Systematic transcriptome analysis associated with physiological and chronological aging in Caenorhabditis elegans

Aging is associated with changes in a variety of biological processes at the transcriptomic level, including gene expression. Two types of aging occur during a lifetime: chronological and physiological aging. However, dissecting the difference between chronological and physiological ages at the tran...

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Veröffentlicht in:Genome research 2022-11, Vol.32 (11-12), p.2003-2014
Hauptverfasser: Ham, Seokjin, Kim, Sieun S, Park, Sangsoon, Kim, Eun Ji E, Kwon, Sujeong, Park, Hae-Eun H, Jung, Yoonji, Lee, Seung-Jae V
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Sprache:eng
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Zusammenfassung:Aging is associated with changes in a variety of biological processes at the transcriptomic level, including gene expression. Two types of aging occur during a lifetime: chronological and physiological aging. However, dissecting the difference between chronological and physiological ages at the transcriptomic level has been a challenge because of its complexity. We analyzed the transcriptomic features associated with physiological and chronological aging using as a model. Many structural and functional transcript elements, such as noncoding RNAs and intron-derived transcripts, were up-regulated with chronological aging. In contrast, mRNAs with many biological functions, including RNA processing, were down-regulated with physiological aging. We also identified an age-dependent increase in the usage of distal 3' splice sites in mRNA transcripts as a biomarker of physiological aging. Our study provides crucial information for dissecting chronological and physiological aging at the transcriptomic level.
ISSN:1088-9051
1549-5469
1549-5469
DOI:10.1101/gr.276515.121