Synopsis of Social media discussions
The overall tone shows enthusiasm for the research’s detailed analysis of endophytes and metabolites, with discussions referencing the methods used and the potential implications for plant health. Words like 'valuable', 'insightful', and 'significant' highlight the perceived importance, while mentions of specific microbial groups and metabolic pathways demonstrate deep engagement.
Agreement
Moderate agreementMost discussions agree that the study offers valuable insights into plant-microbe-metabolite interactions, recognizing its significance.
Interest
High level of interestPosts indicate high interest, often citing specific details like the relationships between endophytes and metabolites and their implications.
Engagement
Moderate level of engagementMany comments reflect active engagement with the methods and findings, such as references to metagenomics and correlation analysis.
Impact
Moderate level of impactThere is a consensus that the research could influence future studies in plant biology and metabolomics, suggesting notable scientific impact.
Social Mentions
YouTube
1 Videos
2 Posts
Metrics
Video Views
21
Extended Reach
1,036
Social Features
3
Timeline: Posts about article
Top Social Media Posts
Posts referencing the article
Endophyte and Metabolite Diversity in American Ginseng Tissues Analysis
This study examines how different tissues of Panax quinquefolius host various endophyte communities and metabolites, using metagenomics and metabolomics techniques to understand their relationship.
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Diversity and correlation analysis of endophytes and metabolites of Panax quinquefolius L. in various tissues https://t.co/iOleI91r13
view full postMay 25, 2023
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Root Papers
@RootPapers (Twitter)Pubmed Diversity and correlation analysis of endophytes and metabolites of Panax quinquefolius L. in various tissues https://t.co/7wnBPuLBko
view full postMay 25, 2023
Abstract Synopsis
- The study examined how different tissues of American ginseng (Panax quinquefolius L) host various endophyte communities and metabolites, using metagenomics and metabolomics techniques to understand their relationship.
- Results showed that root and fibril tissues had similar endophyte compositions dominated by Cyanobacteria, while stems and leaves showed distinct fungal populations (Ascomycota and Basidiomycota), and identified a total of 398 metabolites with key pathways like phenylpropane and flavonoid biosynthesis.
- Correlation analysis revealed positive and negative relationships between specific endophytes (like Conexibacter and Cyberlindnera) and certain metabolites (such as saponins), suggesting that endophyte diversity influences the plant's active compound production.]
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