Genetic Dissection of Alkalinity Tolerance at the Seedling Stage in Rice (Oryza sativa) Using a High-Resolution Linkage Map

被引:6
作者
Singh, Lovepreet [1 ]
Coronejo, Sapphire [1 ]
Pruthi, Rajat [1 ]
Chapagain, Sandeep [1 ]
Bhattarai, Uttam [1 ]
Subudhi, Prasanta K. [1 ]
机构
[1] Louisiana State Univ, Sch Plant Environm & Soil Sci, Agr Ctr, Baton Rouge, LA 70803 USA
来源
PLANTS-BASEL | 2022年 / 11卷 / 23期
关键词
abiotic stress; candidate genes; genotyping-by-sequencing; Na+; K+ ratio; Oryza sativa; quantitative trait loci; salinity; single nucleotide polymorphism; SALT TOLERANCE; CHLOROPHYLL FLUORESCENCE; SALINITY TOLERANCE; READ ALIGNMENT; ION BALANCE; STRESS; IDENTIFICATION; GROWTH; EXPRESSION; QTLS;
D O I
10.3390/plants11233347
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Although both salinity and alkalinity result from accumulation of soluble salts in soil, high pH and ionic imbalance make alkaline stress more harmful to plants. This study aimed to provide molecular insights into the alkalinity tolerance using a recombinant inbred line (RIL) population developed from a cross between Cocodrie and Dular with contrasting response to alkalinity stress. Forty-six additive QTLs for nine morpho-physiological traits were mapped on to a linkage map of 4679 SNPs under alkalinity stress at the seedling stage and seven major-effect QTLs were for alkalinity tolerance scoring, Na+ and K+ concentrations and Na+:K+ ratio. The candidate genes were identified based on the comparison of the impacts of variants of genes present in five QTL intervals using the whole genome sequences of both parents. Differential expression of no apical meristem protein, cysteine protease precursor, retrotransposon protein, OsWAK28, MYB transcription factor, protein kinase, ubiquitin-carboxyl protein, and NAD binding protein genes in parents indicated their role in response to alkali stress. Our study suggests that the genetic basis of tolerance to alkalinity stress is most likely different from that of salinity stress. Introgression and validation of the QTLs and genes can be useful for improving alkalinity tolerance in rice at the seedling stage and advancing understanding of the molecular genetic basis of alkalinity stress adaptation.
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页数:23
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