Development and validation of co-dominant gene based markers for Pi9, a gene governing broad-spectrum resistance against blast disease in rice

Rice production and grain quality are severely affected by blast disease caused by the ascomycetous fungus Magnaporthe oryzae . Incorporation of genes that confer broad-spectrum resistance to blast has been a priority area in rice breeding programs. The blast resistance gene Pi9 sourced from Oryza m...

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Veröffentlicht in:Molecular breeding 2016-12, Vol.36 (12), p.1-8, Article 168
Hauptverfasser: Rathour, R., Gopala Krishnan, S., Khanna, Apurva, Dhatwalia, Swaranjali, Kaachra, A., Sharma, T. R., Singh, Ashok K.
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Sprache:eng
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Zusammenfassung:Rice production and grain quality are severely affected by blast disease caused by the ascomycetous fungus Magnaporthe oryzae . Incorporation of genes that confer broad-spectrum resistance to blast has been a priority area in rice breeding programs. The blast resistance gene Pi9 sourced from Oryza minuta has shown broad spectrum and durable resistance to blast world-wide. In the present study co-dominant gene-based markers were developed for the precise marker-assisted tracking of Pi9 in breeding programs. The developed markers were validated across a diverse set of cultivars including basmati , indica and japonica varieties. Two markers, Pi9 STS-1 and Pi9 STS-2, effectively differentiated Pi9 donors from all the indicas and commercial basmati varieties tested. However, these markers were monomorphic between Pi-9 donors (IRBL9-W and Pusa 1637) and japonica type varieties. An additional gene-derived CAPS marker Pi9 1F_ 2R was developed to differentiate Pi9 donors from japonicas and traditional basmati lines. The co-dominant markers developed in the present study will be of immense utility to rice breeders for precise and speedy incorporation of Pi-9 into susceptible rice varieties through marker-assisted selection.
ISSN:1380-3743
1572-9788
DOI:10.1007/s11032-016-0599-z