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Related Concept Videos

Human Genetics01:28

Human Genetics

Human genetics provides a profound framework for understanding the interplay between genetic predispositions and human psychology. At the heart of this discipline lies the study of how genes influence physical traits, behaviors, and susceptibility to diseases. Each person carries a unique genetic code that subtly or significantly shapes their psychological and behavioral landscape.
The complex relationship between genetics and psychology is observable through common biological components such...
Natural Selection and Adaptation01:15

Natural Selection and Adaptation

Natural selection, a fundamental concept in evolutionary biology, is the mechanism by which evolution is driven, favoring organisms that are best adapted to their environments. This process enhances their chances of survival and reproduction. Adaptation, a key outcome of this process, involves genetic modifications that optimize an organism's functionality under specific environmental challenges, such as extreme cold or thinner air at high altitudes.
Beyond physical adaptations, psychological...
Inheritance01:25

Inheritance

Gregor Mendel's pioneering work on the principles of inheritance fundamentally transformed our understanding of how traits are transmitted from generation to generation. His experiments with pea plants laid the groundwork for the discovery of genes, discrete units within organisms that control heredity.
Each gene exists in pairs, and the combination of these genes from both parents forms an individual's genotype. This genotype is a blueprint of potential traits. Examples of genotype traits...
Principles of Pharmacogenetics: Types of Genetic Variants01:27

Principles of Pharmacogenetics: Types of Genetic Variants

The human genome is over 99.9% identical between individuals, yet genetic differences exist at millions of bases. The human genome contains approximately 3 million variant positions per individual, many of which are heterozygous, contributing to genetic diversity and individual traits. Genetic variations include single-nucleotide polymorphisms (SNPs), insertions, deletions, and copy number variations (CNVs).SNPs, the most common variation, involve single-base changes in DNA. These can be...
Gene-Environment Interactions01:20

Gene-Environment Interactions

Gene expression is a dynamic process that is significantly influenced by environmental factors. This interaction underlies the complex nature of biological development and the phenotypic differences observed among individuals, even among those with identical genetic makeups. Factors such as radiation, temperature, behavior, nutrition, and stress play pivotal roles in determining how genes are expressed. The concept of the reaction range is central to understanding this interaction. It posits...
Genetics of Speciation02:16

Genetics of Speciation

Speciation is the evolutionary process resulting in the formation of new, distinct species—groups of reproductively isolated populations.

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Related Experiment Video

Updated: May 17, 2026

Following the Dynamics of Structural Variants in Experimentally Evolved Populations
04:52

Following the Dynamics of Structural Variants in Experimentally Evolved Populations

Published on: February 3, 2023

Physico-genetic determinants in the evolution of development.

Stuart A Newman1

  • 1Department of Cell Biology and Anatomy, New York Medical College, Valhalla, NY 10595, USA. newman@nymc.edu

Science (New York, N.Y.)
|October 16, 2012
PubMed
Summary

Animal development relies on physical processes, not just complex genetic mechanisms. Early gene products acting on multicellular aggregates likely drove the evolution of animal body plans and embryonic development.

Area of Science:

  • Developmental Biology
  • Evolutionary Biology
  • Biophysics

Background:

  • Animal bodies and embryos display ancient, conserved morphological patterns.
  • These patterns involve cells organizing into layered tissues with cavities and specific arrangements.
  • Tissue morphogenesis includes elongation, folding, segmentation, and appendage formation.

Purpose of the Study:

  • To propose a unifying hypothesis for the origin of animal development.
  • To connect physical processes with the evolution of embryonic morphology.
  • To explore the role of gene products in early multicellular organization.

Main Methods:

  • Comparative analysis of embryonic development and physical processes.
  • Theoretical modeling of cellular and tissue behavior.

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Experimental Manipulation of Body Size to Estimate Morphological Scaling Relationships in Drosophila
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Experimental Manipulation of Body Size to Estimate Morphological Scaling Relationships in Drosophila

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Last Updated: May 17, 2026

Following the Dynamics of Structural Variants in Experimentally Evolved Populations
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Published on: February 3, 2023

Stable Isotope In-Vivo Labeling for Mass-Spectrometry Identification of Paternal Metabolites Transferred from Sperm to Oocyte During Fertilization
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  • Hypothesizing the role of ancestral gene products in multicellularity.
  • Main Results:

    • Embryonic morphological motifs resemble outcomes of physical processes in condensed, viscoelastic materials.
    • Embryonic development mechanisms are often more complex than generic physical processes.
    • Ancestral gene products operating at the multicellular scale could mobilize physical organizational effects.

    Conclusions:

    • The origins of animal development are rooted in the physical organizational effects of gene products.
    • These effects, acting on multicellular aggregates, shaped early animal body plans.
    • Evolutionary developmental biology can be illuminated by biophysical principles.