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Plant survival and keystone pollinator species in stochastic coextinction models: role of intrinsic dependence on animal-pollination

机译:随机共存模型中的植物存活和关键传粉媒介物种:内源性依赖于动物授粉的作用

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摘要

Coextinction models are useful to understand community robustness to species loss and resilience to disturbances. We simulated pollinator extinctions in pollination networks by using a hybrid model that combined a recently developed stochastic coextinction model (SCM) for plant extinctions and a topological model (TCM) for animal extinctions. Our model accounted for variation in interaction strengths and included empirical estimates of plant dependence on pollinators to set seeds. The stochastic nature of such model allowed us determining plant survival to single (and multiple) extinction events, and identifying which pollinators (keystone species) were more likely to trigger secondary extinctions. Consistently across three different pollinator removal sequences, plant robustness was lower than in a pure TCM, and plant survival was more determined by dependence on the mutualism than by interaction strength. As expected, highly connected and dependent plants were the most sensitive to pollinator loss and collapsed faster in extinction cascades. We predict that the relationship between dependence and plant connectivity is crucial to determine network robustness to interaction loss. Finally, we showed that honeybees and several beetles were keystone species in our communities. This information is of great value to foresee consequences of pollinator losses facing current global change and to identify target species for effective conservation.
机译:共灭模型对于了解群落对物种丧失的鲁棒性和对干扰的抵抗力很有用。我们使用混合模型模拟了授粉网络中的传粉媒介灭绝,该模型结合了最近开发的用于植物灭绝的随机共灭绝模型(SCM)和用于动物灭绝的拓扑模型(TCM)。我们的模型考虑了相互作用强度的变化,并包括了植物对授粉媒介结实种子的依赖的经验估计。这种模型的随机性使我们能够确定单个(和多个)灭绝事件的植物存活率,并确定哪些传粉媒介(关键物种)更可能引发二次灭绝。在三个不同的授粉媒介去除序列上,植物的健壮性均低于纯中药,而植物的存活更取决于对互惠的依赖,而不是相互作用的强度。正如预期的那样,高度联系和依赖的植物对传粉媒介丧失最敏感,并且在灭绝级联中倒塌得更快。我们预测依赖性和工厂连接性之间的关系对于确定网络对交互损失的鲁棒性至关重要。最后,我们证明了蜜蜂和几只甲虫是我们社区中的关键物种。该信息对于预见当前全球变化所面临的传粉媒介损失后果以及确定有效保护的目标物种具有重要价值。

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