Skip to main content

Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript.

Advertisement

Nature Precedings
  • View all journals
  • Search
  • My Account Login
  • Explore content
  • About the journal
  • RSS feed
  1. nature
  2. nature precedings
  3. articles
  4. article
Inverse relationship between genetic diversity and epigenetic complexity
Download PDF
Download PDF
  • Manuscript
  • Open Access
  • Published: 02 April 2008

Inverse relationship between genetic diversity and epigenetic complexity

  • Shi Huang1 

Nature Precedings (2008)Cite this article

  • 122 Accesses

  • Metrics details

Abstract

Early studies of molecular evolution revealed a correlation between genetic distance and time of species divergence. This observation provoked the molecular clock hypothesis and in turn the ‘Neutral Theory’, which however remains an incomplete explanation since it predicts a constant mutation rate per generation whereas empirical evidence suggests a constant rate per year. Data inconsistent with the molecular clock hypothesis have steadily accumulated in recent years that show no correlation between genetic distance and time of divergence. It has therefore become a challenge to find a testable idea that can reconcile the seemingly conflicting data sets. Here, an inverse relationship between genetic diversity and epigenetic complexity was deduced from a simple intuition in building complex systems. Genetic diversity, i.e., genetic distance or dissimilarity in DNA or protein sequences between individuals or species, is restricted by the complexity of epigenetic programs. This inverse relationship logically deduces the maximum genetic diversity hypothesis, which suggests that macroevolution from simple to complex organisms involves a punctuational increase in epigenetic complexity that in turn causes a punctuational loss in genetic diversity. The hypothesis explains a diverse set of biological phenomena, including both for and against the correlation between genetic distance and time of divergence.

Author information

Authors and Affiliations

  1. The Burnham Institute, La Jolla, CA, 92037

    Shi Huang

Authors
  1. Shi Huang
    View author publications

    You can also search for this author in PubMed Google Scholar

Corresponding author

Correspondence to Shi Huang.

Rights and permissions

Creative Commons Attribution 3.0 License.

Reprints and Permissions

About this article

Cite this article

Huang, S. Inverse relationship between genetic diversity and epigenetic complexity. Nat Prec (2008). https://doi.org/10.1038/npre.2008.1751.1

Download citation

  • Received: 01 April 2008

  • Accepted: 02 April 2008

  • Published: 02 April 2008

  • DOI: https://doi.org/10.1038/npre.2008.1751.1

Share this article

Anyone you share the following link with will be able to read this content:

Sorry, a shareable link is not currently available for this article.

Provided by the Springer Nature SharedIt content-sharing initiative

Keywords

  • equidistance result
  • maximum genetic diversity hypothesis
  • epigenetic complexity
  • Neo-Darwinian hypothesis
  • bioinformatics
  • Epigenetics
  • molecular clock
  • Evolution
Download PDF

Advertisement

Explore content

  • Research articles
  • News & Comment
  • RSS feed

About the journal

  • Journal Information

Search

Advanced search

Quick links

  • Explore articles by subject
  • Find a job
  • Guide to authors
  • Editorial policies

Nature Precedings (Nat Preced)

nature.com sitemap

About Nature Portfolio

  • About us
  • Press releases
  • Press office
  • Contact us

Discover content

  • Journals A-Z
  • Articles by subject
  • Nano
  • Protocol Exchange
  • Nature Index

Publishing policies

  • Nature portfolio policies
  • Open access

Author & Researcher services

  • Reprints & permissions
  • Research data
  • Language editing
  • Scientific editing
  • Nature Masterclasses
  • Nature Research Academies
  • Research Solutions

Libraries & institutions

  • Librarian service & tools
  • Librarian portal
  • Open research
  • Recommend to library

Advertising & partnerships

  • Advertising
  • Partnerships & Services
  • Media kits
  • Branded content

Career development

  • Nature Careers
  • Nature Conferences
  • Nature events

Regional websites

  • Nature Africa
  • Nature China
  • Nature India
  • Nature Italy
  • Nature Japan
  • Nature Korea
  • Nature Middle East
  • Privacy Policy
  • Use of cookies
  • Legal notice
  • Accessibility statement
  • Terms & Conditions
  • California Privacy Statement
Springer Nature

© 2023 Springer Nature Limited

Nature Briefing

Sign up for the Nature Briefing newsletter — what matters in science, free to your inbox daily.

Get the most important science stories of the day, free in your inbox. Sign up for Nature Briefing