Kirchner James W
Department of Earth and Planetary Science, University of California, Berkeley 94720-4767, USA.
Nature. 2002 Jan 3;415(6867):65-8. doi: 10.1038/415065a.
The dynamics of extinction and diversification determine the long-term effects of extinction episodes. If rapid bursts of extinction are offset by equally rapid bursts of diversification, their biodiversity consequences will be transient. But if diversification rates cannot accelerate rapidly enough, pulses of extinction will lead to long-lasting depletion of biodiversity. Here I use spectral analysis of the fossil record to test whether diversification rates can accelerate as much as extinction rates, over both short and long spans of geological time. I show that although the long-wavelength variability of diversification rates equals or exceeds that of extinctions, diversification rates are markedly less variable than extinction rates at wavelengths shorter than roughly 25 million years. This implies that there are intrinsic speed limits that constrain how rapidly diversification rates can accelerate in response to pulses of extinction.
灭绝和物种多样化的动态变化决定了灭绝事件的长期影响。如果快速的灭绝爆发被同样快速的物种多样化爆发所抵消,那么它们对生物多样性的影响将是短暂的。但如果物种多样化速率无法足够迅速地加速,灭绝脉冲将导致生物多样性的长期消耗。在此,我利用化石记录的频谱分析来检验在地质时间的短期和长期跨度内,物种多样化速率是否能像灭绝速率一样加速。我发现,尽管物种多样化速率的长波长变异性等于或超过灭绝速率的长波长变异性,但在波长小于约2500万年时,物种多样化速率的变异性明显小于灭绝速率。这意味着存在内在的速度限制,制约着物种多样化速率响应灭绝脉冲时能够加速的速度。