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376 results for "conservation genetics" — page 9 of 19
C_1_00 — Universal Archetypes Patterns: Subfolder Summary
C_5_08 — Armenian Mythology and the Urartian Connection
- [Quick Summary](#quick-summary)
ZF_2_09 — Fisheries Science and Overfishing
Fisheries science studies the dynamics of fish populations and the management of their exploitation, while overfishing — harvesting fish faster than they can reproduce — has emerged as one of the most pressing threats to
ZF_2_06 — Mangrove and Estuary Ecosystems
Mangroves and estuaries are transitional ecosystems where terrestrial and marine environments meet, creating some of the most biologically productive and ecologically critical habitats on Earth. Estuaries — semi-enclosed
ZF_2_00 — Marine Biology Ecology: Subfolder Summary
ZF_2_08 — Kelp Forests and Seagrass Meadows
Kelp forests and seagrass meadows are the ocean's equivalents of terrestrial forests and grasslands — highly productive underwater ecosystems that provide habitat, food, nursery grounds, carbon sequestration, and coastal
ZF_3_17 — Anthropogenic Ocean Noise Pollution
Anthropogenic ocean noise — sound from shipping, seismic surveys, military sonar, construction, and industrial activity — has increased ambient ocean sound levels by an estimated 32-fold (15 dB) in many ocean regions sin
ZF_5_19 — Coral Restoration Technology
Coral restoration technology — the active intervention to repair, regenerate, and enhance degraded coral reef ecosystems — has rapidly evolved from small-scale transplantation efforts into a multi-billion-dollar global e
ZF_4_13 — Ocean Noise Pollution: Anthropogenic Sound and Marine Life
Ocean noise pollution — the introduction of excessive or harmful human-generated sound into the marine environment — has emerged as one of the most pervasive and least visible threats to marine ecosystems. Sound travels
ZF_4_02 — Ocean Pollution and Plastic Debris
Ocean pollution encompasses the introduction of harmful substances and materials into the marine environment, degrading water quality, damaging ecosystems, and threatening human health. The major categories are: plastic
ZF_4_00 — Ocean Chemistry Climate: Subfolder Summary
ZF_4_09 — Seagrass and Coastal Carbon Sequestration (Blue Carbon)
Blue carbon refers to the carbon captured and stored by coastal and marine ecosystems — primarily seagrass meadows, mangrove forests, and salt marshes — which sequester carbon at rates per unit area far exceeding terrest
ZF_0_00 — Oceanography & Marine Science: Section Summary
Z_5_00 — Modern Genomics Technologies: Subfolder Summary
Z_5_01 — CRISPR Applications and Genetic Engineering
CRISPR-Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats) is a revolutionary gene-editing technology adapted from a bacterial immune defense system, enabling precise, programmable modification of DNA in vir
Z_5_07 — Epigenome Mapping: Charting the Chemical Modifications of DNA and Chromatin
Epigenome mapping — the systematic, genome-wide identification and quantification of epigenetic modifications (chemical marks on DNA and histone proteins that regulate gene expression without changing the underlying DNA
Z_5_08 — Mitochondrial DNA: Maternal Inheritance, Ancient Lineages, and Disease
Mitochondrial DNA (mtDNA) — the small, circular genome (~16,569 base pairs in humans) contained within mitochondria — encodes 37 genes essential for oxidative phosphorylation (13 protein-coding genes, 22 transfer RNAs, 2
Z_3_03 — Ancient Pathogen Genomics — Plague, TB, Smallpox DNA
Ancient pathogen genomics — the recovery and sequencing of disease-causing organism DNA from archaeological remains — has revolutionized understanding of human disease history. Beginning with the landmark reconstruction
Z_3_16 — Genomic Conflict and Selfish Genetic Elements
Selfish genetic elements (SGEs) — sequences of DNA that promote their own transmission at the expense of the host organism or other genes in the genome — reveal that the genome is not a cooperating community of genes but
Z_3_04 — Comparative Genomics and Cross-Species Analysis
Comparative genomics — the systematic comparison of genome sequences across species — has become the primary tool for understanding genome evolution, identifying functionally important sequences, and reconstructing the T
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