Disentangling relationships between physiology, morphology, diet, and gut microbial diversity in American kestrel nestlings

IF 1.5 3区 生物学 Q1 ORNITHOLOGY Journal of Avian Biology Pub Date : 2023-04-24 DOI:10.1111/jav.03019
Jennifer L. Houtz, Mercy Melo, Jean-François Therrien, Allison Cornell
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Abstract

Gut microbiota are increasingly recognized as important drivers of host health and fitness across vertebrate taxa. Given that gut microbial composition is directly influenced by the environment, gut microbiota may also serve as an eco-physiological mechanism connecting host ecology, such as diet, and physiology. Although gut microbiota have been well-studied in mammalian systems, little is known about how gut microbial diversity and composition impact morphological and physiological development in wild birds. Here, we characterized both diet and gut microbial diversity of free-living American kestrel Falco sparverius nestlings throughout development to test whether gut microbial diversity predicts host morphological and physiological traits in either contemporary or time-lagged manners. Gut microbial alpha diversity on day 21 of nestling development was positively correlated with diet alpha diversity representative of the majority of nestling development (days 5–20). Gut microbial alpha diversity early in development was negatively correlated with body mass in both contemporary and time-lagged manners. Gut microbial alpha diversity early in development was positively correlated with blood glucose later in development. As nestlings experience rapid growth demands in preparation to fledge, these time-lagged associations may indicate that gut microbial diversity at early critical developmental windows may determine the future trajectory of morphological and physiological traits underlying metabolism that ultimately impact fitness.

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美洲红隼雏鸟的生理、形态、饮食和肠道微生物多样性之间的关系
肠道微生物群越来越被认为是脊椎动物类群宿主健康和适应性的重要驱动因素。鉴于肠道微生物组成直接受环境影响,肠道微生物群也可能是连接宿主生态(如饮食和生理)的一种生态生理机制。虽然肠道微生物群在哺乳动物系统中已经得到了很好的研究,但人们对肠道微生物多样性和组成如何影响野生鸟类的形态和生理发育知之甚少。在这里,我们对自由生活的美国红隼雏鸟的饮食和肠道微生物多样性进行了研究,以测试肠道微生物多样性是否能以当代或滞后的方式预测宿主的形态和生理特征。雏鸟发育第21天肠道微生物α多样性与代表大多数雏鸟发育(第5-20天)的饲粮α多样性呈正相关。在发育早期,肠道微生物α多样性与体重呈负相关。发育早期肠道微生物α多样性与发育后期血糖呈正相关。由于雏鸟在准备羽翼时经历了快速的生长需求,这些滞后的关联可能表明,早期关键发育窗口的肠道微生物多样性可能决定了代谢基础的形态和生理特征的未来轨迹,最终影响适应性。
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来源期刊
Journal of Avian Biology
Journal of Avian Biology 生物-鸟类学
CiteScore
3.70
自引率
0.00%
发文量
56
审稿时长
3 months
期刊介绍: Journal of Avian Biology publishes empirical and theoretical research in all areas of ornithology, with an emphasis on behavioural ecology, evolution and conservation.
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