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Variation in paternity in the field cricket Teleogryllus oceanicus: no detectable influence of sperm numbers or sperm length
Authors:Simmons  Leigh W; Wernham  Julie; Garcia-Gonzalez  Francisco; Kamien  Dan
Institution:a Evolutionary Biology Research Group, Department of Zoology, The University of Western Australia, Nedlands 6009, Western Australia b Departamento de Ecología Evolutiva, Museo Nacional de Ciencias Naturales (CSIC), C/José Gutiérrez Abascal, 2. Madrid 28006, Spain
Abstract:Recent attention has focused on the role that sperm competitionmay play in the evolution of sperm morphology. Theoretical analysespredict increased sperm size, decreased sperm size, and no changein sperm size in response to sperm competition, depending onthe assumptions made concerning the life history and functionof sperm. However, although there is good evidence that spermmorphology varies widely within and between species, the adaptivesignificance of this variation has not been examined. Here wedocument significant intraspecific variation in sperm lengthin the field cricket, Teleogryllus oceanicus. Sperm length didnot influence the rate of migration of sperm from the spermatophoreto the female's spermatheca. We performed sperm competitiontrials in which we varied the numbers of sperm transferred byeach of two males that differed in the length of sperm theyproduced. Neither sperm length nor the number of sperm transferredinfluenced paternity. The same results were obtained using twodifferent methods for assigning paternity. The distributionof paternity across a female's mates was highly variable, withfrequently one, or more in the case of females mated to fourmales, principal sire. There were no mating order effects onpaternity. These data show that sperm do not mix randomly inthe female's spermatheca. We discuss several alternative explanationsfor the patterns of paternity observed.
Keywords:crickets  paternity  sperm length  sperm competition success  sperm numbers  Teleogryllus oceanicus  
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