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Diet and geophagy across a western Amazonian parrot assemblage.

机译:西亚马逊河鹦鹉组合的饮食和吞噬作用。

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摘要

We identified species- and community-level dietary characteristics for a species-rich Amazonian parrot assemblage to determine relationships among dietary metrics and use of geophagy sites. Previous studies suggest that soil is consumed at geophagy sites in this region mainly to supplement dietary sodium. We accumulated 1400 feeding records for 16 parrot species over 2 yr and found that seeds, flowers, and fruit pulp featured prominently in diets, while bark, insects, and lichen were consumed in small quantities. Food availability across 1819 trees was measured, and we found that flower availability was highest in the dry season and fruit production peaked in the wet season, but that phenology patterns of the 20 most commonly foraged plant species suggest no serious food bottlenecks. Partitioning of available food resources among the 13 most commonly encountered parrots is suggested by an ordination analysis (DCA), which placed the large macaws (Ara) with the Amazona parrots at the 'primary forest' end of a dietary resource axis and four smaller species at the 'successional forest' end of the axis. Parrot species associated with successional forest also consumed less plant species overall. Furthermore, these parrot species consuming successional forest resources had higher claylick visitation rates than those consuming primary forest resources suggesting they derive the greatest benefits from soil consumption.
机译:我们确定了一种物种丰富的亚马逊鹦鹉组合的物种和社区一级的饮食特征,以确定饮食指标与地理位点使用之间的关系。先前的研究表明,该区域的地噬场所消耗土壤,主要是为了补充膳食钠。我们在2年中积累了1400种16种鹦鹉物种的饲养记录,发现在饮食中,种子,花朵和果肉是主要特征,而树皮,昆虫和地衣则被少量食用。测量了1819棵树上的食物供应量,我们发现干旱季节的花朵供应量最高,而雨季的水果产量达到峰值,但是20种最常见的觅食植物的物候模式表明,没有严重的食物瓶颈。通过协调分析(DCA)建议在13种最常见的鹦鹉中分配可用的食物资源,该分析将大型金刚鹦鹉(Ara)和亚马逊鹦鹉置于饮食资源轴的“主要森林”端,并有四个较小的物种在轴的“成功森林”末端。与演替森林相关的鹦鹉物种总体上也消耗较少的植物物种。此外,这些消耗连续森林资源的鹦鹉物种的黏土访问率高于消耗原始森林资源的鹦鹉,表明它们从土壤消耗中获得最大利益。

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