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Gender-biased nectar targets different behavioural traits of flower visitors

机译:性别偏见的花蜜针对花游客的不同行为性状

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Floral nectar is a chemically complex aqueous solution within which several secondary metabolites have been identified that affect attractiveness for pollinators. Understanding preferences and aversions to nectar quality in flower visitors is crucial since this may influence the patterns of insect floral visitation with consequences on the plant fitness. We hypothesise that nectar chemical variation through different floral sexual phases may affect the number of insect visits that each phase receives. The study was realized on a population of Echium vulgare L. growing in a natural area close to Bologna. Nectar was collected from functionally male and female flowers to investigate its chemical composition through the HPLC technique. A total of 200 min of behavioural observations on foraging insects was also carried out. Variation in nectar traits has been detected for the amino acid spectrum. The proportion of protein amino acids appeared to be significantly higher in male-phase flowers. This may explain the significantly higher number of visits on male flowers than expected observed for all bee taxa (except Hoplitis adunca females). Functionally male flowers presented higher concentrations of phenylalanine, whilst proline was highly represented in functionally female flowers. Since a recent study demonstrated that hymenopterans can oxidize proline at a high rate for ATP production, we can hypothesise that the quality of nectar offered by the two sexually distinct floral phases targets different insect behavioural traits and likely ensures an optimal pattern of visit among flower sexes, which are unequally distributed within and among individuals in the population.
机译:花蜜是一种化学成分复杂的水溶液,其中有几种次级代谢物已被确定影响传粉者的吸引力。了解访花者对花蜜质量的偏好和厌恶是至关重要的,因为这可能会影响昆虫访花的模式,从而影响植物的适应性。我们假设花蜜在不同的花性阶段的化学变化可能会影响每个阶段的昆虫访问次数。这项研究是在博洛尼亚附近的一个自然区域中生长的一个普通棘球绦虫种群上实现的。采用高效液相色谱法从功能性雌雄花中采集花蜜,研究其化学成分。还对觅食昆虫进行了总共200分钟的行为观察。在氨基酸谱中检测到花蜜性状的变异。蛋白质氨基酸的比例在雄花期明显较高。这可能解释了所有蜜蜂分类群(除Hoplitis adunca雌蜂外)观察到的雄花数量明显高于预期的原因。功能性雄花的苯丙氨酸浓度较高,而功能性雌花的脯氨酸浓度较高。由于最近的一项研究表明,膜翅目昆虫能够以较高的速率氧化脯氨酸以产生ATP,因此我们可以假设,两个有性差异的花期提供的花蜜质量针对不同的昆虫行为特征,并可能确保花两性之间的最佳访问模式,这在种群中的个体内部和个体之间分布不均。

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