Welcome to microbe.cards

This platform represents an effort to synchronize phenotypic information for microbes. We have applied and collected various models, primarily Large Language Model (LLM) based, to predict phenotypes and compare these predictions to high-quality phenotypes documented in scientific literature or phenotyping studies. For each microbe, we've generated a "card" page that collects this information and illustrates how the predictions overlap with ground truth. Additionally, we provide model performance estimates for widely used public LLM models based on these high-quality data. Use the search functionality below to explore these microbe cards and compare predictions with documented phenotypes.

Total Species with high-quality annotations

19163

Species with Additional AI-based Predictions

3884

Evaluated Phenotypes

14

Evaluated Models

18

Enter a taxonomy or microbe name to search for detailed information:

Microbe of the Day: Pectobacterium brasiliense

Pectobacterium brasiliense is a fascinating bacterium primarily known for its role as a plant pathogen, particularly affecting various crops such as potatoes and other members of the Solanaceae family. This organism is part of the larger genus Pectobacterium, which is notorious for causing soft rot in plants due to its ability to produce pectinolytic enzymes that degrade pectin in plant cell walls. What makes P. brasiliense particularly interesting is its unique enzymatic profile, which allows it to thrive in diverse environmental conditions and contribute to significant agricultural losses. One of the key characteristics of P. brasiliense is its ability to produce a range of exoenzymes, including pectinases and cellulases, which not only facilitate its pathogenicity but also make it a subject of interest in biotechnological applications. Researchers are exploring these enzymes for their potential use in the food industry, particularly in fruit juice clarification and the processing of plant materials. Additionally, P. brasiliense has been studied for its interactions with plant hosts, providing insights into the mechanisms of plant-pathogen interactions. Understanding these interactions can lead to the development of more effective disease management strategies and the breeding of resistant plant varieties. Furthermore, the genetic diversity within P. brasiliense populations presents an intriguing area for research, as it may reveal how different strains adapt to various environmental pressures and host plants. This adaptability underscores the importance of studying P. brasiliense not only for its impact on agriculture but also for its potential contributions to microbial ecology and evolutionary biology.**

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Annotation types:
Phenotype Status
Motility Literature-based
Gram staining Literature-based
Aerophilicity LLM-based
Extreme environment tole… Literature-based
Biofilm formation LLM-based
Animal pathogenicity Literature-based
Biosafety level Literature-based
Health association LLM-based
Host association Literature-based
Plant pathogenicity Literature-based
Spore formation Literature-based
Hemolysis Missing
Cell shape Literature-based