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Animal degradation of microbial storage polyhydroxyalkanoates
Caroline Zeidler1, Harald R Gruber-Vodicka1,2, Dolma Michellod1
1Max Planck Institute for Marine Microbiology, Bremen, Germany.
Animals and protists possess enzymes called polyhydroxyalkanoate depolymerases (PHADs) capable of degrading microbial storage biopolymers (sPHAs). This discovery reveals a new pathway for accessing microbial carbon reserves across diverse ecosystems.
Area of Science:
- Biochemistry
- Microbiology
- Evolutionary Biology
Background:
- Microorganisms produce polyhydroxyalkanoates (sPHAs) as carbon and energy reserves.
- Polyhydroxyalkanoate depolymerases (PHADs) are enzymes typically found in bacteria and fungi for sPHA degradation.
Purpose of the Study:
- To investigate the presence and function of PHADs in animals and protists.
- To understand the evolutionary origin and ecological significance of PHADs in non-microbial organisms.
Main Methods:
- Discovery and characterization of a PHAD in the marine worm Olavius algarvensis.
- Enzyme assays and mass spectrometry to confirm sPHA degradation.
- Phylogenetic analysis and functional assays across diverse animal and protist species.
Main Results:
- A functional PHAD was identified in Olavius algarvensis, degrading sPHAs into usable monomers.
- PHADs were found in over 66 animal species and 19 protist species, indicating ancient origins.
- PHADs from various lineages effectively degrade sPHAs, demonstrating conserved function.
Conclusions:
- Animals and protists possess a previously unrecognized enzymatic pathway for degrading microbial sPHAs.
- The widespread distribution of PHADs suggests their presence in the last common ancestor of metazoans.
- This finding broadens our understanding of carbon cycling and nutrient acquisition in ecosystems.
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