A hemp gene discovery could help breeders extend growing seasons

Identification of a major QTL and candidate gene for flowering time in industrial hemp via BSA-seq and fine mapping.

Scientific reports • • Highly Relevant
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AI Summary

Industrial hemp is sensitive to day length, which makes flowering time an important trait for adapting varieties to different growing environments. Researchers crossed a day-neutral Cannabis sativa accession, Bubble Kush, with a short-day accession, Aquawoman, and used bulk segregant analysis sequencing to search for genomic regions linked to early or late flowering. They identified a major quantitative trait locus called qHFX on chromosome X, first within a 2.2 Mb region and then narrowed it to 637 kb using additional genetic markers in 300 F2 plants.

Gene-expression and sequence analyses highlighted five candidates in the narrowed region. One gene, LOC115716363, contained a 1-bp insertion/deletion and resembled the Arabidopsis flowering-related genes AHL20/22. When this gene was overexpressed in rice, flowering was significantly delayed, providing further support that it helps regulate flowering time. The work does not test effects on cannabis users or cannabinoid content, but it provides genetic tools that could help breeders develop hemp varieties better suited to different climates and production schedules.

💡 Key Findings

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Researchers identified a major flowering-time region, qHFX, on hemp chromosome X and narrowed it from 2.2 Mb to 637 kb.
High
85%
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A 1-bp insertion/deletion in LOC115716363, a gene related to flowering regulators in Arabidopsis, emerged as a strong candidate for controlling flowering time.
High
80%
3
Overexpressing LOC115716363 in rice significantly delayed flowering, supporting a role for the gene in flowering-time regulation.
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75%
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The genomic markers and candidate gene could support breeding of broadly adapted, high-yield industrial hemp varieties.
High
80%

📄 Original Abstract

Industrial hemp (Cannabis sativa L.) is a photoperiod-sensitive short-day crop, yet the quantitative trait loci (QTLs) governing flowering time remain poorly characterized, limiting molecular breeding efforts. To identify genomic regions controlling photoperiodic flowering, we performed bulked segregant analysis sequencing (BSA-seq) coupled with fine linkage mapping using an F2 population derived from a cross between day-neutral (Bubble Kush) and short-day (Aquawoman) accessions. Based on extreme flowering phenotypes, we pooled DNA from 50 early- and 50 late-flowering individuals. A major QTL, qHFX, was mapped to a 2.2 Mb region on chromosome X via ΔSNP-index and Euclidean distance algorithms. Using 15 Kompetitive allele-specific PCR (KASP) markers developed from parental polymorphisms, we refined qHFX to a 637-kb interval in 300 F2 individuals. RNA-seq analysis of Aquawoman under short-day and long-day conditions identified five differentially expressed genes within this interval, with expression profiles validated by quantitative real-time PCR. Sequence analysis revealed a 1-bp indel in LOC115716363, which is homologous to Arabidopsis AHL20/22 and emerged as a strong candidate gene. Notably, heterologous overexpression of LOC115716363 in rice significantly delayed flowering, further supporting its role in flowering time regulation. Collectively, these findings elucidate the molecular basis of flowering time in industrial hemp and provide valuable genomic resources for breeding broadly adapted, high-yield varieties.

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