首页> 外文期刊>Journal of Insect Conservation >Microclimate and biotic interactions affect Karner blue butterfly occupancy and persistence in managed oak savanna habitats
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Microclimate and biotic interactions affect Karner blue butterfly occupancy and persistence in managed oak savanna habitats

机译:微气候和生物互动会影响Karner Blue Butterfly占用和持久性在管理的橡树遗址栖息地

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Factors affecting site microclimate are important for the maintenance of populations, particularly during stochastic weather events. The federally endangered Karner blue butterfly (Lycaeides melissa samuelis Nabokov) has faced population declines throughout its range, most recently in 2012 following a severe drought throughout the Great Lakes region. This research builds upon previous work to understand what microclimate and biotic factors predict L. m. samuelis site occupancy. To gain an understanding of what habitat characteristics are conducive to L. m. samuelis survival during severe stochastic weather events, previously occupied sites were compared with currently occupied and restored sites in Allegan State Game Area, Michigan and the Oak Openings region of Ohio using variables significant in a predictive model. The heat load variable accounted for 64-67% of the variation in the model alone while individual biotic variables accounted for 5% of the model variation individually. The density of flowering lupine, ant entrance densities and heat load were higher in occupied sites while formerly occupied sites had higher woody stem density and canopy cover. These data show that site microclimate and factors affecting L. m. samuelis larval growth and reproduction affect distribution and persistence in stochastic environments. These findings can be incorporated in habitat management plans to create climate resilient refugia for current populations and increase the probability of reintroduction success in restored areas.
机译:影响地点小气门体的因素对于维持群体是重要的,特别是在随机天气事件期间。联邦濒危卡纳蓝蝴蝶(Lycaeides Melissa Samuelis Nabokov)在整个范围内都面临人口下降,最近在整个大湖地区的严重干旱后,最近在2012年。这项研究建立在以前的工作,了解什么小气候和生物因素预测L. m。 Samuelis网站入住。了解栖息地特征有利于L. m的理解。 Samuelis在严重的随机天气活动期间存活,以前占用的网站与Allegan州游戏区,密歇根州密歇根和俄亥俄州的奥克橡树开口区域的目前占用和恢复的网站进行了比较。使用预测模型中的变量。热负荷变量仅占模型的变化的64-67%,而单独的生物变量占占& 5%的模型变异单独。占领位点的开花羽扇桩,蚂蚁入口密度和热负荷的密度较高,而前身占据的地点具有更高的木质茎密度和冠层盖。这些数据显示,现场小气候和影响L. m的因素。 Samuelis Larval的生长和繁殖在随机环境中影响分布和持久性。这些调查结果可以纳入栖息地管理计划,以创造目前群体的气候有弹性避难所,并增加重新引入地区的重新引入成功的可能性。

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