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Overexpression of the gene in tobacco enhances terpenoid compounds synthesis. | LitMetric

Overexpression of the gene in tobacco enhances terpenoid compounds synthesis.

Front Plant Sci

Key Laboratory of Forest Genetics & Biotechnology of Ministry of Education, Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing, China.

Published: September 2024

AI Article Synopsis

  • The text discusses two species from the genus , highlighting the widespread distribution of one species in Eastern North America and the endangerment of the other due to low regeneration rates.
  • A key focus is the role of terpenoids, which are important for plant growth and pollinator attraction, although the molecular mechanisms behind these roles are not fully understood.
  • The study identifies a specific gene related to terpenoid biosynthesis, demonstrating its function in chloroplast processes and how its introduction into tobacco increases levels of various terpenoid compounds, offering insights for future research on species differences.

Article Abstract

, a relic genus from the Magnoliaceae family, comprises two species, and . is distinguished by its extensive natural distribution in Eastern North America. Conversely, is nearing endangerment due to its low regeneration rate. A pivotal aspect in the difference of these species involves terpenoids, which play crucial roles in plant growth and attracting pollinators. However, the complex molecular mechanisms underlying terpenoid roles in are not well understood. Terpene Synthases (TPS) genes are widely reported to play a role in terpenoid biosynthesis, hence, this study centers on genes in spp. Employing multiple bioinformatics methods, a differential expression gene in , , was discerned for further functional analysis. Subcellular localization results reveal the involvement of in chloroplast-associated processes, hence participate in terpenoid biosynthesis within chloroplasts. Heterologous transformation of the gene into tobacco significantly elevates the levels of common terpenoid compounds, including chlorophyll, gibberellin, and carotenoids. Collectively, these findings not only underscore the role of the gene in the biosynthesis of terpenoids but also lay a foundation for future research on interspecific differences in .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11442295PMC
http://dx.doi.org/10.3389/fpls.2024.1445103DOI Listing

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