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来源类型Article
规范类型其他
DOI10.1111/evo.12068
Single-gene speciation with pleiotropy: Effects of allele dominance, population size, and delayed inheritance.
Yamamichi M; Sasaki A
发表日期2013
出处Evolution 67 (7): 2011-2023
出版年2013
语种英语
摘要Single-gene speciation is considered to be unlikely, but an excellent example is found in land snails, in which a gene for left-right reversal has given rise to new species multiple times. This reversal might be facilitated by their small population sizes and maternal effect (i.e., "delayed inheritance," in which an individual's phenotype is determined by the genotype of its mother). Recent evidence suggests that a pleiotropic effect of the speciation gene on antipredator survival may also promote speciation. Here we theoretically demonstrate that, without a pleiotropic effect, in small populations the fixation probability of a recessive mutant is higher than a dominant mutant, but they are identical for large populations and sufficiently weak selection. With a pleiotropic effect that increases mutant viability, a dominant mutant has a higher fixation probability if the strength of viability selection is sufficiently greater than that of reproductive incompatibility, whereas a recessive mutant has a higher fixation probability otherwise. Delayed inheritance increases the fixation probability of a mutant if viability selection is sufficiently weaker than reproductive incompatibility. Our results clarify the conflicting effects of viability selection and positive frequency-dependent selection due to reproductive incompatibility and provide a new perspective to single-gene speciation theory.
主题Evolution and Ecology (EEP)
关键词Ecological speciation Fixation probability Magic trait Maternal effect Positive frequency-dependent selection Speciation gene
URLhttp://pure.iiasa.ac.at/id/eprint/10482/
来源智库International Institute for Applied Systems Analysis (Austria)
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资源类型智库出版物
条目标识符http://119.78.100.153/handle/2XGU8XDN/129795
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Yamamichi M,Sasaki A. Single-gene speciation with pleiotropy: Effects of allele dominance, population size, and delayed inheritance.. 2013.
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