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The effects of inbreeding, genetic dissimilarity and phenotype on male reproductive success in a dioecious plant

机译:近亲繁殖,遗传差异和表型对雌雄异株植物雄性生殖成功的影响

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摘要

Pollen fate can strongly affect the genetic structure of populations with restricted gene flow and significant inbreeding risk. We established an experimental population of inbred and outbred Silene latifolia plants to evaluate the effects of (i) inbreeding depression, (ii) phenotypic variation and (iii) relatedness between mates on male fitness under natural pollination. Paternity analysis revealed that outbred males sired significantly more offspring than inbred males. Independently of the effects of inbreeding, male fitness depended on several male traits, including a sexually dimorphic (flower number) and a gametophytic trait (in vitro pollen germination rate). In addition, full-sib matings were less frequent than randomly expected. Thus, inbreeding, phenotype and genetic dissimilarity simultaneously affect male fitness in this animal-pollinated plant. While inbreeding depression might threaten population persistence, the deficiency of effective matings between sibs and the higher fitness of outbred males will reduce its occurrence and counter genetic erosion.
机译:花粉的命运会严重影响基因流受限和近交风险的人群的遗传结构。我们建立了自交和近交Silet latifolia植物的实验种群,以评估(i)近交抑郁,(ii)表型变异和(iii)配偶之间的亲缘关系对自然授粉下雄性适应的影响。亲子关系分析显示,与自交系雄性相比,近交系雄性对后代的需求明显更多。独立于近亲繁殖的影响,雄性适应度取决于几种雄性性状,包括性二形性(花序数)和配子体质性状(体外花粉萌发率)。此外,同胞交配的频率低于随机预期。因此,近亲繁殖,表型和遗传差异同时影响了这种动物授粉植物的雄性适应性。尽管近交性抑郁症可能威胁到种群的持久性,同胞之间缺乏有效的交配以及近交雄性的适应性较高,将减少其发生并抵抗遗传侵蚀。

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