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大型溞雌体根据当前的性别比例和密度来调整其性分配。

Daphnia females adjust sex allocation in response to current sex ratio and density.

机构信息

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Winterthurerstrasse 190, CH-8057, Zurich, Switzerland.

Tvärminne Zoological Station, J.A. Palmenintie 260, 10900, Hanko, Finland.

出版信息

Ecol Lett. 2018 May;21(5):629-637. doi: 10.1111/ele.12929. Epub 2018 Feb 26.

Abstract

Cyclical parthenogenesis presents an interesting challenge for the study of sex allocation, as individuals' allocation decisions involve both the choice between sexual and asexual reproduction, and the choice between sons and daughters. Male production is therefore expected to depend on ecological and evolutionary drivers of overall investment in sex, and those influencing male reproductive value during sexual periods. We manipulated experimental populations, and made repeated observations of natural populations over their growing season, to disentangle effects of population density and the timing of sex from effects of adult sex ratio on sex allocation in cyclically parthenogenetic Daphnia magna. Male production increased with population density, the major ecological driver of sexual reproduction; however, this response was dampened when the population sex ratio was more male-biased. Thus, in line with sex ratio theory, we show that D. magna adjust offspring sex allocation in response to the current population sex ratio.

摘要

周期性孤雌生殖为研究性别分配带来了一个有趣的挑战,因为个体的分配决策既涉及到有性和无性繁殖之间的选择,也涉及到儿子和女儿之间的选择。因此,人们预计雄性的产生将取决于对性投资的整体生态和进化驱动因素,以及在有性期间影响雄性生殖价值的因素。我们操纵了实验种群,并在其生长季节对自然种群进行了多次观察,以区分种群密度和性成熟时间对周期性孤雌生殖的大型溞的性别分配的影响。雄性的产生随着性繁殖的主要生态驱动因素——种群密度的增加而增加;然而,当种群性别比例更偏向雄性时,这种反应就会减弱。因此,与性别比例理论一致,我们表明大型溞会根据当前的种群性别比例来调整后代的性别分配。

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