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Convergent evolution of toxin resistance in animals
Jory van Thiel
, Muzaffar A. Khan
, Roel M. Wouters
, Richard J. Harris
, Nicholas R. Casewell
, Bryan G. Fry
, R. Manjunatha Kini
, Stephen P. Mackessy
, Freek J. Vonk
,
Wolfgang Wüster
, Michael K. Richardson
School of Environmental & Natural Sciences
Leiden University
The University of Queensland
Liverpool School of Tropical Medicine
National University of Singapore
University of Northern Colorado
Naturalis Biodiversity Center, Leiden
Research output
:
Contribution to journal
›
Article
›
peer-review
417
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Keyphrases
Convergent Evolution
100%
Toxin Resistance
100%
Molecular Adaptation
50%
Tree of Life
25%
Animal Feeding
25%
Process Adaptation
25%
Molecular Resistance Mechanism
25%
Molecular Pathways
25%
Harmful Effects
25%
Toxic Prey
25%
Evolutionary Process
25%
Self-protection
25%
Small Sets
25%
Interaction Selection
25%
Selection Pressure
25%
Physiological Pathways
25%
Molecular Targets
25%
Deterministic Evolution
25%
Poisonous Animals
25%
Toxin Susceptibility
25%
Resistance Adaptation
25%
Molecular Mechanism
25%
Trophic Interactions
25%
Fitness Cost
25%
Normal Physiology
25%
Evolutionary Novelty
25%
Immunology and Microbiology
Evolution
100%
Prey
100%
Lineages
100%
Convergent Evolution
100%
Poisonous Animal
50%
Target Organism
50%
Solution and Solubility
50%
Tree of Life
50%
Biochemistry, Genetics and Molecular Biology
Prey
100%
Evolution
100%
Convergent Evolution
100%
Target Organism
50%
Tree of Life
50%
Poisonous Animal
50%
Solution and Solubility
50%
Medicine and Dentistry
Prey
100%
Evolution
100%
Convergent Evolution
100%
Tree of Life
50%
Health Care Cost
50%
Pharmacology, Toxicology and Pharmaceutical Science
Prey
100%
Poisonous Animal
50%
Molecular Target
50%
Target Organism
50%