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Molecular and Morphological Characterization of Introgression Lines with Resistance to Bacterial Leaf Blight and Blast in Rice. | LitMetric

AI Article Synopsis

  • The study investigates disease-resistant rice lines created through marker-assisted forward breeding (MAFB) that lack key resistance genes for bacterial blight and blast, focusing on two elite rice varieties.
  • Molecular analysis showed a variety of resistance genes present among the introgression lines (ILs), with the highest number found in one line (RP1-IL 19030) and several others showing multiple gene combinations.
  • Results indicated significant variability in yield traits, particularly a positive correlation between grain yield and factors like days to flowering and tiller number, while plant height negatively affected grain yield, highlighting the effectiveness of the breeding method used.

Article Abstract

The present study evaluates marker assisted forward breeding (MAFB)-derived disease resistant introgression lines (ILs) which do not have the targeted resistance genes for bacterial blight () and blast ( + ). The ILs were derived in the background of two elite rice cultivars, Krishna Hamsa [Recurrent Parent 1 (RP1)] and WGL 14 (RP2), involving multi-parent inter-crossing. Molecular characterization with gene specific markers for seven reported resistance genes each for bacterial blight (, , , , , and ) and blast (, , , , , and ) revealed the presence of and , in addition to the targeted , and for bacterial blight resistance and , , , , and , in addition to the targeted and , for blast resistance in various combinations. A maximum of nine resistance genes + + was observed in RP1-IL 19030 followed by eight genes in two RP2-ILs, 19344 and 19347. ANOVA revealed the presence of significant variability for all the yield traits except "days to 50% flowering" (DFF). Box plots depicted the seasonal differences in the phenotypic expression of the yield traits. There was significant positive association of grain yield with days to flowering, tiller number and panicle number. Thousand grain weight is also significantly and positively correlated with grain yield. On the contrary, grain yield showed a significantly negative association with plant height. Multi-parent selective inter-crossing in the present study not only led to the development of high yielding disease resistant ILs but also enhanced recovery of the recurrent parent via selection for essential morphological features. More than 90.0% genetic similarity in the ILs based on SNP-based background selection demonstrated the success of multi-parent selective intercrossing in the development of disease resistant NILs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10458744PMC
http://dx.doi.org/10.3390/plants12163012DOI Listing

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