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Local Environmental Context Conditions the Impact of Russian Olive in a Heterogeneous Riparian Ecosystem

机译:当地的环境环境决定了俄罗斯橄榄在异质河岸生态系统中的影响

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Local abiotic and biotic conditions can alter the strength of exotic species impacts. To better understand the effects of exotic species on invaded ecosystems and to prioritize management efforts, it is important that exotic species impacts are put in local environmental context. We studied how differences in plant community composition, photosynthetically active radiation (PAR), and available soil N associated with Russian olive presence are conditioned by local environmental variation within a western U.S. riparian ecosystem. In four sites along the South Fork of the Republican River in Colorado, we established 200 pairs of plots (underneath and apart from Russian olive) to measure the effects of invasion across the ecosystem. We used a series of a priori mixed models to identify environmental variables that altered the effects of Russian olive. For all response variables, models that included the interaction of environmental characteristics, such as presence/absence of an existing cottonwood canopy, with the presence/absence of Russian olive canopy were stronger candidate models than those that just included Russian olive canopy presence as a factor. Compared with reference plots outside of Russian olive canopy, plots underneath Russian olive had higher relative exotic cover (exotic/total cover), lower perennial C4 grass cover, and higher perennial forb cover. These effects were reduced, however, in the presence of a cottonwood canopy. As expected, Russian olive was associated with reduced PAR and increased N, but these effects were reduced under cottonwood canopy. Our results demonstrate that local abiotic and biotic environmental factors condition the effects of Russian olive within a heterogeneous riparian ecosystem and suggest that management efforts should be focused in open areas where Russian olive impacts are strongest.
机译:当地的非生物和生物条件可以改变外来物种影响的强度。为了更好地了解外来物种对入侵的生态系统的影响并确定管理工作的优先级,将外来物种的影响放在当地环境中非常重要。我们研究了美国西部河岸生态系统中局部环境变化如何调节植物群落组成,光合有效辐射(PAR)和与俄罗斯橄榄相关的有效土壤N的差异。在科罗拉多州共和党河南叉的四个地点,我们建立了200对地块(在俄罗斯橄榄的下面和分开)来测量整个生态系统的入侵影响。我们使用了一系列先验混合模型来识别改变俄罗斯橄榄影响的环境变量。对于所有响应变量,与仅将俄罗斯橄榄树冠存在作为因素的模型相比,包括环境特征(例如是否存在现有的三角叶杨冠层)与俄罗斯橄榄树冠的存在/不存在之间相互作用的模型是更强的候选模型。 。与俄罗斯橄榄树冠以外的参考地块相比,俄罗斯橄榄树下面的地块具有较高的相对外来植物盖度(异物/总盖度),较低的多年生C4草盖度和较高的多年生前茅盖度。但是,在三叶草冠层存在的情况下,这些影响减小了。不出所料,俄罗斯橄榄与PAR降低和N增加有关,但在杨木冠层下这些影响减少了。我们的结果表明,当地非生物和生物环境因素制约了俄罗斯橄榄在异质河岸生态系统中的影响,并建议管理工作应集中在俄罗斯橄榄影响最强的开放区域。

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