Phenotypic plasticity in sex allocation and body size leads to trade-offs between male function and growth in a simultaneously hermaphroditic fish
Author:
Funder
Smithsonian Tropical Research Institute
University of Kentucky
Publisher
Springer Science and Business Media LLC
Subject
Ecology, Evolution, Behavior and Systematics
Link
http://link.springer.com/content/pdf/10.1007/s10682-015-9804-5.pdf
Reference38 articles.
1. Brauer VS, Schärer L, Michiels NK (2007) Phenotypically flexible sex allocation in a simultaneous hermaphrodite. Evolution 61:216–222
2. Cadet C, Metz JA, Klinkhamer PGL (2004) Size and the not-so-single sex: disentangling the effects of size and budget on sex allocation in hermaphrodites. Am Nat 164:779–792
3. Charnov EL (1979) Simultaneous hermaphroditism and sexual selection. Proc Natl Acad Sci USA 76:2480–2484
4. Charnov EL (1982) The theory of sex allocation. Princeton University Press, Princeton
5. Charnov EL, Bull JJ, Smith JM (1976) Why be a hermaphrodite? Nature 263:125–126
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1. Simultaneous Hermaphroditism in Fishes;Hermaphroditism and Mating Systems in Fish;2022-12-14
2. Sexual Selection and Mixed Sex Expression: Adolescent Protandry, Phenotypic Tradeoffs and ‘Unconventional' Sex Allocation Estimates in a Protandric-Simultaneous Hermaphrodite;Frontiers in Marine Science;2018-08-28
3. Partner fidelity and reciprocal investments in the mating system of a simultaneous hermaphrodite;Behavioral Ecology;2016
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