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增强的食草作用对鸡眼草的种群水平影响:对生物防治的启示

Population-level effects of augmented herbivory on Lespedeza cuneata: implications for biological control.

作者信息

Schutzenhofer Michele R, Knight Tiffany M

机构信息

Department of Biology, Saint Louis University, 3507 Laclede Avenue, St. Louis, Missouri 63103, USA.

出版信息

Ecol Appl. 2007 Jun;17(4):965-71. doi: 10.1890/06-1282.

Abstract

Invasive species pose significant ecological costs, and therefore successful management techniques are important. One commonly employed method is biological control. The success of biological control depends largely on whether additional inflicted damage can successfully reduce the fitness and population growth rate of a target species. Here, we simulate herbivory on the invasive Lespedeza cuneata and create stage-structured projection models to determine if augmented herbivory by a leaf-chewing biological control agent would regulate the population growth rate of this species. We found that augmented herbivory influenced stage transitions of plants in the smallest stage class, causing higher mortality and reduced growth. No other effect was found on stage transitions or fecundities, despite manipulation of herbivory at exceptionally high levels (up to 80% leaf loss). None of the clipping treatments significantly reduced the population growth rate of L. cuneata. We conclude that biological control by a leaf chewing herbivore would not likely be successful, even if an exceptionally large amount of each plant were consumed. We suggest that this approach, a combination of simulated herbivory and demographic modeling, will provide essential information for understanding the utility of biological control to curb the population growth of invasive plant species.

摘要

入侵物种造成了巨大的生态代价,因此成功的管理技术至关重要。一种常用的方法是生物防治。生物防治的成功很大程度上取决于额外造成的损害能否成功降低目标物种的适合度和种群增长率。在此,我们模拟了对入侵物种胡枝子的食草作用,并创建了阶段结构投影模型,以确定通过一种咀嚼叶片的生物防治剂增加食草作用是否会调节该物种的种群增长率。我们发现,增加食草作用影响了最小阶段类别的植物的阶段转变,导致更高的死亡率和生长率降低。尽管在极高水平(高达80%的叶片损失)下对食草作用进行了操控,但未发现对阶段转变或繁殖力有其他影响。没有一种修剪处理显著降低胡枝子的种群增长率。我们得出结论,即使每株植物被大量啃食,由咀嚼叶片的食草动物进行生物防治也不太可能成功。我们建议,这种模拟食草作用和种群统计学建模相结合的方法,将为理解生物防治抑制入侵植物物种种群增长的效用提供重要信息。

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