4.3 Article

QTL mapping and identification of candidate genes linked to red rot resistance in sugarcane

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3 BIOTECH
卷 13, 期 3, 页码 -

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SPRINGER HEIDELBERG
DOI: 10.1007/s13205-023-03481-7

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Sugarcane; Linkage mapping; QTL; Red rot; Marker-aided selection

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A genetic linkage map was developed using a selfed population of sugarcane variety CoS 96268, and a QTL associated with red rot resistance was identified. Key markers involved in red rot resistance were identified through genotype-phenotype network analysis, which was further confirmed by expression analysis. The plant defense-related gene 26S protease regulatory subunit was strongly associated with red rot resistance. These findings have significant implications for screening disease-resistant genotypes and developing red rot-resistant varieties of sugarcane.
Sugarcane (Saccharum species hybrid) is one of the most important commercial crops cultivated worldwide for products like white sugar, bagasse, ethanol, etc. Red rot is a major sugarcane disease caused by a hemi-biotrophic fungus, Colletotrichum falcatum Went., which can potentially cause a reduction in yield up to 100%. Breeding for red rot-resistant sugarcane varieties has become cumbersome due to its complex genome and frequent generation of new pathotypes of red rot fungus. In the present study, a genetic linkage map was developed using a selfed population of a popular sugarcane variety CoS 96268. A QTL linked to red rot resistance (qREDROT) was identified, which explained 26% of the total phenotypic variation for the trait. A genotype-phenotype network analysis performed to account for epistatic interactions, identified the key markers involved in red rot resistance. The differential expression of the genes located in the genomic region between the two flanking markers of the qREDROT as well as in the vicinity of the markers identified through the genotype-phenotype network analysis in a set of contrasting genotypes for red rot infection further confirmed the mapping results. Further, the expression analysis revealed that the plant defense-related gene coding 26S protease regulatory subunit is strongly associated with the red rot resistance. The findings can help in the screening of disease resistant genotypes for developing red rot-resistant varieties of sugarcane.

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