Abstract
Abstract
Cassava (Manihot esculenta Crantz) is a major staple crop across tropical and subtropical regions. Despite advances in genomic selection, delayed, non-flowering, and asynchronous flowering remain key bottlenecks in breeding programs. To better understand the molecular basis of flowering-time variation, we performed RNA sequencing across three genotypes with contrasting flowering phenotypes (early, late, and non-flowering) sampled at three developmental stages under contrasting light regimes in field conditions (natural light and three-hour night-break with white light). Comparative transcriptomic analysis revealed distinct gene expression patterns associated with flowering responses. Genotype comparisons with no light supplementation revealed stage-specific enrichment of biological processes. Light supplementation was associated with changes in the expression of key components of photoperiodic and circadian regulation, as well as pathways involved in flowering-time integration and hormone and sugar-related signaling. These findings suggest that coordinated changes across multiple biological pathways regulate flowering behavior in cassava. The candidate genes and expression patterns reported provide a foundation for functional studies and advance our understanding of molecular mechanisms governing flowering-time regulation in cassava.
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@article{Landi2026Comparative,
title = {Comparative transcriptomic analysis of cassava genotypes under extended photoperiodism across flowering stages},
author = {Michael Landi and Ivan Obare and Trushar Shah and Harriet Okech and Angelyne A. Abuor and Christine K. Mutoni and Morag Ferguson and Andreas Gisel and Leena Tripathi and Samwel Muiruri},
journal = {bioRxiv (Cold Spring Harbor Laboratory)},
year = {2026},
doi = {10.64898/2026.08.06.743231},
url = {https://doi.org/10.64898/2026.08.06.743231}
}
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