Evidence map›Paper›PMID 41398680›Full record

ArticleCell communication and signaling : CCS2025

Temporal transcriptomic profiling reveals distinct age-associated gene expression signatures in gonads under reduced insulin/IGF-1 signaling in Caenorhabditis elegans.

Neha Kaushik, Soumya Rastogi, Shivani Kapadia, Vaibhav Jain, Sonia Verma, Deepak Pandey, Mona Sharma, Surabhi Gupta, Ashutosh Halder, Simon Gregory and 1 more

Abstract read
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Article in Cell communication and signaling : CCS, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.

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1citing papers in PubMed
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1 · What the graph read from it

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3 · Its place in the literature

Who cites it

1 citing paper in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

11 authors.

Neha KaushikDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Soumya RastogiDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Shivani KapadiaDuke Molecular Physiology Institute, 300 North Duke Street, Durham, NC, 27701, USA.
Vaibhav JainDuke Molecular Physiology Institute, 300 North Duke Street, Durham, NC, 27701, USA.
Sonia VermaDivision of Neuroscience and Ageing Biology, CSIR-Central Drug Research Institute, Lucknow, 226031, India.
Deepak PandeyDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Mona SharmaDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Surabhi GuptaDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Ashutosh HalderDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Simon GregoryDuke Molecular Physiology Institute, 300 North Duke Street, Durham, NC, 27701, USA.
Neeraj KumarDepartment of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India. drnknirwal@aiims.edu.

Funding

All-India Institute of Medical Sciences A-1032Indian Council of Medical Research 5/10/FR/57/2020-RBMCH
6 · The paper itself

Abstract

backgroundAge-related decline in reproductive function is a hallmark of organismal aging, yet the molecular mechanisms driving this process remain incompletely understood. The insulin/IGF-1 signaling (IIS) pathway is highly conserved and influences both lifespan and reproductive aging in Caenorhabditis elegans, where reduced IIS extends reproductive span. While prior studies have examined isolated tissues or time points, a comprehensive temporal analysis of gonadal transcriptional dynamics under reduced IIS has been lacking. Here, we compared IIS-dependent regulation of the gonadal transcriptome with that of other somatic tissues to uncover tissue-specific mechanisms of reproductive aging.

methodsBulk RNA sequencing was performed on distal gonads dissected above the spermatheca from wild-type N2 and daf-2(e1370) mutant animals, a well-established model of reduced IIS. Samples were collected at four physiologically relevant adult stages-Day 1 (young adult), Day 2, Day 6, and Day 10-covering early to late reproductive periods. In parallel, whole-worm RNA-seq was conducted for N2 and daf-2 at Day 1 and Day 10 to enable systemic comparisons. Differential gene expression analyses identified IIS-responsive transcripts that were either gonad-specific or non-gonadal. Expression datasets were further analyzed using self-organizing maps (SOMs) with hierarchical clustering. Gene network construction, functional enrichment, transcription factor enrichment, and conservation analyses were performed, and differential expression profiles were integrated with publicly available germline-, gamete-, and somatic tissue-enriched datasets.

resultsTemporal transcriptomic profiling revealed distinct IIS-dependent expression trajectories in gonadal versus non-gonadal datasets. SOM-based clustering resolved temporally regulated expression modules, while network and enrichment analyses uncovered a multilayered regulatory architecture within the gonad. Gonadal expression was enriched for structural, extracellular matrix, and signaling pathway genes, whereas non-gonadal data showed enrichment for stress response and longevity-associated pathways. Integration with germline-, gamete-, and somatic tissue-enriched datasets distinguished tissue-specific regulatory signatures. Importantly, IIS-regulated gonadal components included genes highly conserved with human orthologs.

conclusionThis study provides a high-resolution temporal map of the gonadal transcriptome under reduced IIS and highlights gene modules potentially critical for reproductive maintenance. These findings offer a resource for dissecting tissue-specific aging programs and insulin-dependent regulation of reproductive health.

Indexed as

AgingCaenorhabditis elegansGene Expression ProfilingGonadsInsulinInsulin-Like Growth Factor ISignal TransductionTranscriptomeAnimalsCaenorhabditis elegans ProteinsMaleCaenorhabditis elegans ProteinsInsulinInsulin-Like Growth Factor ICaenorhabditis elegansGonadsInsulin signalingReproductive agingTranscriptomics

Identifiers

PMID41398680
PMCPMC12706931

What Socratic holds

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LicenceCC BY-NC-ND
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.