comparative genomics analysis and the Chinese Spring reference genomic sequence. Theoretical and Applied Genetics 132: 1451-1461. DOI: 10.1007/s00122-019-03291-7.
- Qu YF, Wu PP, Hu JH, Chen YX, Shi ZL, Qiu D, Li YH, Zang HJ, Zhou Y, Yang L, Liu HW, Zhu TQ, Liu ZY, Zhang YM and Li HJ 2020 Molecular detection of the powdery mildew resistance genes in winter wheats DH51302 and Shimai 26. Journal of Integrative Agriculture 19: 931-940 DOI: 10.1016/S2095-3119(19)62644-4.
- Shi XH, Wu PP, Hu JH, Qiu D, Qu YF, Li YH, Liu Y, Gebremariam YG, Xie JH, Wu QH, Zhang HJ, Liu HW, Li Y, Sun GH, Zhou Y, Liu ZH and Li HJ 2021 Molecular characterization of all-stage and adult-plant resistance loci against powdery mildew in winter wheat cultivar Liangxing 99 using BSR-Seq technology. Plant Disease 105: 3443- 3450. DOI: 10.1094/PDIS-03-21-0664-RE.
- Hanzalova A, Dumalasova V and Zelba O 2021 Virulence in the_Puccinia triticina_ population in the Czech Republic and resistance genes in registered cultivars 1966-2019. Euphytica 217, 4. DOI10.1007/s10681-020-02733-4.
- Wei B, Jing RL, Wang CS, Chen JB, Mao XG, Chang XP and Jia JZ 2009_Dreb1_genes in wheat (_Triticum aestivum_L.): Development of functional markers and gene mapping based on SNPs. Molecular Breeding 23: 13-22. DOI: 10.1007/s11032-008-9209-z.
- Li H, Zhang F, Zhao J, Bai G, Amand PS, Bernardo A, Ni Z, Sun Q, and Su Z 2022 Identification of a novel major QTL from Chinese wheat cultivar Ji5265 for Fusarium head blight resistance in the greenhouse. Theoretical and Applied Genetics 135: 1867-1877. DOI: 10.1007/s00122-022-04080-5.
- Gessese M, Miah H, Bansal U and Bariana H. 2021 Genetics of stripe rust resistance in a common wheat landrace Aus27492 and its transfer to modern wheat cultivars. Canadian Journal of Plant Pathology 43: S256–S262. DOI: 10.1080/07060661.2021.1979657.
- Li HN, Hua L, Zhao SQ, Hao M, Song R, PangSY, Liu YN, Chen H, Zhang WJ, Shen T, Gou J-Y, Mao HL, Wang GP, Hao XH, LiJA, Song BX, Lan CX, Li ZF, Deng XW, Dubcovsky J, Wang XD and Chen SS 2023 Cloning of the wheat leaf rust resistance gene _Lr47_introgressed from_Aegilops speltoides_. Nature Communications |14, 6072. DOI: 10.1038/s41467-023-41833-2.
- Chemonges M, Herselman L. Pretorius ZA, Mare A and Boshoff WHP 2022 Characterization of stem rust resistance in the South African winter wheat cultivar PAN 3161. Euphytica 218, 139. DOI: 10.1007/s10681-022-02087-9.
- Mago R, Tabe L, McIntosh RA,Pretorius Z, Kota R, Paux E, Wicker T, Breen J, Lagudah ES, Ellis JG and Spielmeyer W 2011A multiple resistance locus on chromosome arm 3BS in wheat confers resistance to stem rust (_Sr2_), leaf rust (_Lr27_) and powdery mildew. Theoretical and Applied Genetics 123: 615–623. DOI: 10.1007/s00122-011-1611-y.
- Mago R 2023. By request.
- Chemonges M, Herselman L, Pretorius ZA, Rouse MN, Mare A and Boshoff WHP 2023 Mapping and validation of all-stage resistance to stem rust in four South African winter wheat cultivars. Euphytica 219, 11. DOI: 10.1007/s10681-022-03143-4.
- Xu XY, Li GQ, Bai GH, Bian RL, Bernardo A, Wolabu TW, Carver BF, Wu YQ and Elliott N 2024. Characterization of a new greenbug resistance gene_Gb9_in a synthetic hexaploid wheat. Theoretical and Applied Genetics 137, 140. DOI. 10.1007/s00122-024-04650-9.
- Zhang FP, Zhang HJ, Liu JL, Ren XM, Ding YP, Sun FY, Zhu ZZ, He X, Zhou Y, Bai GH, Ni ZF, Sun QX, and Su ZQ 2024_Fhb9_, a major QTL for Fusarium head blight resistance improvement in wheat.Journal of Integrative AgricultureXXXX DOI: 10.1016/j.jia.2024.03.045.
- Zhao Y, Dong ZJ, Miao JN, Liu QW, Ma C, Tian XB, He JQ, Bi HB, Yao W, Li T, Gill HS, Zhang ZB, Cao AZ, Liu B, Li HH, Sehgal SK, and Liu WX 2024._Pm57_from_Aegilops_ _searsii_encodes a tandem kinase protein and confers wheat powdery mildew resistance. Nature Communications 15, 4796 DOI: 10.1038/s41467-024-49257-2.
- Kassa Mt, Menzies JG and McCartney CA 2015 Mapping of a resistance gene to loose smut (_Ustilago tritici_) from the Canadian wheat breeding line BW278. Molecular Breeding 35, 1180. DOI: 10.1007/s11032-015-0369-3.