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      Sex‐biased dispersal: a review of the theory

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          ABSTRACT

          Dispersal is ubiquitous throughout the tree of life: factors selecting for dispersal include kin competition, inbreeding avoidance and spatiotemporal variation in resources or habitat suitability. These factors differ in whether they promote male and female dispersal equally strongly, and often selection on dispersal of one sex depends on how much the other disperses. For example, for inbreeding avoidance it can be sufficient that one sex disperses away from the natal site. Attempts to understand sex‐specific dispersal evolution have created a rich body of theoretical literature, which we review here. We highlight an interesting gap between empirical and theoretical literature. The former associates different patterns of sex‐biased dispersal with mating systems, such as female‐biased dispersal in monogamous birds and male‐biased dispersal in polygynous mammals. The predominant explanation is traceable back to Greenwood's ( 1980) ideas of how successful philopatric or dispersing individuals are at gaining mates or the resources required to attract them. Theory, however, has developed surprisingly independently of these ideas: models typically track how immigration and emigration change relatedness patterns and alter competition for limiting resources. The limiting resources are often considered sexually distinct, with breeding sites and fertilizable females limiting reproductive success for females and males, respectively. We show that the link between mating system and sex‐biased dispersal is far from resolved: there are studies showing that mating systems matter, but the oft‐stated association between polygyny and male‐biased dispersal is not a straightforward theoretical expectation. Here, an important understudied factor is the extent to which movement is interpretable as an extension of mate‐searching (e.g. are matings possible en route or do they only happen after settling in new habitat – or can females perhaps move with stored sperm). We also point out other new directions for bridging the gap between empirical and theoretical studies: there is a need to build Greenwood's influential yet verbal explanation into formal models, which also includes the possibility that an individual benefits from mobility as it leads to fitness gains in more than one final breeding location (a possibility not present in models with a very rigid deme structure). The order of life‐cycle events is likewise important, as this impacts whether a departing individual leaves behind important resources for its female or male kin, or perhaps both, in the case of partially overlapping resource use.

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          Most cited references112

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          Extraordinary Sex Ratios

          W Hamilton (1967)
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            Diversity and the Coevolution of Competitors, or the Ghost of Competition Past

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              How Does It Feel to Be Like a Rolling Stone? Ten Questions About Dispersal Evolution

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                Author and article information

                Contributors
                xiangyi.li@ieu.uzh.ch
                Journal
                Biol Rev Camb Philos Soc
                Biol Rev Camb Philos Soc
                10.1111/(ISSN)1469-185X
                BRV
                Biological Reviews of the Cambridge Philosophical Society
                Blackwell Publishing Ltd (Oxford, UK )
                1464-7931
                1469-185X
                24 October 2018
                April 2019
                : 94
                : 2 ( doiID: 10.1111/brv.2019.94.issue-2 )
                : 721-736
                Affiliations
                [ 1 ] Department of Evolutionary Biology and Environmental Studies University of Zurich, Winterthurerstrasse 190, CH‐8057 Zurich Switzerland
                Author notes
                [*] [* ]Address for correspondence (Tel: +41 (0)79 354 44 75; E‐mail: xiangyi.li@ 123456ieu.uzh.ch ).
                Author information
                http://orcid.org/0000-0001-8662-0865
                Article
                BRV12475
                10.1111/brv.12475
                7379701
                30353655
                9fda0818-b1a8-45b2-95f8-a6ec5009ecb2
                © 2018 The Authors. Biological Reviews published by John Wiley & Sons Ltd on behalf of Cambridge Philosophical Society.

                This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.

                History
                : 17 January 2018
                : 24 September 2018
                : 27 September 2018
                Page count
                Figures: 1, Tables: 0, Pages: 16, Words: 16100
                Funding
                Funded by: Swiss National Science Foundation , open-funder-registry 10.13039/501100001711;
                Categories
                Original Article
                Original Articles
                Custom metadata
                2.0
                April 2019
                Converter:WILEY_ML3GV2_TO_JATSPMC version:5.8.5 mode:remove_FC converted:24.07.2020

                Ecology
                ghost of competition past,inbreeding,kin selection,local mate competition,local resource competition,mathematical modelling,mating systems,philopatry,sexual dimorphism,sex ratio

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