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Under such an adaptive hypothesis for the loss of the SlWUS1Y copy, dosage compensation would not be predicted to evolve for the SlWUS1 gene.
In this case, all else being equal, correlated effects on fecundity may slow the short-term response to selection for resistance only when food is limiting, while if food were not limiting, these traits would be predicted to evolve independently.
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Male mate choice is predicted to evolve as male investment in mating increases.
Cooperation is predicted to evolve more readily when cooperators can assort with one another and exclude non-cooperators [1], [2], [3].
Since individuals are selected to maximize their fitness, they are predicted to evolve a decision-making process that will be the most adaptive under given ecological and socio-biological constraints.
According to the red queen hypothesis, fungal pathogen effectors are predicted to evolve rapidly.
In particular, X-linked genes are predicted to evolve imprinting effects according to the haplodiploid pattern.
Cooperation is predicted to evolve more easily when social partners are genetically related [ 1- 5].
Under these conditions, metabolic changes that favor survival in depauperate caves are predicted to evolve [ 3, 22].
Interestingly however, when the trade-off between virulence and spore load was considered to be low or non-existent in the model, runaway virulence was predicted to evolve.
These traits are predicted to evolve prior to any alterations to the C4 acid decarboxylase enzymes that traditionally define these sub-types (Furbank, 2011).
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