家蟋蟀(Acheta domesticus)形态学特征的翻译老化研究。

IF 5.4 2区 医学 Q1 GERIATRICS & GERONTOLOGY
Gerald Yu Liao, Sherwin Dai, Elizabeth Bae, Swastik Singh, Jenna Klug, Christina Pettan-Brewer, Warren Ladiges
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引用次数: 0

摘要

衰老改变了多种生物的形态和运动功能,然而用于研究这些变化的标准化模型系统仍然局限于相对较少的物种。在这里,我们提出了一个全面的分析年龄和性别依赖性形态变异的家蟋蟀(Acheta domesticus),整合完善的饲养方案,以提高可重复性和翻译相关性。为了确保数据的一致性,我们实施了一个标准化的饲养框架,包括自主决定的光周期、雌雄同房、控制饮食和水化策略。我们观察到体重、长度和附属物尺寸随着年龄的增长而逐渐增加,成熟后出现明显的两性二态性。结构适应,包括股骨体积和横截面积的增加,提示了与年龄相关的肌肉效率下降的代偿机制,而后腿与身体长度比的减少表明了运动的潜在生物力学限制。此外,触角的生长模式突出了长时间的感官投资,潜在地抵消了老年人活动能力的下降。我们的研究结果强调了在老年学研究中协调环境条件的必要性,因为光照、基质可用性和微生物组暴露的变化可能会显著影响生理弹性和行为保真度。未来的工作应该探索微生物组多样性对寿命和应激恢复能力的影响,同时改进蟋蟀从卵到成年的饲养方法。通过连接无脊椎动物和脊椎动物的衰老研究,本研究将家蟋蟀定位为一种可扩展的、高通量的动物模型,用于研究与年龄相关的功能衰退、行为可塑性和延长寿命的干预措施。结合行为分析、生物力学分析和衰老的分子标记,将进一步阐明形态、功能、健康和寿命之间的相互作用,推进蟋蟀在比较老年科学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphological features of the domestic house cricket (Acheta domesticus) for translational aging studies.

Aging alters morphology and locomotor function in diverse organisms, yet standardized model systems for studying these changes remain limited to a relatively few species. Here, we present a comprehensive analysis of age- and sex-dependent morphological variations in house crickets (Acheta domesticus), integrating refined husbandry protocols to enhance reproducibility and translational relevance. To ensure data consistency, we implemented a standardized husbandry framework incorporating self-determined photoperiods, co-housing both sexes, and controlled diet and hydration strategies. We observed progressive increases in body weight, length, and appendage dimensions with age, with pronounced sexual dimorphism emerging post-maturity. Structural adaptations, including increased femoral volume and cross-sectional area, suggest compensatory mechanisms for age-related declines in muscle efficiency, while reduced hind leg-to-body length ratios indicate potential biomechanical constraints on locomotion. Furthermore, antennal growth patterns highlight prolonged sensory investment, potentially offsetting declining mobility in aging individuals. Our results underscore the necessity of harmonizing environmental conditions in gerontological research, as variations in lighting, substrate availability, and microbiome exposure may significantly impact physiological resilience and behavioral fidelity. Future work should explore the influence of microbiome diversity on lifespan and stress resilience while refining methodologies for cricket rearing from egg to adulthood. By bridging invertebrate and vertebrate aging research, this study positions house crickets as a scalable, high-throughput animal model for investigating age-related functional decline, behavioral plasticity, and lifespan-extending interventions. Integrating behavioral assays, biomechanical analyses, and molecular markers of aging will further elucidate the interplay between morphology, function, health, and longevity, advancing the utility of crickets in comparative geroscience.

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来源期刊
GeroScience
GeroScience Medicine-Complementary and Alternative Medicine
CiteScore
10.50
自引率
5.40%
发文量
182
期刊介绍: GeroScience is a bi-monthly, international, peer-reviewed journal that publishes articles related to research in the biology of aging and research on biomedical applications that impact aging. The scope of articles to be considered include evolutionary biology, biophysics, genetics, genomics, proteomics, molecular biology, cell biology, biochemistry, endocrinology, immunology, physiology, pharmacology, neuroscience, and psychology.
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