Network Analysis Prioritizes DEWAX and ICE1 as the Candidate Genes for Major eQTL Hotspots in Seed Germination of Arabidopsis thaliana

Publication date

2020-10

Authors

Hartanto, Margi
Joosen, Ronny V L
Snoek, Basten L.ISNI 0000000419527486
Willems, Leo A J
Sterken, Mark G
de Ridder, Dick
Hilhorst, Henk W M
Ligterink, Wilco
Nijveen, Harm

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Seed germination is characterized by a constant change of gene expression across different time points. These changes are related to specific processes, which eventually determine the onset of seed germination. To get a better understanding on the regulation of gene expression during seed germination, we performed a quantitative trait locus mapping of gene expression (eQTL) at four important seed germination stages (primary dormant, after-ripened, six-hour after imbibition, and radicle protrusion stage) using Arabidopsis thaliana Bay x Sha recombinant inbred lines (RILs). The mapping displayed the distinctness of the eQTL landscape for each stage. We found several eQTL hotspots across stages associated with the regulation of expression of a large number of genes. Interestingly, an eQTL hotspot on chromosome five collocates with hotspots for phenotypic and metabolic QTLs in the same population. Finally, we constructed a gene co-expression network to prioritize the regulatory genes for two major eQTL hotspots. The network analysis prioritizes transcription factors DEWAX and ICE1 as the most likely regulatory genes for the hotspot. Together, we have revealed that the genetic regulation of gene expression is dynamic along the course of seed germination.

Keywords

ARABIDOPSIS, EQTL, NETWORK ANALYSIS, SEED GERMINATION

Citation

Hartanto, M, Joosen, R V L, Snoek, B L, Willems, L A J, Sterken, M G, de Ridder, D, Hilhorst, H W M, Ligterink, W & Nijveen, H 2020, 'Network Analysis Prioritizes DEWAX and ICE1 as the Candidate Genes for Major eQTL Hotspots in Seed Germination of Arabidopsis thaliana', G3: Genes, Genomes, Genetics, vol. 10, no. 10, pp. 4215–4226. https://doi.org/10.1534/g3.120.401477