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干扰 regime 与生活史进化。

Disturbance regimes and life-history evolution.

作者信息

Lytle D A

机构信息

Department of Entomology and Field of Ecology & Evolutionary Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Am Nat. 2001 May;157(5):525-36. doi: 10.1086/319930.

Abstract

Disturbance regimes are ecologically important, but many of their evolutionary consequences are poorly understood. A model is developed here that combines the within- and among-season dynamics of disturbances with evolutionary life-history theory. "Disturbance regime" is defined in terms of disturbance timing, frequency, predictability, and severity. The model predicts the optimal body size and time at which organisms should abandon a disturbance-prone growth habitat by maturing and moving to a disturbance-free, nongrowth habitat. The effects of both coarse-grained (those affecting the entire population synchronously) and fine-grained disturbances (those occurring in a patch dynamics setting) are explored. Several predictions are congruent with previous theory. Infrequent or temporally unpredictable disturbances should have little effect on the evolution of life-history strategies, even though they may cause high mortality. Similar to seasonal time constraints on reproduction, disturbance regimes can synchronize metamorphosis within a population, resulting in a seasonal decline in body size at maturity. Other model predictions are novel. When disturbances cause high mortality, coarse-grained disturbances have a much stronger effect on life-history strategies than fine-grained disturbances, suggesting that population structure (relative to the scale of disturbance) plays a critical evolutionary role when disturbances are severe. When within-population variance in juvenile body size is high, two consecutive seasonal declines in body size at maturity can occur, the first associated with disturbance regime and the second associated with seasonal time constraints.

摘要

干扰格局在生态学上具有重要意义,但其许多进化后果却鲜为人知。本文构建了一个模型,将干扰的季节内和季节间动态与进化生活史理论相结合。“干扰格局”是根据干扰时间、频率、可预测性和严重程度来定义的。该模型预测了生物体通过成熟并迁移到无干扰的非生长栖息地而应放弃易受干扰的生长栖息地的最佳体型和时间。同时探讨了粗粒度干扰(那些同步影响整个种群的干扰)和细粒度干扰(那些在斑块动态环境中发生的干扰)的影响。有几个预测与先前的理论一致。不频繁或时间上不可预测的干扰对生活史策略的进化影响不大,尽管它们可能导致高死亡率。与繁殖的季节性时间限制类似,干扰格局可以使种群内的变态同步,导致成熟时体型的季节性下降。其他模型预测则是新颖的。当干扰导致高死亡率时,粗粒度干扰对生活史策略的影响比细粒度干扰大得多,这表明当干扰严重时,种群结构(相对于干扰规模)起着关键的进化作用。当幼体体型的种群内方差较高时,成熟时体型可能会连续两个季节下降,第一个与干扰格局有关,第二个与季节性时间限制有关。

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