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A high-quality spinach reference genome and co-expression analysis reveal circadian and floral initiation gene
Kaoru Yamano1, Sota Yunoki1, Kazuki Higuchi2
1Graduate School of Agriculture, Hokkaido University, N-9, W-9, Sapporo 060-8589, Japan.
Abstract:
Bolting time is critical for yield stability in spinach, a long-day Amaranthaceae crop whose photoperiod-dependent flowering pathway remains incompletely understood. We generated a chromosome-scale reference genome for an early-bolting spinach line (944.6 Mb; 97.9% BUSCO completeness) and used it to integrate QTL mapping, sequence variation, and transcriptome-based co-expression analysis. Remapping bolting-time QTLs on this improved reference retained qBt2.1, qBt3.1, and qBt3.2, while refining their physical intervals and candidate gene content. Candidate loci included SoCOL14/SoFL1 at qBt2.1, SoFT3 at qBt3.1, and SoLNK1/SoAGL21 at qBt3.2. Co-expression analysis identified ten modules, including a circadian-associated module M9 containing SoLNK1/2, SoGI, SoCOL5, SoPRR7, and SoBBX19, and a floral-initiation module M10 enriched for shoot-apex regulators. A predicted loss-of-function allele of SoLNK1 in the late-bolting line further supports its prioritization as a candidate regulator. Phylogenetic and network evidence suggest Amaranthaceae-specific remodelling of PRR-BBX-associated photoperiodic regulation in spinach. Together, this genome resource and integrative framework provide a basis for prioritizing bolting-associated genes and dissecting circadian-floral regulatory gene networks in spinach.
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