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100 results for “Gastrodia”
Figure 1 from: Aung YL, Jin X-H (2018) Gastrodia kachinensis (Orchidaceae), a new species from Myanmar. In: Jin X-H, Shui Y-M, Tan Y-H, Kang M (Eds) Plant diversity in Southeast Asia. PhytoKeys 94: 23-29. https://doi.org/10.3897/phytokeys.94.21348
Figure 1 Gastrodia kachinensis X.H.Jin & L.A.Ye. A Rhizome B Inflorescence C Longitudinal section of sepal tube, showing two petals D Front view of column and lip, showing the stigma area with sectile pollinia E Lateral view of column and hypochile, showing a pair of sub-globose calli at lip hypochile F Lip epichile, showing a pair of twin protuberance-like lamellae at its apex. Illustration by Yunxi Zhu.
FIGURE 1 in Gastrodia kuroshimensis (Orchidaceae: Epidendroideae: Gastrodieae), a new mycoheterotrophic and complete cleistogamous plant from Japan
FIGURE 1. Flowering plants of Gastrodia kuroshimensis (from the type locality; Bar = 5 cm).
FIGURE 2 in Epitypification of Gastrodia pubilabiata (Gastrodieae, Epidendroideae, Orchidaceae)
FIGURE 2. Epitype of Gastrodia pubilabiata (Y. Sawa 3092; MBK) designated in the present study.
FIGURE 4 in Gastrodia pushparaga (Orchidaceae, Epidendroideae, Gastrodieae), a new species from Sri Lanka
FIGURE 4. Map of Sri Lanka indicating the locations of Gastrodia pushparaga in the wet zone.
Fig. 2. Key 1H–1H in Fungal polyketides from a rhizospheric soil-derived Penicillium sp. YUD17004 associated with Gastrodia elata
Fig. 2. Key 1H–1H COSY, HMBC and NOESY correlations of 1–5.
Fig. 1 in Fungal polyketides from a rhizospheric soil-derived Penicillium sp. YUD17004 associated with Gastrodia elata
Fig. 1. Chemical structures of compounds 1–6.
Fig. 3 in Fungal polyketides from a rhizospheric soil-derived Penicillium sp. YUD17004 associated with Gastrodia elata
Fig. 3. Experimental and calculated ECD spectra in MeOH of 1–3 (A–C) and 5 (D).
Fig. 5 in Phialocetones A-J, C lactones from the rhizospheric soil-derived fungus Phialocephala sp. YUD18001 associated with Gastrodia elata
Fig. 5. Reactions of compound 5 with Mosher esters.
Fig. 3 in Phialocetones A-J, C lactones from the rhizospheric soil-derived fungus Phialocephala sp. YUD18001 associated with Gastrodia elata
Fig. 3. Conformations and key NOESY correlations of 1–3 and 5–10.
Fig. 1 in Phialocetones A-J, C lactones from the rhizospheric soil-derived fungus Phialocephala sp. YUD18001 associated with Gastrodia elata
Fig. 1. Structures of compounds of 1–10.
Fig. 4 in Phialocetones A-J, C lactones from the rhizospheric soil-derived fungus Phialocephala sp. YUD18001 associated with Gastrodia elata
Fig. 4. Experimental and calculated ECD spectra of compounds 1–10 (A–J).
Transcriptomic and metabolomic Profiling reveal the protective effect of Acanthopanax senticosus (Rupr. & Maxim.) Harms combined with Gastrodia elata Blume on cerebral ischemia-reperfusion injury
GEO Series GSE160500. Rattus norvegicus. 9 samples. Type: Expression profiling by high throughput sequencing.
Figure 2 from: Aung YL, Jin X-H (2018) Gastrodia kachinensis (Orchidaceae), a new species from Myanmar. In: Jin X-H, Shui Y-M, Tan Y-H, Kang M (Eds) Plant diversity in Southeast Asia. PhytoKeys 94: 23-29. https://doi.org/10.3897/phytokeys.94.21348
Figure 2 Habit of Gastrodia kachinensis. Photographed by X.H. Jin.
Gastrodia and Uncaria Recipe in Treating Stage-one Hypertension: an Evidence-based Optimization Study
ClinicalTrials.gov study NCT04035824. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Comparative transcriptome analysis of Gastrodia elata (Orchidaceae) in response to fungus symbiosis to identify gastrodin biosynthesis-related genes
GEO Series GSE73633. Gastrodia elata; Armillaria mellea. 3 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 2. Gastrodia sabahensis. A–C in First record of Gastrodia (Orchidaceae, Epidendroideae) from Brunei Darussalam
FIGURE 2. Gastrodia sabahensis. A–C different phenological phases (A–flower bud, B–freshly opened flower, C–flowers at the end of anthesis), D–open flower with visible column, lip and cushion-like verrucose tissue on lateral sepals, E–open flowers with drosophilid flies on cushion-like verrucose tissue (white triangle). Photographs A, C–E by M. Sochor, B by M. Hroneš; all from uncollected specimens.
FIGURE 2. Gastrodia foetida and G in Resurrection and emended description of Gastrodia foetida (Orchidaceae)
FIGURE 2. Gastrodia foetida and G. nipponica in the vicinity of each type locality. (A, C) Habit of G. foetida and G. nipponica, respectively. (B, D) Close-up of flower of G. foetida and G. nipponica, respectively. Arrows indicate conspicuous petals of G. nipponica. Scale bars: 10 mm.
FIGURE 3 in First record of Gastrodia (Orchidaceae, Epidendroideae) from Brunei Darussalam
FIGURE 3. Distribution of Gastrodia sabahensis in Borneo.
FIGURE 1 in Resurrection and emended description of Gastrodia foetida (Orchidaceae)
FIGURE 1. Holotype of Gastrodia foetida (A) and G. nipponica (B). Scale bars: 50 mm.
Fig. 2. Key 1H–1H in Phialocetones A-J, C lactones from the rhizospheric soil-derived fungus Phialocephala sp. YUD18001 associated with Gastrodia elata
Fig. 2. Key 1H–1H COSY and HMBC correlations of 1–10.
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