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检验简森-康奈尔机制:病原体导致热带树木过度补偿密度依赖。

Testing the Janzen-Connell mechanism: pathogens cause overcompensating density dependence in a tropical tree.

机构信息

Department of Zoology, University of Oxford, Oxford, OX1 3PS, UK Department of Animal and Plant Science, University of Sheffield, Sheffield S102TN, UK.

出版信息

Ecol Lett. 2010 Oct;13(10):1262-9. doi: 10.1111/j.1461-0248.2010.01520.x. Epub 2010 Aug 16.

Abstract

The Janzen-Connell hypothesis is a leading explanation for plant-species diversity in tropical forests. It suggests that specialized natural enemies decrease offspring survival at high densities beneath parents, giving locally rarer species an advantage. This mechanism, in its original form, assumes that density dependence is overcompensating: mortality must be disproportionately high at the highest densities, with few offspring recruiting below their parents. We tested this assumption using parallel shadehouse and field density-series experiments on seedlings of a tropical tree, Pleradenophora longicuspis. We found strong, overcompensating mortality driven by fungal pathogens, causing 90% (shadehouse) or 100% (field) mortality within 4 weeks of germination, and generating a negative relationship between initial and final seedling densities. Fungicide treatment led to much lower, density-independent, mortality. Overcompensating mortality was extremely rapid, and could be missed without detailed monitoring. Such dynamics may prevent dead trees from being replaced by conspecifics, promoting coexistence as envisioned by the Janzen-Connell hypothesis.

摘要

詹森-康奈尔假说(Janzen-Connell hypothesis)是解释热带森林植物物种多样性的主要假说。该假说认为,专门的天敌会降低父母庇佑下的后代存活率,从而使局部较为稀有的物种具有优势。在其原始形式中,该机制假设密度依赖性是过度补偿的:在最高密度下,死亡率必须不成比例地高,很少有后代在其父母下方繁殖。我们使用热带树木 Pleteradenophora longicuspis 的幼苗进行了平行的遮荫棚和野外密度系列实验,以此来检验这一假设。我们发现,由真菌病原体驱动的强烈的、过度补偿的死亡率导致在发芽后 4 周内,90%(遮荫棚)或 100%(野外)的死亡率,并且初始和最终幼苗密度之间存在负相关关系。杀菌剂处理导致死亡率大大降低,与密度无关。过度补偿的死亡率非常迅速,如果没有详细监测,可能会被忽略。这种动态可能会阻止死树被同种类的树木所取代,从而促进詹森-康奈尔假说所设想的共存。

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