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首页> 外文期刊>Ecology and Evolution >Size advantage for male function and size‐dependent sex allocation in Ambrosia artemisiifolia , a wind‐pollinated plant
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Size advantage for male function and size‐dependent sex allocation in Ambrosia artemisiifolia , a wind‐pollinated plant

机译:风铃花植物Ambrosia artemisiifolia中男性功能的大小优势和大小依赖性的性别分配

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摘要

In wind‐pollinated plants, male‐biased sex allocation is often positively associated with plant size and height. However, effects of size (biomass or reproductive investment) and height were not separated in most previous studies. Here, using experimental populations of monoecious plants, Ambrosia altemisiifolia, we examined (1) how male and female reproductive investments (MRI and FRI) change with biomass and height, (2) how MRI and height affect male reproductive success (MRS) and pollen dispersal, and (3) how height affects seed production. Pollen dispersal kernel and selection gradients on MRS were estimated by 2,102 seeds using six microsatellite markers. First, MRI increased with height, but FRI did not, suggesting that sex allocation is more male‐biased with increasing plant height. On the other hand, both MRI and FRI increased with biomass but often more greatly for FRI, and consequently, sex allocation was often female‐biased with biomass. Second, MRS increased with both height and MRI, the latter having the same or larger effect on MRS. Estimated pollen dispersal kernel was fat‐tailed, with the maximum distance between mates tending to increase with MRI but not with height. Third, the number of seeds did not increase with height. Those findings showed that the male‐biased sex allocation in taller plants of A.?artemisiifolia is explained by a direct effect of height on MRS.
机译:在风媒植物中,男性偏向的性别分配通常与植物的大小和高度成正相关。但是,在大多数先前的研究中,大小(生物量或生殖投资)和身高的影响并未分开。在这里,我们使用雌雄同株的实验种群,即Ambrosia altemisiifolia,研究了(1)雄性和雌性生殖投资(MRI和FRI)如何随生物量和高度变化;(2)MRI和高度如何影响雄性生殖成功(MRS)和花粉。扩散,以及(3)高度如何影响种子产量。使用6个微卫星标记,通过2,102粒种子估算了MRS上的花粉散布籽粒和选择梯度。首先,MRI随着身高的增加而增加,但FRI却没有,这表明性别分配随着植物高度的增加而更倾向于男性。另一方面,MRI和FRI随生物量的增加而增加,但对于FRI则往往更大,因此,性别分配常常受生物量的女性偏见。其次,MRS随高度和MRI升高而增加,后者对MRS的影响相同或更大。估计的花粉扩散核是肥尾的,配偶之间的最大距离倾向于随着MRI的增加而增加,而不随高度的增加而增加。第三,种子数量没有随着高度增加而增加。这些发现表明,高度偏高的MRS直接解释了青蒿高等植物中雄性的性别分配。

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