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Genome-Wide Association Study and Haplotype Analysis Jointly Identify New Candidate Genes for Alkaline Tolerance at Seedling Stage in Rice
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作者 Ratan Kumar GANAPATI CHEN Kai +4 位作者 ZHAO Xiuqin ZHENG Tianqing ZHANG Fan ZHAI Laiyuan XU Jianlong 《Rice science》 2025年第4期537-548,共12页
Alkaline soil is characterized by high soluble salt content,elevated pH levels,and ionic imbalance,all of which collectively intensify the harmful effects of alkaline stress on plants.To gain molecular insights into a... Alkaline soil is characterized by high soluble salt content,elevated pH levels,and ionic imbalance,all of which collectively intensify the harmful effects of alkaline stress on plants.To gain molecular insights into alkaline tolerance(AT),we evaluated 13 AT-related traits in 508 diverse rice accessions from the 3K Rice Germplasm Project at the seedling stage.A total of 2929764,2059114,and 1365868 single nucleotide polymorphisms were used to identify alkaline-tolerance QTLs via genome-wide association studies(GWAS)in the entire population as well as in the xian and geng subpopulations,respectively.Candidate genes and their superior haplotypes were further identified through gene-based association,haplotype analysis,and gene function annotation.In total,99 QTLs were identified for AT by GWAS,and three genes(LOC_Os03g49050 for qSSD3.1,LOC_Os05g48760 for qSKC5,and LOC_Os12g01922 for qSNC12)were selected as the most promising candidate genes.Furthermore,we successfully mined superior alleles of key candidate genes from natural variants associated with AT-related traits.This study identified crucial candidate genes and their favorable alleles for AT traits,laying a foundation for further gene cloning and the development of AT rice varieties via marker-assisted selection. 展开更多
关键词 RICE alkaline tolerance genome-wide association study haplotype analysis candidate gene
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Gγ subunit AT1/GS3-the“code”of alkaline tolerance in main graminaceous crops
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作者 Chuanfeng Ju Cun Wang 《Stress Biology》 2023年第1期111-113,共3页
This brief article highlights the results of Zhang et al.(Science 379,eade8416,2023),who recently found that the Gγ subunit AT1/GS3 contributes to alkaline tolerance in several main monocots crops,and revealed the mo... This brief article highlights the results of Zhang et al.(Science 379,eade8416,2023),who recently found that the Gγ subunit AT1/GS3 contributes to alkaline tolerance in several main monocots crops,and revealed the molecular mechanism of AT1/GS3-mediated response to alkaline stress in plants,which involves regulating H_(2)O_(2) levels by inhibiting the phosphorylation of aquaporin PIP2s. 展开更多
关键词 alkalinity tolerance Gγprotein Alkaline tolerance 1(AT1) AQUAPORINS
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