RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

1,723 results for "System 2" — page 52 of 87

ZB_2_11 Verified Ecology & Biology

ZB_2_11 — Biological Electricity and Bioelectricity

Electricity is fundamental to life — every living cell maintains a transmembrane potential (Vmem, typically −40 to −90 mV in animal cells) created by ion channels and pumps that selectively move Na⁺, K⁺, Ca²⁺, and Cl⁻ ac

bioelectricity electric fish electroreception ion channel membrane potential voltage
ZB_2_05 Verified Ecology & Biology

ZB_2_05 — Aging, Longevity, and the Biology of Death

Why do organisms age and die? This question — one of the oldest in human inquiry — has yielded remarkable molecular answers in recent decades. Leonard Hayflick's 1961 discovery that human cells have a finite replicative

aging longevity telomeres telomerase Hayflick limit senescence
ZB_2_19 Verified Ecology & Biology

ZB_2_19 — Epigenetics & Chromatin Modification

Epigenetics — literally "above genetics" — encompasses heritable changes in gene expression that occur without alterations to the DNA sequence itself. The term was coined by Conrad Hal Waddington in 1942 to describe how

epigenetics DNA methylation histone modification chromatin remodeling gene expression transgenerational inheritance
ZB_2_07 Verified Ecology & Biology

ZB_2_07 — Bioluminescence: Living Light in Nature

Bioluminescence — the production and emission of light by living organisms — is one of life's most extraordinary and widespread adaptations. It has evolved independently at least 94 times across the tree of life, from ba

bioluminescence luciferin luciferase aequorin GFP green fluorescent protein
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_2_18 Verified Ecology & Biology

ZB_2_18 — Phage-Bacteria Coevolution: Arms Races in the Microbial World

Bacteriophages (phages) — viruses that infect and replicate within bacteria — are the most abundant biological entities on Earth (~10³¹ total particles, outnumbering bacteria ~10:1 in most environments), and their coevol

bacteriophage phage therapy CRISPR Red Queen phage-bacteria coevolution
ZB_2_00 Ecology & Biology

ZB_2_00 — Organismal Biology Physiology: Subfolder Summary

ZB_2_09 Verified Ecology & Biology

ZB_2_09 — Biological Regeneration: Limb Regrowth and Tissue Repair

The ability to regenerate lost body parts varies enormously across the animal kingdom. Planarian flatworms can rebuild an entire organism from a fragment 1/279th of the original. Salamanders regenerate complete limbs, ja

regeneration limb regeneration salamander axolotl planarian Hydra
ZB_2_15 Verified Ecology & Biology

ZB_2_15 — Carnivorous Plants: Evolution, Mechanisms, and Ecology

Carnivorous plants — approximately 800 species across at least 12 independently evolved lineages — have evolved the capacity to attract, capture, and digest animal prey (primarily arthropods) to supplement nutrient acqui

carnivorous plants Venus flytrap Dionaea muscipula sundew Drosera pitcher plant
ZB_2_17 Verified Ecology & Biology

ZB_2_17 — Mycology: Kingdom Fungi

Kingdom Fungi — the second-largest kingdom of eukaryotes after animals, with an estimated 2.2–3.8 million species (only ~150,000 described) — encompasses organisms that obtain nutrition by absorbing dissolved organic mol

mycology fungi mushroom yeast mold Basidiomycota
ZB_1_02 Verified Ecology & Biology

ZB_1_02 — Social Insects — Superorganisms and Collective Intelligence

Social insects — ants, bees, wasps, and termites — represent one of evolution's most spectacular innovations: the subordination of individual reproduction to colony-level organization, producing "superorganisms" capable

eusociality social insects ants bees termites naked mole rats
ZB_5_25 Verified Ecology & Biology

ZB_5_25 — Animal Migration: Navigation, Endurance, and Ecological Connectivity

Animal migration — the seasonal, round-trip movement of populations between distinct habitats — represents some of the most extraordinary feats of endurance, navigation, and sensory capability in biology. Arctic terns (S

animal migration navigation magnetoreception bird migration monarch butterfly wildebeest
ZB_5_00 Ecology & Biology

ZB_5_00 — Systems Applied Ecology: Subfolder Summary

ZB_5_12 Verified Ecology & Biology

ZB_5_12 — Wildlife Disease Ecology: Pathogens in Wild Populations

Wildlife disease ecology examines how infectious diseases (caused by viruses, bacteria, fungi, protists, and metazoan parasites) operate within wild animal and plant populations, investigating transmission dynamics, host

wildlife disease epizootic chytrid fungus white-nose syndrome zoonosis spillover
ZB_4_16 Verified Ecology & Biology

ZB_4_16 — Mangrove Ecosystems

Mangroves are a group of approximately 70 species of salt-tolerant trees and shrubs that occupy the intertidal zone of tropical and subtropical coastlines worldwide, forming dense tidal forests that rank among the most p

mangrove blue carbon coastal wetland Rhizophora Avicennia carbon sequestration
ZB_4_02 Verified Ecology & Biology

ZB_4_02 — Extremophiles and Extreme Biology

Extremophiles are organisms that thrive in conditions lethal to most life — extreme heat, cold, acidity, radiation, pressure, salinity, or desiccation. Their discovery has fundamentally expanded understanding of life's b

extremophiles thermophiles halophiles acidophiles psychrophiles radiation resistance
ZB_4_12 Verified Ecology & Biology

ZB_4_12 — Landscape Ecology: Patches, Corridors, and Mosaics

Landscape ecology studies how spatial patterns of ecosystems — the arrangement, size, shape, and connectivity of habitat patches within a heterogeneous landscape mosaic — influence ecological processes including species

landscape ecology patch dynamics connectivity corridor fragmentation metapopulation
ZB_4_13 Verified Ecology & Biology

ZB_4_13 — Historical Ecology: Human-Ecosystem Co-Evolution through Time

Historical ecology investigates how human land use, management, domestication, exploitation, and settlement over centuries to millennia have shaped contemporary ecosystems, landscapes, and biodiversity patterns — reveali

historical ecology shifting baseline land-use history legacy effects paleoecology human impact
ZB_3_22 Verified Ecology & Biology

ZB_3_22 — Old-Growth Forests & Ancient Woodland Ecology

Old-growth forests — variously defined as primary forests that have developed over centuries without major anthropogenic disturbance — represent the most structurally complex and biologically diverse terrestrial ecosyste

old-growth forest ancient woodland primary forest carbon sink biodiversity mycorrhizal network
ZB_3_21 Verified Ecology & Biology

ZB_3_21 — Soil Microbiome

The soil microbiome encompasses the entire community of microorganisms inhabiting soil — bacteria, archaea, fungi, protists, and viruses — constituting the most biodiverse ecosystem on Earth. [KEY FINDING] A single gram

soil microbiome rhizosphere mycorrhiza bacteria fungi archaea