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首页> 外文期刊>The Journal of Applied Ecology >Density dependence, precipitation and biological control agent herbivory influence landscape-scale dynamics of the invasive Eurasian plant Linaria dalmatica
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Density dependence, precipitation and biological control agent herbivory influence landscape-scale dynamics of the invasive Eurasian plant Linaria dalmatica

机译:密度依赖,降水和生物景观尺度控制剂食草性的影响动态的入侵植物Linaria欧亚dalmatica

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摘要

1. Resource availability and natural enemies are among the most commonly cited mechanisms affecting competitive ability of invasive plants, but their simultaneous effects on plant dynamics are seldom evaluated in the field. Understanding how endogenous and exogenous factors affect invasive plant abundance is essential when evaluating the impact of classical weed biological control agents because misinterpretations of the mechanisms regulating plant demography may bias inference of herbivore impact. 2. In this study, we report results from a citizen-science monitoring programme initiated to evaluate the effects of the stem-mining weevil Mecinus janthiniformis on the Eurasian invasive weed Dalmatian toadflax Linaria dalmatica. We used a discrete model of population dynamics to evaluate the relative importance of endogenous and exogenous processes affecting changes in ramet density of L. dalmatica at 38 spatially replicated sites in Idaho, USA. 3. Analysis of per-capita population growth rates based on ramet density indicated the presence of direct density dependence, which was most likely due to intraspecific competition. Changes in ramet density were not influenced by the abundance of the resident plant community. 4. Precipitation had a strong, positive effect on ramet density of L. dalmatica, while the abundance of M. janthiniformis had a weaker, but significant, negative effect after accounting for the density dependence. There was no support for an interactive effect between precipitation and herbivory. 5. Synthesis and applications. Our results indicate that biological control is an important factor affecting weed population growth at the landscape scale, but they also suggest that biological control impact may vary considerably on local infestations due to site-specific variation in rainfall and density-dependent processes. We recommend that invasive plant management strategies integrate precipitation and biological control agent monitoring into their programmes to estimate expected biological control efficacy. Alternative control methods should be prioritized in areas where herbivore impact is expected to be low.
机译:1. 最经常被引用机制影响入侵植物的竞争能力,但他们同时对植物动力学的影响很少进行评估。内生和外生因素如何影响入侵植物丰度时至关重要评估的影响,古典杂草生物防治剂,因为误解的调节机制植物人口可能偏见推理的食草动物的影响。公民科学监测项目启动评估stem-mining象鼻虫的影响Mecinus janthiniformis欧亚入侵杂草达尔马提亚柳穿鱼Linaria dalmatica。用离散的种群动态模型评估的相对重要性内生和外生过程影响的变化无性系分株密度的l . dalmatica 38空间复制网站在爱达荷州,美国。人均基于无性系分株的人口增长率密度表示的存在直接的密度依赖,这是最有可能的原因种内竞争。密度不丰度的影响当地植物群落。有一个强有力的,积极的影响无性系分株密度l . dalmatica,而大量的M。janthiniformis走弱,但意义重大,负面影响会计后密度依赖。降水与互动效果食草性。结果表明,生物防治是一个重要的因素影响杂草人口增长在景观尺度,但他们还建议生物防治影响可能会有所不同对当地的侵扰,由于很多因地制宜和降雨量的变化密度制约的过程。入侵植物管理策略整合降水和生物控制剂监控项目估算预计生物防治功效。控制方法应优先领域在食草动物的影响将很低。

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