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Transitions and invasion along a grazing gradient in experimental California grasslands

机译:加利福尼亚实验草地沿放牧梯度的过渡和入侵

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Resilience-based frameworks, founded upon the existence of multiple attractors and regime shifts, have long been applied to complex dynamics of semiarid systems. Utilizing seed addition tests in experimental plantings along grazing gradients, we applied an increase-when-rare criterion to identify bidirectional (states can invade each other) and directional (only one state can invade) transitions among vegetation states characteristic of California grasslands over five years. Annual forage and medusahead grasslands were able to invade each other at all grazing intensities, indicating coexistence. Directional transitions involving invasion of native bunchgrass by other species occurred as grazing intensity increased; recovery (transitions to natives) did not occur at low grazing. While directional transitions at some grazing intensities were accompanied by state persistence at others, we found little evidence for persistence of alternative states at any grazing intensity. Our results suggest that grazing can affect resilience by causing hard-to-reverse transitions, but rarely produces alternative states. However, variation in precipitation seems to dominate grazing responses, supporting the applicability of the nonequilibrium concept in our study system.
机译:基于弹性的框架,建立在多个吸引子的存在和政权转移的基础上,长期以来一直应用于半干旱系统的复杂动力学。利用沿着放牧坡度的试验性种植中的种子添加试验,我们采用了“稀有时增加”标准,以识别加利福尼亚草原特征性植被状态之间的双向(状态可以互相入侵)和方向(仅一个状态可以入侵)过渡。一年生的牧草和medusahead草原能够在所有放牧强度下相互入侵,表明共存。随着放牧强度的增加,涉及其他物种入侵本地束草的方向性转变发生。低放牧时没有发生恢复(向本地人过渡)的情况。尽管在某些放牧强度下的方向性转变伴随着在其他放牧强度下的状态持久性,但我们几乎没有证据表明在任何放牧强度下替代状态的持久性。我们的结果表明,放牧可通过引起难以逆转的转变来影响弹性,但很少产生替代状态。但是,降水量的变化似乎主导了放牧反应,这支持了非平衡概念在我们研究系统中的适用性。

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