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Biological Influences on Intelligence01:30

Biological Influences on Intelligence

Intelligence is often thought to be linked to brain size, but the relationship is more complex than that. While brain size does correlate modestly with some abilities, like verbal skills, the connection is weaker for others, such as spatial reasoning. Other factors, like brain structure, also play crucial roles. For instance, despite Einstein's smaller-than-average brain, his parietal cortex, which is involved in spatial reasoning, was 15% wider, suggesting that neural density might matter more...
Organization of Genes02:07

Organization of Genes

Overview
Genome Size and the Evolution of New Genes03:21

Genome Size and the Evolution of New Genes

While every living organism has a genome of some kind (be it RNA, or DNA), there is considerable variation in the sizes of these blueprints. One major factor that impacts genome size is whether the organism is prokaryotic or eukaryotic. In prokaryotes, the genome contains little to no non-coding sequence, such that genes are tightly clustered in groups or operons sequentially along the chromosome. Conversely, the genes in eukaryotes are punctuated by long stretches of non-coding sequence.
Genome Size and the Evolution of New Genes03:21

Genome Size and the Evolution of New Genes

While every living organism has a genome of some kind (be it RNA, or DNA), there is considerable variation in the sizes of these blueprints. One major factor that impacts genome size is whether the organism is prokaryotic or eukaryotic. In prokaryotes, the genome contains little to no non-coding sequence, such that genes are tightly clustered in groups or operons sequentially along the chromosome. Conversely, the genes in eukaryotes are punctuated by long stretches of non-coding sequence.
Gene Flow02:39

Gene Flow

Gene flow is the transfer of genes among populations, resulting from either the dispersal of gametes or from the migration of individuals.
Cattell's Theory of Intelligence01:25

Cattell's Theory of Intelligence

Raymond Cattell, along with John Horn, made significant contributions to our understanding of intelligence by distinguishing between two types: fluid intelligence and crystallized intelligence.
Fluid intelligence involves the capacity to solve new problems and adapt to unfamiliar situations. It's the type of intelligence individuals use when they encounter a novel problem or puzzle that requires innovative thinking. For instance, figuring out how to operate a new gadget relies heavily on fluid...

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Related Experiment Video

Updated: May 9, 2026

A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations
08:22

A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations

Published on: December 1, 2017

No genes for intelligence in the fluid genome.

Mae-Wan Ho1

  • 1Institute of Science in Society, London, UK. m.w.ho@i-sis.org.uk

Advances in Child Development and Behavior
|July 20, 2013
PubMed
Summary

Genetic determinism for intelligence is challenged by the fluid genome. Environmental and social factors, not single genes, significantly influence intellectual abilities, offering potential for improvement.

Area of Science:

  • Genetics
  • Developmental Biology
  • Behavioral Science

Background:

  • The traditional view of genetic determinism struggles to explain complex traits like intelligence.
  • The concept of a fixed genome is being challenged by evidence of genomic fluidity and epigenetic modifications.

Purpose of the Study:

  • To critically evaluate the genetic basis of intelligence.
  • To highlight the limitations of current genetic research paradigms for complex traits.
  • To emphasize the role of environmental factors in intellectual development.

Main Methods:

  • Review of genome-wide association studies (GWAS) for intelligence.
  • Analysis of twin studies examining genetic and environmental influences.
  • Examination of epigenetic and environmental factors affecting development.

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Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)
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Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)

Published on: August 21, 2016

Genotyping and Quantification of In Situ Hybridization Staining in Zebrafish
05:41

Genotyping and Quantification of In Situ Hybridization Staining in Zebrafish

Published on: January 28, 2020

Related Experiment Videos

Last Updated: May 9, 2026

A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations
08:22

A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations

Published on: December 1, 2017

Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)
11:35

Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)

Published on: August 21, 2016

Genotyping and Quantification of In Situ Hybridization Staining in Zebrafish
05:41

Genotyping and Quantification of In Situ Hybridization Staining in Zebrafish

Published on: January 28, 2020

Main Results:

  • Genome-wide scans have failed to identify specific genes for intelligence.
  • Environmental and maternal effects appear to account for significant familial correlations in intelligence.
  • Identical twins exhibit genetic and epigenetic divergence over time.

Conclusions:

  • The search for single intelligence genes is largely unproductive, reflecting an outdated paradigm.
  • Environmental and social interventions hold substantial potential for enhancing intellectual abilities and overall health.
  • A more dynamic view of the genome and its interaction with the environment is necessary.