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Community analysis of the Wyoming big sagebrush alliance and functional role of Wyoming big sagebrush.

机译:怀俄明州大艾树联盟的社区分析和怀俄明州大艾树的功能作用。

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This study consisted of two research projects in the Wyoming big sagebrush (Artemisia tridentata ssp. wyomingensis (Beetle & A. Young) S.L. Welsh) alliance, the most extensive of the big sagebrush complex in the Intermountain West. In the first project, we intensively sampled 107 relatively undisturbed, late seral Wyoming big sagebrush sites across the High Desert, Humboldt, and western Snake River Ecological Provinces to investigate vegetation heterogeneity and the relationship of environmental factors with vegetation characteristics. Vegetation characteristics were highly variable across the region. Perennial grass and total herbaceous cover varied more than six and sevenfold, respectively between minimum and maximum values. Sagebrush cover averaged 12%, but ranged between 3 and 25%. With the exception of perennial grass cover (p 0.0001, r2 = 0.52), limited variability in other vegetation characteristics was explained by environmental variables.; In the second project, we investigated the functional role of Wyoming big sagebrush by using undisturbed and sagebrush removed (with burning) treatments and comparing vegetation and microsite characteristics under (subcanopy) to between sagebrush canopy (interspace) zones. Wyoming big sagebrush influenced associated vegetation and microsites. On sites receiving high incidental radiation, perennial grass and total herbaceous cover and density were greater in the subcanopy than interspace zones (p 0.05). On north aspects, these differences were not as pronounced suggesting sagebrush's influence on associated vegetation is site dependent. Temperature extremes were mediated and soil water content was greater in the subcanopy than interspace zones during the growing season. Results indicated that the subcanopy zone can be a more favorable environment to herbaceous vegetation than the interspace zone. Wyoming big sagebrush is important to community resource capture and use. Plots with sagebrush had greater soil water content at the start of the growing season and produced more total biomass compared to where sagebrush had been removed in both post-fire years (p 0.05). However, higher Thurber's needlegrass photosynthetic rates and greater herbaceous cover and production where sagebrush had been removed suggested that more resources were available to herbaceous vegetation in the absence of sagebrush.
机译:这项研究由怀俄明州的大型鼠尾草(Artemisia tridentata ssp。wyomingensis(Beetle&A.Young)S.L.Welsh)联盟中的两个研究项目组成,这是西山间最大的大型鼠尾草综合体。在第一个项目中,我们在高沙漠,洪堡和蛇河西部生态省密集采样了107个相对不受干扰的怀俄明州晚些的沿山怀俄明州的大型鼠尾草站点,以调查植被异质性以及环境因子与植被特征的关系。整个地区的植被特征变化很大。最小值和最大值之间,多年生草和总草皮的变化分别超过六倍和七倍。鼠尾草覆盖率平均为12%,但介于3%和25%之间。除多年生草覆盖(p <0.0001,r2 = 0.52)外,其他植被特征的有限变化是由环境变量解释的。在第二个项目中,我们研究了怀俄明州的大型鼠尾草的功能,方法是使用未受干扰的鼠尾草并去除(经燃烧)处理的鼠尾草,并比较(亚冠层下)鼠尾草冠层(间隔)区域之间的植被和微站点特征。怀俄明州的大山艾树影响了相关的植被和微地点。在接受高入射辐射的地点,次冠层的多年生草,总草皮覆盖率和密度均高于空白区(p <0.05)。在北方方面,这些差异并不明显,表明鼠尾草对相关植被的影响取决于地点。在生长季节中,极端温度被介导,并且子冠层中的土壤水分含量高于间隙区域。结果表明,与空间区相比,亚冠层区对草本植物的生长环境更有利。怀俄明州的大丹树对于社区资源的获取和使用很重要。与在火灾后的两个年份都去除了鼠尾草的情况相比,带有鼠尾草的地块在生长季节开始时土壤水含量更高,产生的总生物量也更多(p <0.05)。但是,在去除了鼠尾草的情况下,瑟伯的针叶草的光合速率更高,草本覆盖和产量更高,这表明在没有鼠尾草的情况下,更多的资源可用于草本植物。

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