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Tree squirrel habitat selection and predispersal seed predation in a declining subalpine conifer

机译:下降的亚高山针叶树的松鼠栖息地选择和种子前捕食

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Differential responses by species to modern perturbations in forest ecosystems may have undesirable impacts on plant-animal interactions. If such disruptions cause declines in a plant species without corresponding declines in a primary seed predator, the effects on the plant could be exacerbated. We examined one such interaction between Pinus albicaulis (whitebark pine), a bird-dispersed, subalpine forest species experiencing severe population declines in the northern part of its range, and Tamiasciurus hudsonicus (red squirrel), an efficient conifer seed predator, at 20 sites in two distinct ecosystems. Hypotheses about squirrel habitat preferences were tested to determine how changes in forest conditions influence habitat use and subsequent levels of predispersal cone predation. We performed habitat selection modeling and variable ranking based on Akaike’s information criterion; compared the level and variance of habitat use between two forest types (P. albicaulis dominant and mixed conifer); and modeled the relationship between P. albicaulis relative abundance and predispersal cone predation. T. hudsonicus did not demonstrate strong habitat preference for P. albicaulis, and thus, declines in the pine were not met with proportional declines in squirrel habitat use. P. albicaulis habitat variables were the least important in squirrel habitat selection. Squirrel habitat use was lower and varied more in P. albicaulis-dominant forests, and predispersal cone predation decreased linearly with increasing P. albicaulis relative abundance. In Northern Rocky Mountain sites, where P. albicaulis mortality was higher and abundance lower, squirrel predation was greater than in Central Rocky Mountain sites. In ecosystems with reduced P. albicaulis abundance, altered interactions between the squirrel and pine may lead to a lower proportion of P. albicaulis contributing to population recruitment because of reduced seed availability. Reducing the abundance of competing conifers will create suboptimal squirrel habitat, thus lowering cone predation in P. albicaulis and ensuring more seeds are available for avian dispersal. Keywords Cronartium ribicola (white pine blister rust) - Forest health - Forest structure - Forest species composition - Pinus albicaulis (whitebark pine) Communicated by Jörg Ganzhorn.
机译:物种对森林生态系统中现代扰动的不同反应可能会对植物-动物相互作用产生不良影响。如果这种破坏导致植物物种减少而初级种子捕食者没有相应减少,那么对植物的影响可能会加剧。我们在20个地点研究了白松(一种鸟类分散的亚高山森林物种,在其范围的北部人口严重下降)与一种高效的针叶树种子捕食者Tamiasciurus hudsonicus(红松鼠)之间的相互作用。在两个不同的生态系统中对有关松鼠栖息地偏好的假设进行了测试,以确定森林状况的变化如何影响栖息地的使用以及随后的分散前锥状捕食水平。我们根据赤池的信息标准进行了栖息地选择建模和变量排名;比较了两种森林类型(P. albicaulis优势和混合针叶树)之间的栖息地利用水平和差异;并模拟了白色假单胞菌相对丰度与预分散锥捕食之间的关系。 hudonicus并未显示出对白粉病菌的强烈生境偏好,因此,松树的减少没有与松鼠生境使用的按比例减少相适应。在松鼠栖息地选择中,白僵菌的栖息地变量最不重要。在以白粉病为优势的森林中,松鼠栖息地使用率较低,且变化更大,并且随着白粉病相对丰度的增加,前分散锥的捕食行为呈线性下降。在北部的落基山遗址中,白僵菌的死亡率较高而丰度较低,松鼠的捕食要比中部的落基山遗址高。在生态系统中,白粉病菌的丰度降低了,松鼠和松树之间相互作用的改变可能导致白粉病菌的比例降低,因为种子的可利用性降低了。减少竞争性针叶树的丰度将创造次优的松鼠栖息地,从而降低白粉病菌的球果捕食,并确保有更多种子可用于禽类传播。关键字Cronartium ribicola(白松水泡锈病)-森林健康-森林结构-森林物种组成-albicaulis(白皮松)由JörgGanzhorn沟通。

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