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首页> 外文期刊>Journal of evolutionary biology >Egg load is a cue for offspring sex ratio adjustment in a fig-pollinating wasp with male-eggs-first sex allocation
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Egg load is a cue for offspring sex ratio adjustment in a fig-pollinating wasp with male-eggs-first sex allocation

机译:鸡蛋载是一种用于后代性别比率调整的提示,其授粉与男性蛋 - 第一性别分配

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摘要

Fig-pollinating wasps (Agaonidae) only reproduce within fig tree inflorescences (figs). Agaonid offspring sex ratios are usually female-biased and often concur with local mate competition theory (LMC). LMC predicts less female-bias when several foundresses reproduce in a fig due to reduced relatedness among intra-sexually competing male offspring. Clutch size, the offspring produced by each foundress, is a strong predictor of agaonid sex ratios and correlates negatively with foundress number. However, clutch size variation can result from several processes including egg load (eggs within a foundress), competition among foundresses and oviposition site limitation, each of which can be used as a sex allocation cue. We introduced into individual Ficus racemosa figs single Ceratosolen fusciceps foundresses and allowed each to oviposit from zero to five hours thus variably reducing their eggs-loads and then introduced each wasp individually into a second fig. Offspring sex ratio (proportion males) in second figs correlated negatively with clutch size, with males produced even in very small clutches. Ceratosolen fusciceps lay mainly male eggs first and then female eggs. Our results demonstrate that foundresses do not generally lay or attempt to lay a 'fixed' number of males, but do 'reset to zero' their sex allocation strategy on entering a second fig. With decreasing clutch size, gall failure increased, probably due to reduced pollen. We conclude that C. fusciceps foundresses can use their own egg loads as a cue to facultatively adjust their offspring sex ratios and that foundresses may also produce more 'insurance' males when they can predict increasing rates of offspring mortality.
机译:无花果授粉WASPS(Agaonidae)仅在无花果中重现(图)。 Agaonid后代性别比率通常是女性偏见的,通常与当地伴侣竞争理论(LMC)同意。当由于性竞争性雄性后代的相关性降低,LMC预测在图中的几个基础中重现时较少的女性偏差。离合器尺寸是每个领域生产的后代,是agaonid性别比的强烈预测因子,与基础数量负相关。然而,离合器尺寸变化可能是由包括鸡蛋载荷(鸡蛋内的鸡蛋)的过程产生的,基础和产卵站点的竞争,每个过程都可以用作性分配提示。我们介绍进入单个Ficus HACEMOSA无花果单豆荚肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肌肉。从而可变地减少它们的卵载荷,然后单独地将每个黄蜂分别引入第二图。第二个图中的后代性别比(比例雄性)与离合器尺寸负相关,即使在非常小的离合器中也产生的雄性。 Ceratosolen Fusciceps首先奠定了男性鸡蛋然后女性鸡蛋。我们的结果表明,基础通常不会铺设或试图奠定“固定”的男性数量,而是将“重置为零”他们的性分配策略进入第二个图。随着离合器尺寸的降低,肝脏失效增加,可能是由于花粉减少。我们得出结论,C. fusciceps的基础可以使用自己的鸡蛋负荷作为一个提示,以便突然调整他们的后代性别比率,并且当他们可以预测后代死亡率的增加的速度时,建筑也可能会产生更多的“保险”男性。

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