Microbial Discovery & Screening

A systematic platform for identifying microorganisms associated with controlled agarwood resin formation

The Microbial Discovery & Screening program should be the R&D foundation of MycoResin™. Its purpose is to identify, characterize, and validate microbial candidates that can act as biological elicitors of Aquilaria defense responses and resin biosynthesis, while separating promising candidates from pathogenic or inconsistent organisms.

1. Discovery Pipeline

Aquilaria Sampling
↓
Microbial Isolation
↓
Purification & Identification
↓
Biosafety / Pathogenicity Screening
↓
In-vitro Elicitation Screening
↓
Aquilaria Tissue/Seedling Screening
↓
Small Tree Validation
↓
Resin Chemistry & Aroma Analysis
↓
Field Validation
↓
Elite Microbial Candidate
↓
MycoResin™ Formulation


2. Microbial Discovery Sources

Candidate microorganisms can be investigated from different Aquilaria-associated environments:

SourceResearch value
Healthy Aquilaria tissuesPotential endophytes
Naturally resinous tissuesMicrobes associated with existing resin formation
Rhizosphere soilPlant-growth-associated microorganisms
Bark/wood interfacesPotential wood-associated microbes
Naturally wounded treesMicrobes associated with wound responses
Plantation environmentsLocally adapted microbial populations
Existing microbial culture collectionsReference organisms and comparative controls

A key principle is to compare microbial communities from resinous versus non-resinous tissues, rather than assuming that every microorganism isolated from an agarwood tree is a useful induction organism.


3. Candidate Classification

MycoResin™ can classify isolates into four functional groups:

Class A — Resin-Induction Candidates

Microorganisms associated with measurable enhancement of resin-related responses.

Class B — Biological Elicitors

Organisms or microbial-derived compounds that stimulate plant defense/secondary metabolism without necessarily establishing persistent colonization.

Class C — Growth-Support Microbes

Potentially useful organisms that improve tree vigor, root development, or stress tolerance but do not directly induce resin.

Class D — Exclude

Potential plant pathogens, unstable organisms, contaminants, or candidates producing unacceptable effects.


4. Screening Criteria

Each candidate can receive a standardized research profile:

ParameterMeasurement
IdentityMorphological + molecular identification
PurityCulture purity / contamination assessment
Growth characteristicsGrowth rate and culture stability
Aquilaria compatibilityPlant response
PathogenicityDisease/wilt/necrosis assessment
Elicitation activityDefense-response indicators
Resin responseResin formation/accumulation
Chemical profileChromatographic analysis
Aroma profileVolatile analysis
ReproducibilityBatch-to-batch biological consistency
StabilityFormulation/storage stability
Field performanceControlled field validation
Regulatory suitabilityBiosafety and applicable Philippine requirements

5. Three-Level Screening System

Level I — Laboratory Screening

Rapidly eliminate unsuitable candidates.

Objective:
Determine whether an isolate produces a measurable biological response associated with Aquilaria defense or secondary metabolism.

Outputs:

  • Candidate ID
  • Taxonomic identification
  • Growth characteristics
  • Preliminary biological activity
  • Safety/exclusion status

Level II — Controlled Plant Screening

Selected candidates are evaluated on young Aquilaria plants under controlled conditions.

Rather than measuring only visible discoloration, the research should examine multiple endpoints:

Plant response
→ wound response
→ defense markers
→ physiological response
→ tissue changes

Biochemical response
→ phenolic compounds
→ terpenoid-related metabolites
→ resin-associated compounds

Chemical response
→ chromatographic fingerprint
→ volatile profile
→ sesquiterpene profile


Level III — Mature-Tree Validation

Only candidates demonstrating acceptable laboratory and controlled-plant performance progress to mature-tree trials.

Evaluation can include:

  • untreated control
  • physical-wounding control
  • biological-treatment groups
  • replicated trees
  • multiple sampling periods
  • resin quantity
  • resin distribution
  • chemical composition
  • aroma profile
  • tree health
  • treatment consistency

This prevents a candidate from being selected merely because it produces visible wood discoloration.


6. MycoResin™ Candidate Scoring System

A research-development scorecard can help prioritize candidates without treating the score as proof of efficacy.

CriterionSuggested weighting
Resin response25%
Chemical-profile improvement20%
Reproducibility15%
Aquilaria compatibility15%
Biosafety profile15%
Formulation potential10%
Total100%

Candidates failing predefined biosafety or pathogenicity gates should be excluded regardless of their resin-response score.


7. Important R&D Distinction

For MycoResin™, it is useful to distinguish:

Live microorganism technology

from

microbial-derived elicitor technology

and

microbial metabolite technology.

The latter two approaches may eventually provide a more controllable platform because the desired biological signal could potentially be separated from the living organism itself.

This creates three potential MycoResin™ product-development pathways:

MycoLive™

Selected live microbial candidates.

MycoElicit™

Standardized microbial-derived biological elicitors.

MycoSignal™

Characterized microbial metabolites/signaling components associated with resin induction.


8. MycoResin™ Discovery Database

Every isolate should receive a unique research identifier, for example:

MR-AQ-001

with records for:

  • source tree
  • tissue/environment
  • collection date
  • isolate characteristics
  • identification
  • preservation history
  • biosafety assessment
  • screening results
  • chemical-response data
  • plant-response data
  • field-trial results
  • formulation status

This database becomes the proprietary microbial library supporting the MycoResin™ platform.

Overall R&D objective

Discover → Screen → Validate → Standardize → Formulate → Commercialize

The most important scientific endpoint should ultimately be reproducible improvement in the quantity and quality of chemically characterized agarwood resin, not simply fungal colonization or wood darkening.