Identification and validation of seed dormancy loci and candidate genes and construction of regulatory networks by WGCNA in maize introgression lines

被引:7
作者
Ma, Xiaolin [1 ]
Feng, Liqing [1 ]
Tao, Anyan [1 ]
Zenda, Tinashe [1 ]
He, Yuan [1 ]
Zhang, Daxiao [1 ]
Duan, Huijun [1 ]
Tao, Yongsheng [1 ]
机构
[1] Hebei Agr Univ, Coll Agron, State Key Lab North China Crop Improvement & Regul, North China Key Lab Crop Germplasm Resources Educ, Baoding 071001, Peoples R China
关键词
HISTONE H2B MONOUBIQUITINATION; ABIOTIC STRESS RESPONSES; PLANT-GROWTH; ARABIDOPSIS; PROTEIN; BIOSYNTHESIS; GERMINATION; EXPRESSION; GIBBERELLIN; HOMEOSTASIS;
D O I
10.1007/s00122-023-04495-8
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Seed dormancy (SD) and pre-harvest sprouting (PHS) affect yield, as well as grain and hybrid quality in seed production. Therefore, identification of genetic and regulatory pathways underlying PHS and SD is key to gene function analysis, allelic variation mining and genetic improvement. In this study, 78,360 SNPs by SLAF-seq of 230 maize chromosome segment introgression lines (ILs), PHS under five environments were used to conduct GWAS (genome wide association study) (a threshold of 1/n), and seventeen unreported PHS QTLs were obtained, including eleven QTLs with PVE > 10% and three QTLs under multiple environments. Two QTL loci were co-located between the other two genetic mapping methods. Using differential gene expression analyses at two stages of grain development, gene functional analysis of Arabidopsis mutants, and gene functional analysis in the QTL region, seventeen PHS QTL-linked candidate genes were identified, and their five molecular regulatory networks constructed. Based on the Arabidopsis T-DNA mutations, three candidate genes were shown to regulate for SD and PHS. Meanwhile, using RNA-seq of grain development, the weighted correlation network analysis (WGCNA) was performed, deducing five regulatory pathways and target genes that regulate PHS and SD. Based on the conjoint analysis of GWAS and WGCNA, four pathways, nine target proteins and target genes were revealed, most of which regulate cell wall metabolism, cell proliferation and seed dehydration tolerance. This has important theoretical and practical significance for elucidating the genetic basis of maize PHS and SD, as well as mining of genetic resources and genetic improvement of traits.
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页数:25
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