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Critical transitions in rainfall manipulation experiments on grasslands

机译:草原降雨操纵实验中的关键转变

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As a result of climate and land‐use changes, grasslands have been subjected to intensifying drought regimes. Extreme droughts could interfere in the positive feedbacks between grasses and soil water content, pushing grasslands across critical thresholds of productivity and leading them to collapse. If this happens, systems may show hysteresis and costly management interventions might be necessary to restore predrought productivity. Thus, neglecting critical transitions may lead to mismanagement of grasslands and to irreversible loss of ecosystem services. Rainfall manipulation experiments constitute a powerful approach to investigate the risk of such critical transitions. However, experiments performed to date have rarely applied extreme droughts and have used resilience indices that disregard the existence of hysteresis. Here, we suggest how to incorporate critical transitions when designing rainfall manipulation experiments on grasslands and when measuring their resilience to drought. The ideas presented here have the potential to trigger a perspective shift among experimental researchers, into a new state where the existence of critical transitions will be discussed, experimentally tested, and largely considered when assessing and managing vegetation resilience to global changes.
机译:由于气候和土地利用变化,草原已经受到强化干旱制度。极端干旱可能会干扰草和土壤含水量之间的积极反馈,推动草原,跨越生产率的临界阈值,导致它们崩溃。如果发生这种情况,系统可能会显示滞后和昂贵的管理干预,以恢复预先生产力。因此,忽略关键过渡可能导致草原的不可逆转的生态系统服务不可逆转。降雨处理实验构成了调查临界过渡风险的强大方法。然而,迄今为止执行的实验很少应用极端干旱,并使用忽视滞后存在的韧性指数。在这里,我们建议如何在草原上设计降雨操纵实验时纳入关键过渡,并在测量其对干旱的弹性时。这里提出的想法有可能触发实验研究人员之间的透视偏移,进入一个新的状态,将在评估和管理植被适应全球变化时进行实验测试,并在很大程度上考虑并在很大程度上考虑。

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