A novel carnivorous diet reduces brain telomere length.

IF 2.8 2区 生物学 Q2 BIOLOGY
Biology Letters Pub Date : 2025-02-01 Epub Date: 2025-02-12 DOI:10.1098/rsbl.2024.0593
Alexander M Shephard, Cristina C Ledón-Rettig
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引用次数: 0

Abstract

Developmental conditions can profoundly influence adult survival or longevity. One established correlate of longevity is the length of telomeres-non-coding DNA regions that protect chromosomal ends. Telomere length in adulthood can be influenced by environmental conditions during development, such as nutrient restriction. Yet, we lack experimental studies of how adult telomere length is affected by a different form of nutritional variation: diet type. Here, we asked how diet-type variation during larval development affects telomere length in multiple post-metamorphic somatic tissues of the Mexican spadefoot (Spea multiplicata), an anuran species whose larvae develop on two qualitatively distinct diets: an ancestral omnivorous diet of detritus or a more novel carnivorous diet of live shrimp. We found that larvae developing on the novel shrimp diet developed into post-metamorphic frogs with shorter telomeres in the brain-a structure that is particularly vulnerable to harmful effects of nutritional adversity, such as oxidative stress. Given known links between telomere length and neurological health outcomes, our study suggests that a dietary transition to carnivory might carry costs in terms of compromised neural integrity later in life. This work highlights the lasting impact of a developmental diet on somatic maintenance and health.

一种新的食肉性饮食减少了脑端粒的长度。
发育条件可以深刻地影响成人的生存或寿命。一个与长寿相关的确定因素是端粒的长度——保护染色体末端的非编码DNA区域。成年期端粒长度可受发育期间的环境条件影响,如营养限制。然而,我们缺乏关于成人端粒长度如何受到不同形式的营养变化的影响的实验研究:饮食类型。在这里,我们询问了幼虫发育过程中饮食类型的变化如何影响墨西哥掌足(Spea multiplicata)的多个变质后体细胞组织的端粒长度。掌足是一种无尾动物,其幼虫在两种质量上截然不同的饮食中发育:祖先的杂食性饮食碎屑或更新颖的肉食性饮食活虾。我们发现,以这种新型虾为食的幼虫发育成大脑端粒较短的后变质蛙,这种结构特别容易受到营养逆境的有害影响,比如氧化应激。鉴于端粒长度与神经系统健康结果之间的已知联系,我们的研究表明,饮食转变为食肉动物可能会在以后的生活中损害神经完整性。这项工作强调了发育饮食对身体维持和健康的持久影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biology Letters
Biology Letters 生物-进化生物学
CiteScore
5.50
自引率
3.00%
发文量
164
审稿时长
1.0 months
期刊介绍: Previously a supplement to Proceedings B, and launched as an independent journal in 2005, Biology Letters is a primarily online, peer-reviewed journal that publishes short, high-quality articles, reviews and opinion pieces from across the biological sciences. The scope of Biology Letters is vast - publishing high-quality research in any area of the biological sciences. However, we have particular strengths in the biology, evolution and ecology of whole organisms. We also publish in other areas of biology, such as molecular ecology and evolution, environmental science, and phylogenetics.
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