385: Growth under Pressure: Polyploidy Induced by Stress

385: Growth under Pressure: Polyploidy Induced by Stress

Sarabia Olivera L et al., PNAS - A perspective that surveys how diverse stresses trigger whole‑genome doubling (polyploidy) across fungi, plants, and animals, outlines common cell‑cycle mechanisms that produce polyploid cells, and evaluates the beneficial and detrimental consequences for genomes, cells, tissues, and applied contexts. Key terms: polyploidy, endocycles, oxidative stress, genome instability, regeneration.

Study Highlights:
The authors review evidence that many stresses — including temperature extremes, pharmacological agents, genotoxic insults, nutrient changes, infection, cell loss, and ROS — promote polyploidy across fungi, plants, and animals. Mechanistically, these stresses commonly act by perturbing the mitotic cell cycle via mitotic bypass, endoreplication, or failed cytokinesis. Polyploidy can enable tissue regeneration and buffer genomes but also increases genome instability, aneuploidy, and altered tissue function. Determining when polyploidy is adaptive versus harmful is presented as a key research priority for medicine and agriculture.

Conclusion:
Stress commonly induces polyploidy through conserved cell‑cycle alterations; its effects are context dependent, offering short‑term resilience or regeneration but often promoting genomic instability and long‑term functional costs, motivating cross‑discipline studies to understand mechanisms and applications.

Music:
Enjoy the music based on this article at the end of the episode.

Article title:
Growth under pressure: The pros and cons of polyploidy induced by stress

First author:
Sarabia Olivera L

Journal:
PNAS

DOI:
10.1073/pnas.2522063123

Reference:
Sarabia Olivera L, Belato PB, Silva J, Selmecki A, Fox DT, Roeder AHK. Growth under pressure: The pros and cons of polyploidy induced by stress. PNAS. 2026;123(22):e2522063123. doi:10.1073/pnas.2522063123

License:
This episode is based on an open-access article published under the Creative Commons Attribution 4.0 International License (CC BY 4.0) – https://creativecommons.org/licenses/by/4.0/

Support:
Base by Base – Stripe donations: https://donate.stripe.com/7sY4gz71B2sN3RWac5gEg00

Official website https://basebybase.com

On PaperCast Base by Base you'll discover the latest in genomics, functional genomics, structural genomics, and proteomics.

Episode link: https://basebybase.com/episodes/growth-under-pressure-polyploidy-stress

QC:
This episode was checked against the original article PDF and publication metadata for the episode release published on 2026-06-04.

QC Scope:
- article metadata and core scientific claims from the narration
- excludes analogies, intro/outro, and music
- transcript coverage: Audited the transcript sections describing (1) diverse stress triggers and cell-cycle bypass mechanisms leading to polyploidy, (2) ROS as a unifying stress signal, (3) consequences at genome, cellular, and tissue levels, and (4) implications for therapy and agriculture; compared with the canonical article.
- transcript topics: Stress-induced polyploidy triggers; Mitotic bypass and cytokinesis failure; ROS signaling and DNA damage response; Genomic instability and aneuploidy; Tissue regeneration vs senescence; Clinical and agricultural implications

QC Summary:
- factual score: 10/10
- metadata score: 10/10
- supported core claims: 6
- claims flagged for review: 0
- metadata checks passed: 4
- metadata issues found: 0

Metadata Audited:
- article_doi
- article_title
- article_journal
- license

Factual Items Audited:
- Transcript describes diverse stresses triggering polyploidy (temperature, pharmacological, genotoxic, nutrient, infection, tissue loss).
- ROS accumulation is presented as a universal master switch driving polyploidy.
- Polyploi...

Denne episoden er hentet fra en åpen RSS-feed og er ikke publisert av Podme. Den kan derfor inneholde annonser.

Episoder(444)

441: Evolutionary mapping of Cav1.3 functional sites

441: Evolutionary mapping of Cav1.3 functional sites

Tang X et al., PNAS - The authors apply an evolutionary sequence-covariation model to the Cav1.3 (CACNA1D) α1-subunit, map predicted pathogenicity onto structural models, and validate five predicted s...

14 Aug 24min

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

Lamkina EN et al., PNAS - This episode reviews a PNAS brief report showing that DENV-4 infection induces marked DNA damage in infected cells while broadly suppressing transcription of DNA repair pathw...

12 Aug 23min

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

440: DENV-4: Suppressing DNA Repair and Causing Genome Damage

Lamkina EN et al., PNAS - This episode reviews a PNAS brief report showing that DENV-4 infection induces marked DNA damage in infected cells while broadly suppressing transcription of DNA repair pathw...

12 Aug 23min

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

Longo LM et al., PNAS - This episode summarizes a PNAS study introducing CLSS, a contrastive two-tower protein language model that coembeds domain sequences, structures, and subsequences into a shared...

11 Aug 23min

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

Axakova A et al., The American Journal of Human Genetics - Axakova et al. generated a variant effect map for AIRE using an insulin‑promoter GFP reporter in HEK293 cells to measure the functional impac...

10 Aug 24min

437: Cell villages and Dirichlet modeling map human cell fitness genetics

437: Cell villages and Dirichlet modeling map human cell fitness genetics

Hanson C et al., The American Journal of Human Genetics - Hanson et al. combine pooled multi-donor human neural progenitor cell "villages" with Townlet, a hierarchical Dirichlet regression model, to e...

9 Aug 28min

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

Owino BO et al., PNAS - Using TurboID proximity proteomics and microscopy, researchers identify KIAP4 as the canonical member of a conserved Adhesion Related NTPase-like Domain (ARND) family that loca...

8 Aug 24min

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

Ember M et al., PNAS - This episode examines a cryo-EM study of Escherichia coli tRNA-guanine transglycosylase (TGT) that solves the enzyme structure and its covalent intermediate with tRNATyr. Unexpe...

7 Aug 19min

Populært innen Vitenskap

fastlegen
tingenes-tilstand
romkapsel
abels-tarn
jss
liberal-halvtime
vett-og-vitenskap-med-gaute-einevoll
rekommandert
villmarksliv
dekodet-2
sinnsyn
fjellsportpodden
rss-overskuddsliv
rss-rekommandert
tomprat-med-gunnar-tjomlid
rss-inn-til-kjernen-med-sunniva-rose
kvinnehelsepodden
hva-er-greia-med
rss-lundqvist-podden
diagnose