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129 results for "clock genes" — page 1 of 7

ZB_5_07 Verified Ecology & Biology

ZB_5_07 — Chronobiology: Biological Clocks and Temporal Ecology

Chronobiology — the study of biological rhythms and their underlying molecular, physiological, and ecological mechanisms — reveals that nearly all living organisms, from cyanobacteria to humans, possess endogenous biolog

chronobiology circadian rhythm biological clock suprachiasmatic nucleus melatonin photoperiodism
Z_3_06 Molecular Biology

Z_3_06 — Genetics of Circadian Rhythms

Circadian rhythms — endogenous ~24-hour oscillations in physiology and behavior — are generated by an intracellular transcription-translation feedback loop (TTFL) encoded by a set of core clock genes conserved across ani

circadian rhythm clock genes CLOCK BMAL1 PER CRY
Z_2_10 Molecular Biology

Z_2_10 — Genetics of Aging and Progeria

Aging — the progressive decline in physiological function leading to increased vulnerability to disease and death — has a substantial genetic component: twin studies estimate heritability of human lifespan at ~25–30% (He

aging genetics progeria Hutchinson-Gilford progeria HGPS LMNA lamin A
Z_2_21 Verified Molecular Biology

Z_2_21 — Epigenetic Aging Clocks

Epigenetic aging clocks are mathematical models that use patterns of DNA methylation at specific CpG dinucleotides across the genome to estimate an individual's biological age with remarkable accuracy — typically within

epigenetic clock DNA methylation biological age Horvath clock GrimAge aging
ZB_2_22 Verified Ecology & Biology

ZB_2_22 — Bioelectricity, Morphogenesis, and Regeneration

Bioelectricity — the endogenous electrical signaling produced by all living cells through ion channels, pumps, and gap junctions — has emerged as a fundamental layer of biological information processing that operates alo

bioelectricity bioelectric signaling morphogenesis regeneration Michael Levin Robert Becker
ZB_5_01 Ecology & Biology

ZB_5_01 — Biological Rhythms Beyond Circadian

While circadian (~24-hour) rhythms are the best-studied biological oscillations (2017 Nobel Prize to Hall, Rosbash, Young), life is permeated by rhythms operating across all timescales — from millisecond neural oscillati

biological rhythms ultradian rhythms infradian rhythms circannual rhythms tidal rhythms lunar rhythms
L_5_10 Verified Genetics & Origins

L_5_10 — Neandertal Introgression: Which Genes and Why They Persisted

When modern humans (Homo sapiens) migrated out of Africa ~60,000-70,000 years ago and encountered Neanderthals (Homo neanderthalensis) in western Asia and Europe, the two species interbred — and the genetic legacy of tha

Neandertal introgression admixture adaptive introgression purifying selection immune genes
A_2_11 Verified Foundations

A_2_11 — Book of Jubilees: Angelic Calendar and Retold Genesis

The Book of Jubilees (also called Leptogenesis or "Little Genesis") is a Second Temple Jewish text (composed c. 160–150 BCE) that retells the narrative of Genesis 1 through Exodus 12 as a revelation dictated to Moses on

Jubilees Little Genesis Leptogenesis angel of the presence Mastema solar calendar
ZH_1_20 Credible Archaeoastronomy

ZH_1_20 — Egyptian Decans & Star Clocks: Timekeeping by the Night Sky

The Egyptian decan system — a method of dividing the night sky into 36 stellar groups (decans) whose sequential heliacal risings (first visible appearance on the eastern horizon just before sunrise) marked ten-day period

decan egyptian-astronomy star-clock diagonal-star-table coffin-texts-astronomy heliacal-rising
ZH_1_09 Verified Archaeoastronomy

ZH_1_09 — Astronomical Clocks and Mechanical Timekeeping

The intersection of astronomy and timekeeping produced some of humanity's most remarkable technological achievements: astronomical clocks — mechanisms that display not only the time of day but also the positions of the s

astronomical clock Prague Strasbourg orrery water clock clepsydra
ZH_1_02 Verified Archaeoastronomy

ZH_1_02 — Egyptian Astronomy: Decans, Star Clocks, Pyramid Orientation

Ancient Egypt developed one of the most sophisticated astronomical traditions of the pre-telescopic world, integrating celestial observation into timekeeping, calendar construction, temple orientation, and funerary cosmo

Egyptian astronomy decan star clock diagonal star table Sirius Sopdet
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_1_16 Verified Molecular Biology

Z_1_16 — Transposable Elements: Jumping Genes and Genome Evolution

Transposable elements (TEs) — sequences of DNA capable of moving ("jumping") from one genomic location to another — constitute approximately 45% of the human genome and up to 85% of the maize genome, making them the sing

transposable elements jumping genes Barbara McClintock retrotransposons DNA transposons Alu elements
J_5_12 Verified Ancient Technology

J_5_12 — Water Clocks: Clepsydrae and Ancient Timekeeping

The water clock — known by the Greek term clepsydra ("water thief") — was one of the most important timekeeping technologies of the ancient world, supplementing sundials by providing time measurement during the night, on

water clock clepsydra timekeeping horology Egyptian Greek
Verified

INTERDOC_61 — Hydrothermal Vent Chemistry: From Abiogenesis to Modern Energy Technology

Life originated at alkaline hydrothermal vents where serpentinization of olivine produced hydrogen, heat, and a natural pH gradient across porous iron-sulfur mineral membranes — structurally identical to the proton-motiv

alkaline hydrothermal vents serpentinization proton gradient chemiosmosis LUCA iron-sulfur catalysis
ZB_2_04 Ecology & Biology

ZB_2_04 — Circadian Rhythms, Biological Clocks, and the Ancient Time-Keeping Body

Every cell in the human body keeps time. The circadian system — a ~24-hour internal clock governed by the suprachiasmatic nucleus (SCN) in the hypothalamus — orchestrates sleep-wake cycles, hormone secretion, body temper

circadian rhythms biological clock SCN suprachiasmatic nucleus melatonin pineal gland
L_4_03 Genetics & Origins

L_4_03 — Genetic Clocks and Molecular Dating

The molecular clock — the concept that DNA and protein sequences accumulate mutations at approximately regular rates over time — provides a powerful tool for dating evolutionary divergences independently of the fossil re

molecular clock mutation rate molecular dating divergence time substitution rate neutral theory
L_5_05 Verified Genetics & Origins

L_5_05 — Epigenetic Clocks: Measuring Biological Age

Epigenetic clocks are mathematical models that estimate biological age — the physiological age of an organism's cells and tissues — based on DNA methylation patterns at specific CpG sites (regions where a cytosine nucleo

epigenetic clock DNA methylation biological age Horvath clock Hannum clock GrimAge
R_3_07 Biology & Evolution

R_3_07 — Embryology and Morphogenesis: How Bodies Take Shape

Embryology — the study of how a single fertilized cell becomes a complex multicellular organism — is one of biology's most profound mysteries. From the discovery by Karl Ernst von Baer (1828) that embryos of different sp

embryology morphogenesis gastrulation body plan Hox genes morphogen gradient
R_5_21 Verified Biology & Evolution

R_5_21 — Turing Patterns: Mathematical Morphogenesis and Biological Pattern Formation

In his landmark 1952 paper "The Chemical Basis of Morphogenesis," Alan Turing proposed that biological patterns — stripes, spots, spirals, and branching structures — could arise spontaneously from the interaction of two

turing patterns reaction-diffusion morphogenesis alan turing pattern formation activator-inhibitor