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Liquidambar formosana Hance
FAMÍLIAAltingiaceae
Nomes Populares:
Liquidâmbar-chinêsIntrodução
Em estudos anteriores, relatamos o isolamento e a determinação da estrutura da liquidambina, que pode ser um precursor do tanino C-glucosídico casuarinina, além do isolamento de vários taninos hidrolisáveis que coexistem nas folhas de Liquidambar formosana HANCE. Também observamos uma mudança sazonal marcante na composição dos taninos, que segue a rota biogenética das galoilglicoses para os taninos C-glucosídicos. Uma investigação mais aprofundada dos taninos dessa planta resultou no isolamento de três novos taninos, que são descritos neste artigo.
Introdução
O Liquidambar formosana é uma espécie pioneira de crescimento relativamente rápido, amplamente utilizada para diversos fins.
Introdução
O Sau sau (Liquidambar formosana Hance.) é uma árvore de grande porte, versátil e de crescimento rápido, encontrada nos distritos de Ngân Sơn, Na Rì, Ba Bể e Pác Nặm, na província de Bắc Kạn (atualmente parte da província de Thái Nguyên).
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SiSTSP — Banco de Plantas Notáveis. Liquidambar formosana.
Disponível em: https://tudosobreplantas.com.br/Liquidambar_formosana/.
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51 referências consultadas para esta espécie.
- BIBLIOGRAFIA 2026Comprehensive characterization of the R2R3-MYB gene family in Liquidambar formosana reveals LifMYB047 as a key regulator of flavonol biosynthesis
- BIBLIOGRAFIA 2026Relationships Between Leaf Coloration Changes, Cellular Structure, Photosynthetic Physiology, and Hydraulic Traits in Liquidambar formosana Hance Under Drought Stress in Autumn
- BIBLIOGRAFIA 2026Structural Characterization and Stability Evaluation of Melanin from <i>Liquidambar formosana</i> Hance Leaves: A Potential Natural Pigment for Food Applications.
- BIBLIOGRAFIA 2026Structural Characterization and Stability Evaluation of Melanin from Liquidambar formosana Hance Leaves: A Potential Natural Pigment for Food Applications
- BIBLIOGRAFIA 2025Arbuscular Mycorrhizal Fungi and Their Relationships with the Soil Nutrients and Heavy Metals in Ancient Trees in Blue-Crowned Laughingthrush Habitats
- BIBLIOGRAFIA 2025Deciphering insights into commercial Myrrh species authenticity from the psbA-trsnH genetic region
- BIBLIOGRAFIA 2025Liquidambar formosana fruit-inspired hierarchical nano-trap framework for efficient uranium extraction from seawater
- BIBLIOGRAFIA 2025Microbial-Mediated Soil Nutrient Enhancement in Moso Bamboo-Liquidambar formosana vs. Phoebe chekiangensis Mixed Plantings
- BIBLIOGRAFIA 2025Monoterpenoids from the Roots of <i>Liquidambar formosana</i> (Formosan Sweet Gum) Exhibit Senomorphic Activity Against Cellular Senescence.
- BIBLIOGRAFIA 2025NGHIÊN CỨU KỸ THUẬT NHÂN GIỐNG HỮU TÍNH CÂY SAU SAU (Liquidambar formosana Hance.)DOI 🔒 PDF
- BIBLIOGRAFIA 2025Shifts in dominant tree species modulate phyllosphere microbial diversity and function in successional forests.DOI 🔒 PDF
- BIBLIOGRAFIA 2025Silicon Addition Alleviates Light Stress on Seedlings: Evidence from Plantation of Liquidambar formosana
- BIBLIOGRAFIA 2024Diterpenoids from the Resin of <i>Liquidambar formosana</i> Hance and Their Anti‐inflammatory Activities
- BIBLIOGRAFIA 2024First Report of Leaf Blight of Liquidambar formosana Caused by Alternaria tenuissima in China
- BIBLIOGRAFIA 2024Response of growth and physiological enzyme activities in Eriogyna pyretorum to various host plants
- BIBLIOGRAFIA 2024Selection and Validation of Reliable Reference Genes for Liquidambar formosana Leaves with Different Leaf Colors
- BIBLIOGRAFIA 2024Using Headspace Gas Chromatography–Mass Spectrometry to Investigate the Volatile Terpenoids Released from the Liquidambar formosana Leaf and Its Essential Oil
- BIBLIOGRAFIA 2023[Community structure of soil fauna under different tree species in subtropical forests]
- BIBLIOGRAFIA 2023Effects of arbuscular mycorrhizae and extraradical mycelium of subtropical tree species on soil nitrogen mineralization and enzyme activities
- BIBLIOGRAFIA 2023Genetic Parameters and Selection Responses for Important Breeding Traits in Liquidambar formosana Based on a Provenance–Family Trial
- BIBLIOGRAFIA 2023Molecular Regulation of Bud Regeneration from Callus of Hybrid Sweetgum (Liquidambar styraciflua × Liquidambar formosana)
- BIBLIOGRAFIA 2023Volatile Profiling and Transcriptome Sequencing Provide Insights into the Biosynthesis of α-Pinene and β-Pinene in Liquidambar formosana Hance Leaves
- BIBLIOGRAFIA 2022Accumulation of Anthocyanidins Determines Leaf Color of Liquidambar Formosana as Revealed by Transcriptome Sequencing and Metabolism Analysis
- BIBLIOGRAFIA 2022Effects of elevated CO2 concentration and nitrogen addition on the chemical compositions, construction cost and payback time of subtropical trees in Cd-contaminated mesocosm soil
- BIBLIOGRAFIA 2022Evaluation of Ecological Service Function of Liquidambar formosana Plantations
- BIBLIOGRAFIA 2022Long-term water use efficiency and non-structural carbohydrates of dominant tree species in response to nitrogen and water additions in a warm temperate forestDOI 🔒 PDF
- BIBLIOGRAFIA 2022Transcriptomic Analyses Reveal Key Genes Involved in Pigment Biosynthesis Related to Leaf Color Change of Liquidambar formosana Hance
- BIBLIOGRAFIA 2021Global Transcriptome and Coexpression Network Analyses Reveal New Insights Into Somatic Embryogenesis in Hybrid Sweetgum (Liquidambar styraciflua × Liquidambar formosana)
- BIBLIOGRAFIA 2020Development and Characterization of Simple Sequence Repeat Markers for, and Genetic Diversity Analysis of Liquidambar formosana
- BIBLIOGRAFIA 2020The Essential Oil Composition and Antimicrobial Activity of Liquidambar formosana Oleoresin
- BIBLIOGRAFIA 2019Allelopathic Effects of Cinnamomum migao on Seed Germination and Seedling Growth of its Associated Species Liquidambar formosana
- BIBLIOGRAFIA 2019Phylogeographical Structure of Liquidambar formosana Hance Revealed by Chloroplast Phylogeography and Species Distribution Models
- BIBLIOGRAFIA 2018Identification, Functional Characterization, and Seasonal Expression Patterns of Five Sesquiterpene Synthases in <i>Liquidambar formosana</i>
- BIBLIOGRAFIA 2017A R2R3-MYB Gene LfMYB113 is Responsible for Autumn Leaf Coloration in Formosan sweet gum (Liquidambar formosana Hance)
- BIBLIOGRAFIA 2017a-Glucosidase inhibition, anti-glycation and antioxidant activities of Liquidambar formosana Hance leaf, and identification of phytochemical profile
- BIBLIOGRAFIA 2017In Vitro Tetraploid Induction from Leaf and Petiole Explants of Hybrid Sweetgum (Liquidambar styraciflua × Liquidambar formosana)
- BIBLIOGRAFIA 2017Photosynthetic capacity of senescent leaves for a subtropical broadleaf deciduous tree species Liquidambar formosana HanceDOI 🔒 PDF
- BIBLIOGRAFIA 2016Facile and fast removal of oil through porous carbon spheres derived from the fruit of Liquidambar formosana
- BIBLIOGRAFIA 2016Moderate Genetic Diversity and Genetic Differentiation in the Relict Tree Liquidambar formosana Hance Revealed by Genic Simple Sequence Repeat MarkersDOI 🔒 PDF
- BIBLIOGRAFIA 2015CHEMICAL INDUCTION OF TRAUMATIC GUM DUCTS IN CHINESE SWEETGUM, LIQUIDAMBAR FORMOSANA
- BIBLIOGRAFIA 2014Liquidambar formosana: Formosa Sweetgum
- BIBLIOGRAFIA 2013Photosynthetic and antioxidant responses of Liquidambar formosana and Schima superba seedlings to sulfuric-rich and nitric-rich simulated acid rain
- BIBLIOGRAFIA 2013Three new compounds from the leaves of<i>Liquidambar formosana</i>
- BIBLIOGRAFIA 2013Three new diterpenoids from the resin of<i>Liquidambar formosana</i>
- BIBLIOGRAFIA 2012Composition and antifungal activity of balsam from <i>Liquidambar formosana</i> Hance
- BIBLIOGRAFIA 2011Pentacyclic triterpenes from the resin of Liquidambar formosana
- BIBLIOGRAFIA 2009Antioxidant activities of Liquidambar formosana Hance leaf extracts
- BIBLIOGRAFIA 2007Adventitious Shoot Regeneration from In Vitro Leaves of Formosan Sweetgum (Liquidambar formosana L.)
- BIBLIOGRAFIA 1988Tannins of hamamelidaceous plants. III. Isorugosins A, B and D, new ellagitannins from Liquidambar formosana.DOI 🔒 PDF
- BIBLIOGRAFIA 1987Liquidambin, an ellagitannin from Liquidambar formosana
- BIBLIOGRAFIA 1986Seasonal changes in the tannins of Liquidambar formosana reflecting their biogenesis