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Climate-driven increases in storm frequency simplify kelp forest food webs

机译:气候导致的风暴频率增加简化了海带森林食物网

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摘要

Climate models predict a dramatic increase in the annual frequency and severity of extreme weather events during the next century. Here we show that increases in the annual frequency of severe storms lead to a decrease in the diversity and complexity of food webs of giant kelp forests, one of the most productive habitats on Earth. We demonstrate this by linking natural variation in storms with measured changes in kelp forest food web structure in the Santa Barbara Channel using structural equation modeling (SEM). We then match predictions from statistical models to results from a multiyear kelp removal experiment designed to simulate frequent large storms. Both SEM models and experiments agree: if large storms remain at their current annual frequency (roughly one major kelp-removing storm every 3.5 years), periodic storms help maintain the complexity of kelp forest food webs. However, if large storms increase in annual frequency and begin to occur year after year, kelp forest food webs become less diverse and complex as species go locally extinct. The loss of complexity occurs primarily due to decreases in the diversity and complexity of higher trophic levels. Our findings demonstrate that shifts in climate-driven disturbances that affect foundation species are likely to have impacts that cascade through entire ecosystems.
机译:气候模型预测,下个世纪,极端天气事件的年发生频率和严重性将大大增加。在这里,我们表明,严重风暴的年频率增加导致巨型海带森林(地球上生产力最高的生境之一)的食物网的多样性和复杂性下降。我们通过使用结构方程模型(SEM)将风暴的自然变化与圣塔芭芭拉海峡的海带森林食物网结构的测量变化联系起来,证明了这一点。然后,我们将统计模型的预测结果与旨在模拟频繁的大风暴的多年海带清除实验的结果进行匹配。 SEM模型和实验都一致认为:如果大风暴仍保持在其当前的年度频率(每3.5年大约有一次大的海带清除风暴),则周期性风暴有助于保持海带森林食物网的复杂性。但是,如果大风暴的年频率增加并开始逐年出现,则海带森林食物网的多样性和复杂性就会降低,因为物种在当地已灭绝。复杂性的损失主要是由于较高营养级别的多样性和复杂性下降而造成的。我们的发现表明,影响基础物种的气候驱动干扰的变化可能会影响整个生态系统。

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