Lotus Seeds: Current Molecular Biology Insights and Future Perspectives as a Prominent Biological Resource

Семена лотоса: современные представления о молекулярной биологии и перспективы исследований значимого биологического ресурса
Mei Yang, Jing Liu, Jia Ying Xin, Ruirui Li, X. H. Deng, Dong Yang, Heyun Song, Minghua Zhang, Hui Yang, Runjie He, Yapei Zhang, Heng Sun
2026-01-02

flavonoid biosynthesislotus genome annotationlotus seedsseed longevitystarch biosynthesis
Gaertn.) is an economically and medicinally significant aquatic plant, with its seeds (lotus seeds) having attracted considerable attention due to their unique developmental traits and abundance of bioactive and nutritional components. Over recent decades, advancements in lotus genome annotation and assembly have facilitated comprehensive investigations into the molecular biology of lotus seeds. Key genes involved in the biosynthesis of nutrients and bioactive compounds within lotus seeds have now been identified and functionally validated. This review comprehensively summarizes the latest advancements in the molecular biology of the edible and medicinal properties of lotus seeds, focusing on the biosynthetic mechanisms of key nutrients, such as starch, flavonoids, and alkaloids, as well as the molecular mechanisms underlying lotus seed developmental processes. Additionally, we present a detailed overview of the mechanisms involved in the postharvest preservation of fresh lotus seeds and their exceptional longevity. Based on the current progress in lotus seed molecular biology, we propose future research directions and methodologies. This review not only deepens the understanding of the molecular biology of lotus seeds but also provides valuable theoretical insights and practical guidance for promoting the genetic improvement and sustainable development of the lotus seed industry.
1
Advances in lotus genome assembly and annotation have enabled comprehensive molecular investigations of lotus seed biology.
2
Current research has clarified biosynthetic mechanisms for major lotus seed constituents, including starch, flavonoids, and alkaloids.
3
Key genes controlling the biosynthesis of seed nutrients and bioactive compounds have been identified and functionally validated.
4
Molecular mechanisms underlying lotus seed development, postharvest preservation, and exceptional longevity have been systematically reviewed.
5
The synthesized knowledge provides theoretical and practical guidance for lotus genetic improvement and sustainable industry development.

lotus seeds of the aquatic plant Nelumbo nucifera

the molecular mechanisms of lotus seed development, biosynthesis of nutritional and bioactive compounds, postharvest preservation, and longevity

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2026-01-02
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Mei Yang
Jing Liu
Jia Ying Xin
Ruirui Li
X. H. Deng
Dong Yang
Heyun Song
Minghua Zhang
Hui Yang
Runjie He
Yapei Zhang
Heng Sun
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