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plant:rice [2025/09/30 13:40] – [Resistance gene: //Xa12//] rkoebnik | plant:rice [2025/10/02 09:36] (current) – [References] jfpothier | ||
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=== Synonyms === | === Synonyms === | ||
- | //NA// | + | //Xa-kg// (Ogawa //et al.//, 1978). |
=== Source === | === Source === | ||
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=== Status (identified, | === Status (identified, | ||
- | Mapped on chromosome 8 (Chu //et al.//, 2006). Cloned and sequenced (Yang //et al//., 2006; Yuan //et al//., 2009). | + | Mapped on chromosome 8 (Chu //et al.//, 2006). Cloned and sequenced (Yang //et al//., 2006; Yuan //et al//., 2009). |
=== Molecular markers === | === Molecular markers === | ||
Line 299: | Line 299: | ||
=== Status (identified, | === Status (identified, | ||
- | Mapped on chromosome 4 (Bao //et al//., 2010). Cloned and sequenced (Ji //et al//., 2020). | + | Identified (Taura //et al.//, 1987). |
=== Molecular markers === | === Molecular markers === | ||
Line 361: | Line 361: | ||
=== Status (identified, | === Status (identified, | ||
- | Mapped on chromosome 4 (Endo //et al//., 2009, 2012). | + | Identified (Ogawa //et al.//, 1989). |
=== Molecular markers === | === Molecular markers === | ||
Line 444: | Line 444: | ||
=== Status (identified, | === Status (identified, | ||
- | Mapped on chromosome 11 (Ronald //et al//., 1992). Cloned and sequenced (Song //et al//., 1995). | + | Identified (Khush //et al.//, 1990). |
=== Molecular markers === | === Molecular markers === | ||
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Ji C, Ji Z, Liu B, Cheng H, Liu H, Liu S, Yang B, Chen G (2020). //Xa1// allelic //R// genes activate rice blight resistance suppressed by interfering TAL effectors. Plant Comm. 1: 100087. DOI: [[https:// | Ji C, Ji Z, Liu B, Cheng H, Liu H, Liu S, Yang B, Chen G (2020). //Xa1// allelic //R// genes activate rice blight resistance suppressed by interfering TAL effectors. Plant Comm. 1: 100087. DOI: [[https:// | ||
- | Jiang GH, Xia ZH, Zhou YL, Wan J, Li DY, Chen RS (2006). Testifying the rice bacterial blight resistance gene //xa5// by genetic complementation and further analyzing //xa5// (//Xa5//) in comparison with its homolog TFIIAgamma1. Mol. Genet. Genomics 275: 354-366. DOI: [[https:// | + | Jiang GH, Xia ZH, Zhou YL, Wan J, Li DY, Chen RS (2006). Testifying the rice bacterial blight resistance gene //xa5// by genetic complementation and further analyzing //xa5// (//Xa5//) in comparison with its homolog TFIIAgamma1. Mol. Genet. Genomics 275: 354-366. DOI: [[https:// |
Kaku H, Ogawa T (2001). Genetic Analysis of the relationship between the browning reaction and bacterial blight resistance gene //Xa3// in rice. J. Gen. Plant Pathol. 67: 228-230. DOI: [[https:// | Kaku H, Ogawa T (2001). Genetic Analysis of the relationship between the browning reaction and bacterial blight resistance gene //Xa3// in rice. J. Gen. Plant Pathol. 67: 228-230. DOI: [[https:// | ||
- | Kaur R, Grewal N, Das A, Vikal Y, Singh J, Bharaj TS, Sidhu JS, Singh K (2005). Inheritance of bacterial blight resistance in two accessions of wild rice, //Oryza nivara//. Rice Genet. Newsl. 22: 78. Full text @ [[https:// | + | Kaur R, Grewal N, Das A, Vikal Y, Singh J, Bharaj TS, Sidhu JS, Singh K (2005). Inheritance of bacterial blight resistance in two accessions of wild rice, //Oryza nivara//. Rice Genet. Newsl. 22: 78. Full text @ [[https:// |
- | Khush GS, Angeles ER (1999). A new gene for resistance to race 6 of bacterial blight in rice, //Oryza sativa//. Rice Genet. Newsl. 16: 92-93. Full text @ [[https:// | + | Khush GS, Angeles ER (1999). A new gene for resistance to race 6 of bacterial blight in rice, //Oryza sativa//. Rice Genet. Newsl. 16: 92-93. Full text @ [[https:// |
+ | |||
+ | Khush GS, Bacalangco E, Ogawa T (1990). A new gene for resistance to bacterial blight from //Oryza longistaminata// | ||
Kim SM, Suh JP, Qin Y, Noh TH, Reinke RF, Jena KK (2015). Identification and fine-mapping of a new resistance gene, //Xa40//, conferring resistance to bacterial blight races in rice (//Oryza sativa// L.). Theor. Appl. Genet.128: 1933-1943. DOI: [[https:// | Kim SM, Suh JP, Qin Y, Noh TH, Reinke RF, Jena KK (2015). Identification and fine-mapping of a new resistance gene, //Xa40//, conferring resistance to bacterial blight races in rice (//Oryza sativa// L.). Theor. Appl. Genet.128: 1933-1943. DOI: [[https:// | ||
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Kurata N, Yamazaki Y (2006). Oryzabase. An integrated biological and genome information database for rice. Plant Physiol. 140: 12-17. DOI: [[https:// | Kurata N, Yamazaki Y (2006). Oryzabase. An integrated biological and genome information database for rice. Plant Physiol. 140: 12-17. DOI: [[https:// | ||
- | Lee KS, Khush GS (2000). Genetic analysis of resistance to bacterial blight, // | + | Lee KS, Khush GS (2000). Genetic analysis of resistance to bacterial blight, // |
Lee KS, Rasabandith S, Angeles ER, Khush GS (2003). Inheritance of resistance to bacterial blight in 21 cultivars of rice. Phytopathology 93: 147-152. DOI: [[https:// | Lee KS, Rasabandith S, Angeles ER, Khush GS (2003). Inheritance of resistance to bacterial blight in 21 cultivars of rice. Phytopathology 93: 147-152. DOI: [[https:// | ||
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Luo D, Huguet-Tapia JC, Taylor Raborn R, White FF, Brendel VP, Yang B (2021). The //Xa7// resistance gene guards the susceptibility gene //SWEET14// of rice against exploitation by bacterial blight pathogen. Nat. Commun. 2: 100164. DOI: [[https:// | Luo D, Huguet-Tapia JC, Taylor Raborn R, White FF, Brendel VP, Yang B (2021). The //Xa7// resistance gene guards the susceptibility gene //SWEET14// of rice against exploitation by bacterial blight pathogen. Nat. Commun. 2: 100164. DOI: [[https:// | ||
- | |||
- | Mew TW (1987). Current status and future prospects of research on bacterial blight of rice. Annu. Rev. Phytopathol. 25: 359-382. DOI: [[https:// | ||
Miao LL, Wang CL, Zheng C, Che JY, Gao Y, Wen YC, Li GQ, Zhao K (2010). Molecular mapping of a new gene for resistance to rice bacterial blight. Sci. Agric. Sin. 43: 3051-3058. | Miao LL, Wang CL, Zheng C, Che JY, Gao Y, Wen YC, Li GQ, Zhao K (2010). Molecular mapping of a new gene for resistance to rice bacterial blight. Sci. Agric. Sin. 43: 3051-3058. | ||
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Neelam K, Mahajan R, Gupta V, Bhatia D, Gill BK, Komal R, Lore JS, Mangat GS, Singh K (2020). High-resolution genetic mapping of a novel bacterial blight resistance gene //xa-45 (t)// identified from //Oryza glaberrima// | Neelam K, Mahajan R, Gupta V, Bhatia D, Gill BK, Komal R, Lore JS, Mangat GS, Singh K (2020). High-resolution genetic mapping of a novel bacterial blight resistance gene //xa-45 (t)// identified from //Oryza glaberrima// | ||
+ | |||
+ | Ogawa T, Kaku H, Yamamoto T (1989). Resistance gene of rice cultivar Asominori to bacterial blight of rice. Jpn. J. Breed. 39: S196-S197. | ||
+ | |||
+ | Ogawa T, Morinaka T, Fujii K, Kimura T (1978). Inheritance of resistance of rice varieties Kogyoku and Java 14 to bacterial group V of // | ||
Ogawa T, Yamamoto T (1986). Inheritance of resistance to bacterial blight in rice. //In:// Rice Genetics. Proc. Intl. Rice Genet. Symp., IRRI, Manila, The Philippines, | Ogawa T, Yamamoto T (1986). Inheritance of resistance to bacterial blight in rice. //In:// Rice Genetics. Proc. Intl. Rice Genet. Symp., IRRI, Manila, The Philippines, | ||
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Streubel J, Pesce C, Hutin M, Koebnik R, Boch J, Szurek B (2013). Five phylogenetically close rice //SWEET// genes confer TAL effector-mediated susceptibility to // | Streubel J, Pesce C, Hutin M, Koebnik R, Boch J, Szurek B (2013). Five phylogenetically close rice //SWEET// genes confer TAL effector-mediated susceptibility to // | ||
- | Sugio A, Yang B, Zhu T, White FF (2007). Two type III effector genes of // | + | Sugio A, Yang B, Zhu T, White FF (2007). Two type III effector genes of // |
Sun X, Yang Z, Wang S, Zhang Q (2003). Identification of a 47-kb DNA fragment containing //Xa4//, a locus for bacterial blight resistance in rice. Theor. Appl. Genet. 106: 683-687. DOI: [[https:// | Sun X, Yang Z, Wang S, Zhang Q (2003). Identification of a 47-kb DNA fragment containing //Xa4//, a locus for bacterial blight resistance in rice. Theor. Appl. Genet. 106: 683-687. DOI: [[https:// | ||
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Taura S, Ichitani K (2023). Chromosomal location of //xa19//, a broad-spectrum rice bacterial blight resistant gene from XM5, a mutant line from IR24. Plants (Basel) 12: 602. DOI: [[https:// | Taura S, Ichitani K (2023). Chromosomal location of //xa19//, a broad-spectrum rice bacterial blight resistant gene from XM5, a mutant line from IR24. Plants (Basel) 12: 602. DOI: [[https:// | ||
+ | |||
+ | Taura S, Ogawa T, Tabien RE, Khush GS, Yoshimura A, Omura T (1987). The specific reaction of Taichung Native 1 to Philippine races of bacterial blight and inheritance of resistance to race 5 (PXO 112). Rice Genet. Newsl. 4: 101-102. Full text @ [[https:// | ||
Taura S, Ogawa T, Yoshimura A, Ikea R, Omura T (1991). Identification of a recessive resistance gene in induced mutant line XM5 of rice to rice bacterial blight. Japan. J. Breed. 41: 427-432. DOI: [[https:// | Taura S, Ogawa T, Yoshimura A, Ikea R, Omura T (1991). Identification of a recessive resistance gene in induced mutant line XM5 of rice to rice bacterial blight. Japan. J. Breed. 41: 427-432. DOI: [[https:// | ||
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Lore JS, Pinili D, Bhatia D, Balloyan LR, Navea IP, Hunjan MS, Mangat GS, Singh R, Platten JD, Yang B, Leach JE, White FF, Vera Cruz CM, Schepler-Luu V (2025). Pathogen-informed strategies for durable resistance in rice: lessons from bacterial blight. Annu. Rev. Phytopathol. 63: 247-277. DOI: [[https:// | Lore JS, Pinili D, Bhatia D, Balloyan LR, Navea IP, Hunjan MS, Mangat GS, Singh R, Platten JD, Yang B, Leach JE, White FF, Vera Cruz CM, Schepler-Luu V (2025). Pathogen-informed strategies for durable resistance in rice: lessons from bacterial blight. Annu. Rev. Phytopathol. 63: 247-277. DOI: [[https:// | ||
+ | |||
+ | Mew TW (1987). Current status and future prospects of research on bacterial blight of rice. Annu. Rev. Phytopathol. 25: 359-382. DOI: [[https:// | ||
Park CJ, Han SW, Chen X, Ronald PC (2010). Elucidation of XA21-mediated innate immunity. Cell. Microbiol. 12: 1017-1025. DOI: [[https:// | Park CJ, Han SW, Chen X, Ronald PC (2010). Elucidation of XA21-mediated innate immunity. Cell. Microbiol. 12: 1017-1025. DOI: [[https:// |