Trade, Borrow, or Steal: How Acquired Metabolism Drives Evolutionary Innovation @SFIScience
Trade, Borrow, or Steal: How Acquired Metabolism Drives Evolutionary Innovation  @SFIScience
Uploaded May 2026 | Updated September 2026, 2 weeks ago
Holly Moeller, University of California, Santa Barbara


While biologists typically think of an organism's metabolism as hard-wired in its DNA, in reality a vast array of species gain access to additional forms of metabolism from other species. This acquired metabolism can be obtained through interactions ranging from mutualism to predation, creating opportunities for niche expansion and, ultimately, evolutionary diversification. I'll focus on two examples of acquired metabolism chloroplast-stealing marine microbes and tree-fungal mutualisms to illustrate how these metabolic exchanges create and maintain diversity on our planet. We'll explore these systems using a combination of field observations (and collections), laboratory experiments, and, especially, mathematical models, demonstrating how the synergy between these approaches can give us insight into the mechanisms underlying acquired metabolism.


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Trade, Borrow, or Steal: How Acquired Metabolism Drives Evolutionary Innovation

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