CACrown ArchivesThe cinema collection
Menu
Research dossier · General Reference

Hologenome theory of evolution

evolutionary view of an individual multicellular organism as a community of the host plus all of its symbiotic microbes

Cross-disciplinary reference desk with index cards, atlas, dictionary and catalogue
General referenceInterpretive dossier study · Crown Archives visual atlas
Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionSep 8, 2026
Entity authorityQ13217976
Source-derived summary

The hologenome theory of evolution recasts the individual animal or plant (and other multicellular organisms) as a community or a "holobiont" – the host plus all of its symbiotic microbes. Consequently, the collective genomes of the holobiont form a "hologenome". Holobionts and hologenomes are structural entities that replace misnomers in the context of host-microbiota symbioses such as superorganism (i.e., an integrated social unit composed of conspecifics), organ, and metagenome. Variation in the hologenome may encode phenotypic plasticity of the holobiont and can be subject to evolutionary changes caused by selection and drift, if portions of the hologenome are transmitted between generations with reasonable fidelity. One of the important outcomes of recasting the individual as a holobiont subject to evolutionary forces is that genetic variation in the hologenome can be brought about by changes in the host genome and also by changes in the microbiome, including new acquisitions of microbes, horizontal gene transfers, and changes in microbial abundance within hosts. Although there is a rich literature on binary host–microbe symbioses, the hologenome concept distinguishes itself by including the vast symbiotic complexity inherent in many multicellular hosts.

Origin

Lynn Margulis coined the term holobiont in her 1991 book Symbiosis as a Source of Evolutionary Innovation: Speciation and Morphogenesis (MIT Press), though this was not in the context of diverse populations of microbes. The term holobiont is derived from the Ancient Greek ὅλος (hólos, "whole"), and the word biont for a unit of life.

In September 1994, Richard Jefferson coined the term hologenome when he introduced the hologenome theory of evolution at a presentation at Cold Spring Harbor Laboratory. At the CSH Symposium and earlier, the unsettling number and diversity of microbes that were being discovered through the powerful tool of PCR-amplification of 16S ribosomal RNA genes was exciting, but confusing interpretations in diverse studies.

Editorial summary

Begin with the source’s own compact description: “Hologenome theory of evolution” is evolutionary view of an individual multicellular organism as a community of the host plus all of its symbiotic microbes. The dossier treats that line as a proposition to test through Hologenome, theory and evolution, not as a finished interpretation.

Editorial reviewA concise reference frame for defining the subject, testing terminology and identifying the institution closest to the evidence. The current lead gives the account dated anchors—1991, 1994—that can be checked directly. The selected authority fields contribute no independent date. For this dossier, Hologenome, theory and evolution is the immediate research focus.
Editorial analysis

Why this record matters

The phrase “evolutionary view of an individual multicellular organism as a community of the host plus all of its symbiotic microbes” supplies a clear boundary for inquiry. It also exposes the unanswered questions: who defined that boundary, when it became stable and which sources sit outside it.

Evidence profile

Vocabulary and entity names are the principal evidence signals here, because they determine the precision of every later search. The source revision retrieved here is dated Sep 8, 2026. The linked authority identifier is Q13217976. None of the 0 selected statements returned an explicit reference. The first chronological checks are 1991 and 1994.

Critical limits

The absence of detail may reflect summary conventions rather than a lack of surviving documentation. The source lead contains qualifying language; that uncertainty should survive quotation, summary and reuse. Authority statements aid reconciliation but still require their own references, qualifiers and ranks to be checked.

How to read it

Use the entry as an orientation point, then follow its citations and revision history. Names, dates and institutional relationships should be checked against the original record.

Best used for
  • Subject orientation
  • Search vocabulary
  • Locating named sources
Verify next

The closest primary source, responsible institution and strongest cited specialist reference.

Three-step research path

  1. Establish the record: confirm the title “Hologenome theory of evolution”, its source revision and the description used here.
  2. Expand the search: follow Hologenome theory of evolution primary sources, Hologenome theory of evolution archive and Hologenome research across catalogues and specialist indexes.
  3. Test the account: compare the strongest cited source with the responsible institution’s current record and note any disagreement.

Questions for further research

  1. Which source most directly establishes the central claim about “Hologenome theory of evolution”?
  2. What terminology or title could unlock a more precise catalogue search?
  3. Which cited source is closest to the event, object or claim?
Subject index

Search terms from this dossier

Source & attribution

This entry incorporates text from Hologenome theory of evolution” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.