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11 results for “Kin discrimination”
Kin discrimination causes plastic responses in floral and clonal allocation
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Data from: Mechanisms of kin discrimination inferred from pedigrees and the spatial distribution of mates
Where animals avoid inbreeding, different mechanisms of kin discrimination can leave different "signatures" in the patterns of observed mate relationship. For example, consider a species with no paternal care. If females avoid mating with familiar individuals, one would expect a deficit of offspring whose parents are maternal half-siblings, but paternal half-siblings would be unfamiliar with each other and thus mate at the frequency expected by chance. If spatial cues are used to avoid inbreeding, females would be expected to produce few offspring with males (even unrelated males) living near the female's birth site. We searched for these and other signatures with data from a long-term study of bannertailed kangaroo rats Dipodomys spectabilis in Arizona, USA, using a combination of intensive censusing, mapping of available dens, microsatellite-based parentage determination, and a randomization routine that determines the numbers of offspring expected if females in the population mate indiscriminately among the males available to them. The data are consistent with the hypothesis that kangaroo rats discriminate kin by association, rather than by using spatial cues or self-referential phenotype matching. Our randomization routine also demonstrates that in this species, dispersal alone is not particularly effective at eliminating opportunities for inbreeding. Our approach can be applied wherever the spatial distribution of individual mates and their pedigree relationships are known, and should be widely applicable as a means of assessing the degree to which both kin recognition and dispersal influence inbreeding.
Data from: Kin discrimination and outer membrane exchange in Myxococcus xanthus: a comparative analysis among natural isolates
Genetically similar cells of the soil bacterium Myxococcus xanthus cooperate at multiple social behaviours, including motility and multicellular development. Another social interaction in this species is outer-membrane exchange (OME), a behaviour of unknown primary benefit in which cells displaying closely related variants of the outer-membrane protein TraA transiently fuse and exchange membrane contents. Functionally incompatible TraA variants do not mediate OME, which led to the proposal that TraA incompatibilities determine patterns of intercellular cooperation in nature, but how this might occur remains unclear. Using natural isolates from a centimetre-scale patch of soil, we analyse patterns of TraA diversity and ask whether relatedness at TraA is causally related to patterns of kin discrimination in the form of both colony-merger incompatibilities (CMIs) and inter-strain antagonisms. A large proportion of predicted TraA functional diversity documented among global isolates is contained within the cm-scale population. We find evidence of balancing selection on the PA14-portion of TraA and extensive transfer of traA alleles across genomic backgrounds. CMIs are shown to be common among strains identical at TraA, suggesting that CMI kin discrimination is not generally caused by TraA dissimilarity. Finally, it has been proposed that inter-strain antagonisms might be caused by OME-mediated toxin transfer. However, we find that most strain pairs exhibiting strong antagonisms are predicted to be incapable of OME due to TraA dissimilarity. Overall, our results suggest that documented patterns of kin discrimination in a defined natural population of M. xanthus are not causally related to the degree of TraA relatedness among interactants.
Data from: Kin discrimination via odour in the cooperatively breeding banded mongoose
Kin discrimination is often beneficial for group-living animals as it aids in inbreeding avoidance and providing nepotistic help. In mammals, the use of olfactory cues in kin discrimination is widespread and may occur through learning the scents of individuals that are likely to be relatives, or by assessing genetic relatedness directly through assessing odour similarity (phenotype matching). We use scent presentations to investigate these possibilities in a wild population of the banded mongoose Mungos mungo, a cooperative breeder in which inbreeding risk is high and females breed communally, disrupting behavioural cues to kinship. We find that adults show heightened behavioural responses to unfamiliar (extra-group) scents than to familiar (within-group) scents. Interestingly, we found that responses to familiar odours, but not unfamiliar odours, varied with relatedness. This suggests that banded mongooses are either able to use an effective behavioural rule to identify likely relatives from within their group, or that phenotype matching is used in the context of within-group kin recognition but not extra-group kin recognition. In other cooperative breeders, familiarity is used within the group and phenotype matching may be used to identify unfamiliar kin. However, for the banded mongoose this pattern may be reversed, most likely due to their unusual breeding system which disrupts within-group behavioural cues to kinship.
Data from: Kin association during brood care in a facultatively social bird: active discrimination or byproduct of partner choice and demography?
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Data from: Kin discrimination and outer membrane exchange in Myxococcus xanthus: a comparative analysis among natural isolates
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Data from: Mechanisms of kin discrimination inferred from pedigrees and the spatial distribution of mates
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Data from: Kin discrimination increases with odor distance in the German cockroach
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Data from: Kin discrimination via odour in the cooperatively breeding banded mongoose
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Data from: The biogeography of kin discrimination across microbial neighbourhoods
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Data from: Using playback of territorial calls to investigate mechanisms of kin discrimination in red squirrels
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