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首页> 外文期刊>Experimental & applied acarology >Wind speed predicts population dynamics of the eriophyid mite Floracarus perrepae on invasive Old World climbing fern (Lygodium microphyllum) in a shade house colony
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Wind speed predicts population dynamics of the eriophyid mite Floracarus perrepae on invasive Old World climbing fern (Lygodium microphyllum) in a shade house colony

机译:风速预测植物殖民地殖民地殖民地殖民地殖民地侵袭性旧世界攀岩蕨类植物(Lygodium Microphylum)的埃里非肌腱群体的人口动态

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Lygodium microphyllum is one of the most noxious invasive plants in Florida, USA, smothering native vegetation in cypress swamps, pine flatwoods, and Everglades tree islands and altering fire regimes. The eriophyid mite Floracarus perrepae was introduced from Australia to help control L. microphyllum infestations. While F. perrepae exhibits high population growth rates in its native range, its population dynamics in Florida are unknown, particularly the dynamics that occur within the leaf roll galls the mite induces on the margins of leaves. Here, we monitored a shade house colony of F. perrepae in south Florida for 2years to identify seasonal patterns and potential climate drivers of within-gall mite density. Gall dissections of mite-infested colony plants were performed monthly. Mite density within galls exhibited two cycles per year: a strong cycle that boomed in spring and busted in summer, and a weak cycle that moderately increased mite density in fall and declined in winter. Climate variables, particularly those related to wind speed, were positively associated with higher mite density. Our study sheds light on the within-gall dynamics of F. perrepae and suggests that the highest within-gall mite densities occur in the spring and fall.
机译:Lygodium Microphyllum是美国佛罗里达州佛罗里达州最有害的侵入性植物之一,在柏树沼泽,松树林和沼泽树群岛和改变火灾制度中窒息原生植被。从澳大利亚介绍了埃里芬螨虫植物植物植物,以帮助控制L.泌尿膜侵害。虽然F. Perrepae在其本土范围内呈现出高人口增长率,但佛罗里达州的人口动态尚不清楚,特别是叶片内发生的动态诱使螨虫诱导叶子的边缘。在这里,我们在南佛罗里达州的F. Perrepae监控了2年的遮蔽屋殖民地,以确定季节性模式和潜在的气候司机的内部螨密度。每月进行螨虫菌落植物的胆剖面。疾病内的螨密度每年表现出两个周期:一个强大的循环,春天蓬勃发展,在夏天被破坏,并且在冬季中度增加的螨密度增加了弱小的循环。尤其是与风速相关的气候变量,与更高的螨密度呈正相关。我们的研究揭示了F. perrepae的内部胆量动态,并表明春季和秋季发生了最高的内部苍蝇密度。

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