首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Synchrony between fruit maturation and effective dispersers foraging activity increases seed protection against seed predators
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Synchrony between fruit maturation and effective dispersers foraging activity increases seed protection against seed predators

机译:水果成熟与有效分散器觅食活动之间的同步提高了种子对种子天敌的保护

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摘要

The evolution of pollination and seed dispersal mutualisms is conditioned by the spatial and temporal co-occurrence of animals and plants. In the present study we explore the timing of seed release of a myrmecochorous plant (Helleborus foetidus) and ant activity in two populations in southern Spain during 2 consecutive years. The results indicate that fruit dehiscence and seed shedding occur mostly in the morning and correspond to the period of maximum foraging activity of the most effective ant dispersers. By contrast, ant species that do not transport seeds and/or that do not abound near the plants are active either before or after H. foetidus diaspores are released. Experimental analysis of diet preference for three kinds of food shows that effective ant dispersers are mostly scavengers that readily feed on insect corpses and sugars. Artificial seed depots suggest that seeds deposited on the ground out of the natural daily time window of diaspore releasing are not removed by ants and suffer strong predation by nocturnal rodents Apodemus sylvaticus. Nevertheless, important inter-annual variations in rodent populations cast doubts on their real importance as selection agents. We argue that traits allowing synchrony between seed presentation and effective partners may constitute a crucial pre-adaptation for the evolution of plant–animal mutualisms involving numerous animal partners.
机译:授粉和种子传播共生的进化取决于动植物的时空共存。在本研究中,我们探索了西班牙南部南部两个种群中的一种食肉食性植物(Helleborus foetidus)的种子释放时间和蚂蚁活性,连续两年。结果表明,果实开裂和种子脱落主要发生在早晨,这与最有效的蚂蚁分散剂的最大觅食活动时期相对应。相比之下,不转运种子和/或在植物附近不富集的蚂蚁物种在释放臭椿H. foetidus diaspores之前或之后都具有活性。对三种食物的饮食偏好进行的实验分析表明,有效的蚂蚁分散剂主要是清除剂,它们容易以昆虫的尸体和糖为食。人工种子仓库表明,沉积在地膜释放的自然每日时间窗口之外的地面上的种子不会被蚂蚁去除,并且会受到夜间啮齿动物姬鼠的强烈捕食。然而,啮齿动物种群的重要年度间变化使人们怀疑它们作为选择剂的真正重要性。我们认为,允许种子表现和有效伴侣之间同步的性状可能构成了涉及众多动物伴侣的植物-动物共生关系进化的关键预适应。

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