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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >The effect of autocorrelation in environmental variability on the persistence of populations: an experimental test.
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The effect of autocorrelation in environmental variability on the persistence of populations: an experimental test.

机译:环境变量中自相关对种群持久性的影响:一项实验测试。

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摘要

Despite its significance regarding the conservation and management of biological resources, the body of theory predicting that the correlation between successive environmental states can profoundly influence extinction has not been empirically validated. Identical clonal populations from a model experimental system based on the collembolan Folsomia candida were used in the present study to investigate the effect of environmental autocorrelation on time to extinction. Environmental variation was imposed by variable implementation (present/absent) of a culling procedure according to treatments that represented six patterns of environmental autocorrelation. The average number of culling events was held constant across treatments but, as environmental autocorrelation increased, longer runs of both favourable and unfavourable culling tended to occur. While no difference was found among the survival functions for the various treatments, the time taken for 50% of the component populations to become extinct decreased significantly with increasing environmental autocorrelation. Similarly, analysis of all extinct populations demonstrated that time to extinction was shortened as environmental autocorrelation increased. However, this acceleration of extinction can be fully offset if sequential introduction is used in place of simultaneous introduction when founding the populations.
机译:尽管在保护和管理生物资源方面具有重要意义,但理论上的预测表明,连续的环境状态之间的相关性可以对灭绝产生深远的影响,这一理论尚未得到经验验证。在本研究中,使用了基于Collembolan念珠菌Folsomia candida的模型实验系统的相同克隆种群,以研究环境自相关对灭绝时间的影响。根据代表六种环境自相关模式的处理方法,通过剔除程序的可变实施(存在/不存在)来施加环境变化。各处理之间的平均剔除事件数量保持不变,但是,随着环境自相关性的提高,有利和不利的剔除趋向于发生更长的时间。虽然在各种处理的存活功能之间没有发现差异,但是随着环境自相关性的提高,50%的组分种群灭绝所需的时间显着减少。同样,对所有灭绝种群的分析表明,随着环境自相关的增加,灭绝时间缩短。但是,如果在建立种群时使用顺序引入代替同时引入,则灭绝的加速可以完全抵消。

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