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Search 3,717 documents across 34 fields — every claim tier-rated by evidence

3,717 documents 34 sections 47,686 citations 34,596+ keywords indexed 4 evidence tiers

376 results for "conservation genetics" — page 3 of 19

L_3_11 Verified Genetics & Origins

L_3_11 — Genetics of Taste and Dietary Adaptation

Taste perception — the ability to detect sweet, salty, sour, bitter, and umami (savory) stimuli — is mediated by genetically encoded receptor proteins whose variation across individuals and populations reflects evolution

taste genetics TAS2R_4_05 PTC PROP bitter taste umami
L_3_08 Genetics & Origins

L_3_08 — Genetics of Skin, Hair, and Eye Color

Human pigmentation — skin, hair, and eye color — is one of the best-understood complex traits in human genetics, with a relatively modest number of genes explaining a large proportion of variation compared to most polyge

pigmentation genetics melanin eumelanin pheomelanin MC1R OCA2
L_3_07 Genetics & Origins

L_3_07 — Behavioral Genetics: Nature and Nurture

Behavioral genetics — the scientific study of how genetic and environmental factors contribute to individual differences in behavior — has transformed our understanding of human psychology over the past half-century. Thr

behavioral genetics nature nurture twin study heritability adoption study gene-environment interaction
L_5_16 Verified Genetics & Origins

L_5_16 — Archaeogenetics: Ancient DNA and the Human Past

Archaeogenetics — the extraction and analysis of DNA from ancient human, animal, and plant remains — has transformed our understanding of human history since the field's breakthrough in 2010. Advances in next-generation

archaeogenetics ancient DNA aDNA paleogenomics Svante Pääbo David Reich
L_5_07 Verified Genetics & Origins

L_5_07 — Genetics of Speech and Language: Beyond FOXP2

Language is humanity's most distinctive cognitive ability — and identifying its genetic basis has been a central goal of human genetics and neuroscience since the discovery of the KE family and the FOXP2 gene. The KE fam

FOXP2 language genetics speech CNTNAP2 SRPX2 ATP2C2
P_5_02 Philosophy & Meaning

P_5_02 — Computational Phylogenetics of Mythology

This document examines Computational Phylogenetics of Mythology, a topic within the Philosophy Meaning research area. Key areas of investigation include The Traditional Approach: Comparative Mythology, The Biological Ana

phylogenetics mythology Yuri Berezkin Julien d'Huy Michael Witzel Laurasian
R_3_01 Biology & Evolution

R_3_01 — Epigenetics and Ancestral Memory

Epigenetics — heritable changes in gene expression WITHOUT changes to the DNA sequence — has revolutionized biology over the past two decades. Your genes are the hardware; epigenetics is the software that determines whic

epigenetics DNA methylation histone modification transgenerational inheritance ancestral memory Lamarckism
R_3_09 Biology & Evolution

R_3_09 — Molecular Phylogenetics and Tree of Life

Molecular phylogenetics — reconstructing evolutionary relationships from DNA, RNA, and protein sequences — has revolutionized our understanding of the tree of life since Carl Woese's landmark 1977 discovery, using small-

phylogenetics molecular clock tree of life cladistics maximum likelihood Bayesian
R_3_15 Verified Biology & Evolution

R_3_15 — Epigenetics and Lamarckian Inheritance: Transgenerational Mechanisms Beyond DNA Sequence

Epigenetics — the study of heritable changes in gene expression that occur without alteration to the underlying DNA sequence — has fundamentally reshaped modern biology since the term was coined by Conrad Hal Waddington

epigenetics DNA methylation histone modification transgenerational inheritance Lamarckian inheritance epigenome
ZA_3_02 Physics & Quantum

ZA_3_02 — Symmetry, Noether's Theorem, and Conservation Laws

Emmy Noether's 1918 theorem established one of the deepest principles in physics: every continuous symmetry of the action of a physical system corresponds to a conserved quantity. Translational symmetry in space yields c

Emmy Noether Noether's theorem symmetry conservation laws translational symmetry rotational symmetry
U_4_03 Art, Music & Culture

U_4_03 — Cultural Evolution — Dual Inheritance and Cumulative Culture

Cultural evolution theory applies Darwinian principles — variation, selection, inheritance — to the transmission and transformation of cultural information (beliefs, technologies, norms, institutions). The dual inheritan

cultural evolution dual inheritance gene-culture coevolution cumulative culture Boyd Richerson memetics
C_1_15 Global Traditions

C_1_15 — Oral Tradition Fidelity: How Accurately Do Myths Preserve Historical Facts?

Oral traditions have long been treated with skepticism by historians trained in text-based source criticism, yet mounting evidence suggests that under certain conditions, oral narratives can preserve accurate information

oral tradition memory fidelity Aboriginal Australian sea-level rise folklore phylogenetics Vansina
ZF_2_05 Verified Oceanography

ZF_2_05 — Whale Biology and Cetacean Communication

Cetaceans — the order comprising whales, dolphins, and porpoises (~90 living species) — are among the most cognitively sophisticated and communicatively complex animals on Earth. Evolved from terrestrial artiodactyls tha

cetacean whale dolphin echolocation whale song humpback
ZF_2_10 Verified Oceanography

ZF_2_10 — Sharks and Apex Marine Predators

Sharks — cartilaginous fishes of the superorder Selachimorpha (~500 living species) — are among the ocean's most ancient and ecologically critical predators, having evolved over 400 million years (predating trees and din

shark apex predator elasmobranch great white shark shark finning megalodon
Z_5_13 Verified Molecular Biology

Z_5_13 — Molecular Clocks: Timing Evolution at the Sequence Level

Molecular clocks — the observation that DNA and protein sequences accumulate substitutions (mutations that become fixed in a lineage) at approximately regular rates over long periods of evolutionary time, enabling the es

molecular clock neutral theory substitution rate Zuckerkandl Pauling calibration
Z_3_07 Molecular Biology

Z_3_07 — Gene Drive Technology

Gene drives are genetic systems that bias their own inheritance to spread through a population at rates exceeding normal Mendelian expectations (~50% → ~99% transmission). Natural selfish genetic elements (transposons, m

gene drive CRISPR gene drive selfish genetic element meiotic drive super-Mendelian inheritance Anopheles
Z_3_02 Molecular Biology

Z_3_02 — Epigenetic Inheritance & Transgenerational Effects

Epigenetic inheritance refers to the transmission of phenotypic information across generations through mechanisms other than changes in DNA sequence. The three primary molecular mechanisms — DNA methylation, histone modi

epigenetics transgenerational inheritance DNA methylation histone modification Dutch Hunger Winter Överkalix
Z_2_15 Molecular Biology

Z_2_15 — Future of Genomics and Personalized Medicine

Genomics is undergoing a transition from research tool to clinical infrastructure. The cost of whole-genome sequencing (WGS) has plummeted from $2.7 billion (Human Genome Project, 1990–2003) to ~$200 per genome (Illumina

future genomics personalized medicine precision medicine polygenic risk scores whole genome sequencing newborn screening
Z_2_13 Molecular Biology

Z_2_13 — Pharmacogenomics and Personalized Medicine

Pharmacogenomics — the study of how genetic variation influences drug response — is among the most clinically actionable applications of human genetics. Adverse drug reactions (ADRs) are the 4th–6th leading cause of deat

pharmacogenomics pharmacogenetics personalized medicine precision medicine CYP2D6 CYP2C_5_04
Z_2_06 Molecular Biology

Z_2_06 — Nutrigenomics and Diet-Gene Interactions

Nutrigenomics — the study of how genetic variation influences nutritional requirements, dietary responses, and disease susceptibility — and its complement nutrigenetics (how diet influences gene expression) represent a r

nutrigenomics nutrigenetics diet-gene interaction lactase persistence alcohol metabolism folate metabolism