The genetical evolution of social behaviour. II¶
Hamilton. (1964). The genetical evolution of social behaviour. II.
Cited by¶
3 citations across 3 artifacts.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Hamilton's Rule
- The haplodiploid genetics of Hymenoptera — bees, wasps, ants — produce an asymmetry that Hamilton immediately recognised: because the male father is haploid and contributes an identical genome to every daughter, full sisters in a Hymenoptera colony are related by r = 0.75, while a female is related to her own offspring by only r = 0.5
This sourceHamilton's derivation that under male haploidy full sisters have a coefficient of relationship of 3/4 against 1/2 to their own daughters.
SupportedVerified against the source
- The haplodiploid genetics of Hymenoptera — bees, wasps, ants — produce an asymmetry that Hamilton immediately recognised: because the male father is haploid and contributes an identical genome to every daughter, full sisters in a Hymenoptera colony are related by r = 0.75, while a female is related to her own offspring by only r = 0.5
- Inclusive Fitness
- The concept, developed by W. D. Hamilton in his 1964 papers on the genetical evolution of social behaviour
This sourceHamilton's argument that, with a singly mated mother, sisters are related by 3/4 against 1/2 to daughters, favouring worker care of sisters, and that social life arose independently several times in the Hymenoptera.
Supported in partVerified against the source
- The concept, developed by W. D. Hamilton in his 1964 papers on the genetical evolution of social behaviour
- Kin selection
- Worker sterility in eusocial Hymenoptera — bees, wasps, and ants — was the original motivating puzzle: under haplodiploidy, sisters in a colony share three-quarters of alleles by descent, making sister-raising reproductively more efficient for the workers' shared alleles than producing their own offspring under many ecological conditions
This sourceHamilton's analysis of the haplodiploid relatedness pattern, in which Hymenoptera's asymmetry of relatedness to sisters versus brothers bears on their social behaviour. Hamilton's Part II treatment of haplodiploid social Hymenoptera, where a worker's relatedness to the queen's daughters versus her own offspring bears on worker behaviour.
Supported in partVerified against a saved copy of the source
“of sisters, not brothers, and never to be equally devoted to both if the haplodiploid relatedness pattern”
- Worker sterility in eusocial Hymenoptera — bees, wasps, and ants — was the original motivating puzzle: under haplodiploidy, sisters in a colony share three-quarters of alleles by descent, making sister-raising reproductively more efficient for the workers' shared alleles than producing their own offspring under many ecological conditions
Verification¶
Does it exist? Not checked yet. This work's DOI is recorded above but has not been resolved against an external catalogue, so nothing here confirms the work exists.
Does it back the claim? Read against the text for 3 of 3 citations: 1 supported, 2 supported in part. Each verdict is shown under its citation below, with what in the work backs the sentence.
Support is checked per citation rather than per work — the same source can be cited soundly in one article and wrongly in another. Per-citation recording began recently, so a citation with no recorded check is a gap in the record rather than evidence it went unchecked.
See how references were verified.
Registry ID ref:cbdd19253a41 · see in the full table