A comprehensive overview of molecular biology advancements in lily over the past decade

Комплексный обзор достижений молекулярной биологии лилии за последнее десятилетие
Yutong Chen, Yongyao Fu, Ze Wu, Hengbin He, Xinyue Fan, Junpeng Yu, Ziwei Liao, Yinyi Zhang, Qianqian Fang, Yajie Zhao, Hongmei Sun, Wenguang Fan, Genlou Sun, Jian Wu, Nianjun Teng
2026-01-01

biotic and abiotic stress resistancebulb dormancyflower color and fragrancegenetic transformationlily molecular biology
Lily (Lilium spp.) is a globally significant ornamental crop, highly valued in both domestic and international markets. In recent years, the lily industry has undergone rapid expansion; however, it continues to face numerous challenges. Prominent limitations in lily production include prolonged bulb dormancy, severe pollen contamination, limited diversity of flower coloration, inadequate or excessively strong fragrance, and insufficient resistance to both biotic and abiotic stresses. To address these limitations, considerable efforts over the past decade have been directed toward molecular biology research, particularly the identification of key functional genes and the application of molecular breeding approaches to accelerate the development of improved germplasm. This review synthesizes the key findings from recent research in lily molecular biology, highlighting mechanisms associated with bulb dormancy, anther development, flower color and fragrance formation, as well as responses to biotic and abiotic stresses. Additionally, the review discusses advancements in genetic transformation technologies. The insights presented here aim to guide future breeding programs and enhance our understanding of the molecular basis of key traits in lilies. Furthermore, we identify current gaps in knowledge and propose future research directions to address existing limitations and further advance the field.
1
Genetic transformation technologies for lily have advanced, expanding opportunities for functional gene validation and molecular breeding.
2
Knowledge gaps remain, and targeted future research is needed to clarify trait mechanisms and overcome persistent limitations in lily improvement.
3
Lily production is constrained by prolonged bulb dormancy, pollen contamination, limited flower-color diversity, fragrance imbalance, and weak biotic and abiotic stress resistance.
4
Molecular breeding approaches have been increasingly applied to accelerate the development of improved lily germplasm addressing major production limitations.
5
Over the past decade, molecular studies have identified functional genes and mechanisms underlying bulb dormancy, anther development, flower coloration, fragrance formation, and stress responses.

lily (Lilium spp.)

molecular mechanisms and functional genes underlying bulb dormancy, anther development, flower color and fragrance formation, biotic and abiotic stress responses, and genetic transformation in lily

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2026-01-01
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Yutong Chen
Yongyao Fu
Ze Wu
Hengbin He
Xinyue Fan
Junpeng Yu
Ziwei Liao
Yinyi Zhang
Qianqian Fang
Yajie Zhao
Hongmei Sun
Wenguang Fan
Genlou Sun
Jian Wu
Nianjun Teng
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