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首页> 外文期刊>Biotropica >Tracking Nutrient Routing in Avian Consumers in a Subtropical Desert
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Tracking Nutrient Routing in Avian Consumers in a Subtropical Desert

机译:跟踪亚热带沙漠地区禽类消费者的营养路径

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The nutrients animals ingest are allocated to serve different functions. We used contrasting C stable isotope signatures of dominant vegetation types in a North American subtropical desert to decipher how avian consumers allocate nutrients to fuel oxidative metabolism and to construct tissues. We conducted C stable isotope analysis of breath and feathers collected from nectarivores (hummingbirds) and of breath, plasma, and red blood cell samples collected from frugivores, granivores, and insectivores. Based on varying nutrient characteristics of food sources, we expected that for frugivores and granivores, CAM-derived food (RCCAM) would have similar importance for oxidative metabolism and for tissue building, that RCCAM in nectarivores and insectivores would be more important for fueling metabolism than for generating tissues, and that (although low) RCCAM in insectivores would be higher for sustaining metabolism than for building tissues. Our predictions held true for nectarivores and granivores, but RCCAM use in tissue building was lower than expected in frugivores and higher than expected in insectivores. Our examination at the trophic guild, population, and individual levels showed that in general, nutrients used to sustain oxidative metabolism and tissue construction had a uniform isotopic origin. This finding suggests that the avian community under investigation does not route different food groups to fulfill different needs. However, we found some exceptions, indicating that birds can use different food sources for different functions, irrespective of trophic guild.
机译:动物摄取的营养物质被分配以发挥不同的功能。在北美亚热带沙漠中,我们使用了主要植被类型的对比C稳定同位素特征来解释禽类消费者如何分配养分来促进氧化代谢和构造组织。我们对从油桃(蜂鸟)收集的呼吸和羽毛以及从食肉动物,食肉动物和食虫动物收集的呼吸,血浆和红细胞样品进行了C稳定同位素分析。基于食物来源的不同营养特征,我们预计对于食肉动物和食肉动物,CAM衍生食品(RCCAM)在氧化代谢和组织构建方面具有相似的重要性,而油桃和食虫动物中的RCCAM对燃料代谢的重要性将超过产生组织所需的能量,而食虫动物中的RCCAM(尽管很低)在维持新陈代谢方面要比构建组织要高。我们的预测对食肉动物和食肉动物成立,但在组织构建中使用RCCAM的方法在食肉动物中低于预期,在食虫动物中高于预期。我们对营养协会,种群和个体水平的检查表明,通常,用于维持氧化代谢和组织构造的营养素具有统一的同位素来源。这一发现表明,正在调查的禽类群落并没有为满足不同需求分配不同的食物。但是,我们发现了一些例外情况,这表明无论营养协会如何,鸟类都可以使用不同的食物来源来实现不同的功能。

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