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对 turquoise 鳉鱼不同品系的分析确定了与可遗传的寿命差异相关的转录组特征。

Analysis of Different Strains of the Turquoise Killifish Identify Transcriptomic Signatures Associated With Heritable Lifespan Differences.

作者信息

Mazzetto Mariateresa, Reichwald Kathrin, Koch Philipp, Groth Marco, Cellerino Alessandro

机构信息

BIO@SNS, Scuola Normale Superiore, Pisa, Italy.

Leibniz Institute on Aging, Fritz Lipmann Institute, Jena, Germany.

出版信息

J Gerontol A Biol Sci Med Sci. 2025 Jun 10;80(7). doi: 10.1093/gerona/glae255.

Abstract

The African turquoise killifish Nothobranchius furzeri represents an emerging short-lived vertebrate model for aging research. Captive strains of this species are characterized by large differences in lifespan. To identify gene expression correlates of this lifespan differences, we analyzed a public transcriptomic dataset comprising 4 different tissues in addition to embryos. We focused on the GRZ and the MZM0410 captive strains, which show a near twofold difference in lifespan, but similar growth- and maturation-rates and validated the results in a newly generated dataset from a third longer-lived strain. The 2 strains show distinct transcriptome expression patterns already as embryos and the genotype has a larger effect than age on gene expression, both in terms of number of differentially expressed genes and magnitude of regulation. Network analysis detected RNA processing and histone modifications as the most prominent categories upregulated in GRZ. This strain also showed idiosyncratic expression patterns, such as high expression of DND is somatic tissues and transcriptional aging signatures already at sexual maturity (anticipated aging) in all 4 tissues, suggesting that short lifespan is the results of events that occur early in life rather than the progressive accumulation of strain-dependent differences. The GRZ strain is the most commonly used N furzeri strain in intervention studies and our results warrant replication of at least key findings in longer-lived strains.

摘要

非洲绿松石鳉(Nothobranchius furzeri)是一种新兴的用于衰老研究的短命脊椎动物模型。该物种的圈养品系具有寿命差异大的特点。为了确定与这种寿命差异相关的基因表达,我们分析了一个公共转录组数据集,该数据集除胚胎外还包含4种不同组织。我们重点研究了GRZ和MZM0410圈养品系,它们的寿命相差近两倍,但生长和成熟速率相似,并在来自第三个长寿品系的新生成数据集中验证了结果。这两个品系在胚胎期就表现出不同的转录组表达模式,并且就差异表达基因的数量和调控幅度而言,基因型对基因表达的影响大于年龄。网络分析检测到RNA加工和组蛋白修饰是GRZ中上调最显著的类别。该品系还表现出独特的表达模式,例如DND在所有4种组织的体细胞组织中高表达,并且在性成熟时(预期衰老)就出现转录衰老特征,这表明短寿命是生命早期发生的事件的结果,而不是品系依赖性差异的渐进积累。GRZ品系是干预研究中最常用的非洲绿松石鳉品系,我们的结果保证至少在长寿品系中重复关键发现。

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