ArticleBMC plant biology2020
Transcriptome analysis reveals underlying immune response mechanism of fungal (Penicillium oxalicum) disease in Gastrodia elata Bl. f. glauca S. chow (Orchidaceae).
Article in BMC plant biology, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 14 papers.
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14 citing papers in PubMed, 25 citations in OpenAlex.
- Gene expression profiling and characterization of black rot resistance in Dendrobium Sonia 'Earsakul': a comparison of the non-mutagenized control and the resistant mutagenized line.BMC plant biology · 2026Article
- GeARF5/GeIAA33-GeSWEET14 module balances the secondary metabolic biosynthesis to increase the yield and quality in Gastrodia elata.Journal of integrative plant biology · 2026Article
- Cross-niche metabolite-microbiome interactions orchestrate systemic soybean resistance to Fusarium root rot.The ISME journal · 2026Article
- Transcriptome analysis reveals key pathways and regulatory networks involved in soybean's early resistance to Peronospora manshurica.BMC plant biology · 2025Article
- Advances in WRKY regulation of immune responses in medicinal plants.Frontiers in plant science · 2025Review
- Discovery of seed germinating fungi (Mycetinis scorodonius) from Gastrodia elata Bl. f. glauca S. chow in Changbai Mountain and examination of their germination ability.Scientific reports · 2024Article
- Cytological and transcriptomic analysis to unveil the mechanism of web blotch resistance in Peanut.BMC plant biology · 2023Article
- An exploration of mechanism of high quality and yield of Gastrodia elata Bl. f. glauca by the isolation, identification and evaluation of Armillaria.BMC plant biology · 2022Article
- Transcriptome Analysis Reveals a Comprehensive Virus Resistance Response Mechanism in Pecan Infected by a Novel Badnavirus Pecan Virus.International journal of molecular sciences · 2022Article
- Comparative transcriptome analysis of resistant and susceptible Kentucky bluegrass varieties in response to powdery mildew infection.BMC plant biology · 2022Article
- Chromosome-level genome assembly of the fully mycoheterotrophic orchid Gastrodia elata.G3 (Bethesda, Md.) · 2022Article
- Mechanism of cotton resistance to abiotic stress, and recent research advances in the osmoregulation related genes.Frontiers in plant science · 2022Review
- Pathophysiology and transcriptomic analysis ofFrontiers in plant science · 2022Article
- Genome-Wide Analysis of Ribosomal Protein GhRPS6 and Its Role in Cotton Verticillium Wilt Resistance.International journal of molecular sciences · 2021Article
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundGastrodia elata Bl. f. glauca S. Chow is a medicinal plant. G. elata f. glauca is unavoidably infected by pathogens in their growth process. In previous work, we have successfully isolated and identified Penicillium oxalicum from fungal diseased tubers of G. elata f. glauca. As a widespread epidemic, this fungal disease seriously affected the yield and quality of G. elata f. glauca. We speculate that the healthy G. elata F. glauca might carry resistance genes, which can resist against fungal disease. In this study, healthy and fungal diseased mature tubers of G. elata f. glauca from Changbai Mountain area were used as experimental materials to help us find potential resistance genes against the fungal disease.
resultsA total of 7540 differentially expressed Unigenes (DEGs) were identified (FDR < 0.01, log2FC > 2). The current study screened 10 potential resistance genes. They were attached to transcription factors (TFs) in plant hormone signal transduction pathway and plant pathogen interaction pathway, including WRKY22, GH3, TIFY/JAZ, ERF1, WRKY33, TGA. In addition, four of these genes were closely related to jasmonic acid signaling pathway.
conclusionsThe immune response mechanism of fungal disease in G. elata f. glauca is a complex biological process, involving plant hormones such as ethylene, jasmonic acid, salicylic acid and disease-resistant transcription factors such as WRKY, TGA.
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