Genetics of spot blotch resistance in bread wheat (Triticum aestivum L.) using five models for GWAS

被引:9
|
作者
Singh, Sahadev [1 ]
Gaurav, Shailendra Singh [1 ]
Vasistha, Neeraj Kumar [2 ]
Kumar, Uttam [3 ]
Joshi, Arun Kumar [4 ]
Mishra, Vinod Kumar [5 ]
Chand, Ramesh [6 ]
Gupta, Pushpendra Kumar [1 ,3 ,7 ]
机构
[1] Chaudhary Charan Singh Univ, Dept Genet & Plant Breeding, Mol Biol Lab, Meerut, India
[2] Eternal Univ, Akal Coll Agr, Dept Genet-Plant Breeding & Biotechnol, Sirmaur, India
[3] Borlaug Inst South Asia BISA, Ludhiana, India
[4] Borlaug Inst South Asia BISA, Int Maize & Wheat Improvement Ctr, CIMMYT, G-2,B-Block,NASC Complex,DPS Marg, New Delhi, India
[5] Banaras Hindu Univ, Indian Inst Agr Sci, Dept Genet & Plant Breeding, Varanasi, India
[6] Banaras Hindu Univ, Dept Mycol & Plant Pathol, Indian Inst Agr Sci, Varanasi, India
[7] Murdoch Univ, Murdochs Ctr Crop & Food Innovat, Murdoch, WA, Australia
来源
FRONTIERS IN PLANT SCIENCE | 2023年 / 13卷
关键词
Triticum aestivum L; GWAS; MTA; epistasis; candidate genes; GENOME-WIDE ASSOCIATION; F-BOX PROTEIN; ZINC-FINGER PROTEIN; DISEASE RESISTANCE; GRAIN-YIELD; ARABIDOPSIS; TRAIT; QTLS; BONFERRONI; COMPONENTS;
D O I
10.3389/fpls.2022.1036064
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Genetic architecture of resistance to spot blotch in wheat was examined using a Genome-Wide Association Study (GWAS) involving an association panel comprising 303 diverse genotypes. The association panel was evaluated at two different locations in India including Banaras Hindu University (BHU), Varanasi (Uttar Pradesh), and Borlaug Institute for South Asia (BISA), Pusa, Samastipur (Bihar) for two consecutive years (2017-2018 and 2018-2019), thus making four environments (E1, BHU 2017-18; E2, BHU 2018-19; E3, PUSA, 2017-18; E4, PUSA, 2018-19). The panel was genotyped for 12,196 SNPs based on DArT-seq (outsourced to DArT Ltd by CIMMYT); these SNPs included 5,400 SNPs, which could not be assigned to individual chromosomes and were therefore, described as unassigned by the vendor. Phenotypic data was recorded on the following three disease-related traits: (i) Area Under Disease Progress Curve (AUDPC), (ii) Incubation Period (IP), and (iii) Lesion Number (LN). GWAS was conducted using each of five different models, which included two single-locus models (CMLM and SUPER) and three multi-locus models (MLMM, FarmCPU, and BLINK). This exercise gave 306 MTAs, but only 89 MTAs (33 for AUDPC, 30 for IP and 26 for LN) including a solitary MTA detected using all the five models and 88 identified using four of the five models (barring SUPER) were considered to be important. These were used for further analysis, which included identification of candidate genes (CGs) and their annotation. A majority of these MTAs were novel. Only 70 of the 89 MTAs were assigned to individual chromosomes; the remaining 19 MTAs belonged to unassigned SNPs, for which chromosomes were not known. Seven MTAs were selected on the basis of minimum P value, number of models, number of environments and location on chromosomes with respect to QTLs reported earlier. These 7 MTAs, which included five main effect MTAs and two for epistatic interactions, were considered to be important for marker-assisted selection (MAS). The present study thus improved our understanding of the genetics of resistance against spot blotch in wheat and provided seven MTAs, which may be used for MAS after due validation.
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页数:15
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