Introgression and Mapping of a Novel Bacterial Blight Resistance Gene xa49(t) from Oryza rufipogon acc. CR100098A into O. sativa

Bacterial blight (BB) caused by pv. is one of the epidemic diseases in rice. Rapid changes in the pathogenicity of the pv. pathogen demand the identification and characterization of novel BB resistance genes. Here, we report the transfer and mapping of a new BB resistance gene from acc. CR100098A. I...

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Veröffentlicht in:Phytopathology 2024-11, Vol.114 (11), p.2412-2420
Hauptverfasser: Bhatia, Sukhpreet Kaur, Vikal, Yogesh, Kaur, Pavneet, Dhillon, Gurmanpuneet Singh, Kaur, Gurwinder, Neelam, Kumari, Malik, Palvi, Lore, Jagjeet Singh, Khanna, Renu, Singh, Kuldeep
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Sprache:eng
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Zusammenfassung:Bacterial blight (BB) caused by pv. is one of the epidemic diseases in rice. Rapid changes in the pathogenicity of the pv. pathogen demand the identification and characterization of novel BB resistance genes. Here, we report the transfer and mapping of a new BB resistance gene from acc. CR100098A. Inheritance studies on the BC F population, BC F progenies, and backcross-derived recombinant inbred lines derived from a cross between Pusa44/ acc. CR100098A//2 PR114 showed that a single recessive gene confers resistance in acc. CR100098A. Bulked segregant analysis using 203 simple sequence repeat (SSR) markers localized the BB resistance gene on chromosome 11 bracketed between two SSR markers, RM27235 and RM2136. Using PR114 and acc. CR100098A genotyping by sequencing data, 86 KASP markers within the bracketed region were designed and tested for bulked segregant analysis. Only five KASP markers showed polymorphism between parents, and three were associated with the target gene. Seventy-seven new SSR markers were designed from the same interval. A total of 33 polymorphic markers were analyzed on the whole population and mapped the BB gene in an interval of 2.8 cM flanked by SSR markers PAU11_65 and PAU11_44 within a physical distance of 376.3 kb. The BB resistance gene mapped in this study is putatively new and designated as . Fourteen putative candidate genes were identified within the region having a role in biotic stress resistance. The linked markers to the gene were validated in other rice cultivars for its successful deployment in BB resistance breeding.
ISSN:0031-949X
1943-7684
DOI:10.1094/PHYTO-02-24-0061-R