Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress
Ewe CK, Achache H, Schön H, Kontorovich L, Teichman G, Weiss S, Mogilevskaya A, Valenski M, Anava S, Bardapurkar R, Gingold H, Posner R, Antonova O, de Bono M, Tzur YB, Rechavi O. Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress. Current Biology.
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Author
Ewe, Chee Kiang;
Achache, Hanna;
Schön, HannaISTA;
Kontorovich, Leonid;
Teichman, Guy;
Weiss, Shir;
Mogilevskaya, Anna;
Valenski, Myriam;
Anava, Sarit;
Bardapurkar, Rutwik;
Gingold, Hila;
Posner, Rachel
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Abstract
Thermal pollution, whether local or driven by global warming, threatens biodiversity in part through its detrimental effects on reproduction. Non-coding small RNAs (sRNAs) are crucial for maintaining germline developmental robustness under heat stress. Remarkably, we uncovered that neuronal sRNAs regulate germ cells’ thermotolerance, affecting both spermatogenic and oogenic germlines in a cell-non-autonomous manner. Furthermore, we demonstrate that, in RNAi mutants, an oxygen-sensing neural circuit, modulated by neuropeptide signaling, antagonizes germline maintenance, likely reflecting the nematode’s innate association of reduced oxygen levels with food availability and reproductive permissive environments. Finally, we provide evidence that laboratory-domesticated alleles of oxygen-response genes encoding neuropeptide receptor NPR-1 and hexacoordinated globin GLB-5 compromise germline thermotolerance. Hence, our findings raise the possibility that sensory perception, independent of direct environmental change, modulates germline integrity, highlighting a novel mechanism by which neural circuits integrate environmental information to safeguard reproductive fitness in fluctuating environments.
Publishing Year
Date Published
2026-07-06
Journal Title
Current Biology
Publisher
Elsevier
Acknowledgement
We thank Itai Reiger for their assistance with experiments. We thank Cori Bargmann (Rockefeller University) for providing introgressed strains carrying HW alleles of npr-1 and glb-5. Some graphics were created with Biorender.com. We are grateful to WormBase for providing valuable data and resources. Some strains were provided by the Caenorhabditis Genetics Center (CGC), which is funded by NIH Office of Research Infrastructure Programs (P40 OD010440). O.R. is grateful for the support of the Morris Kahn Foundation. C.K.E. was supported by an EMBO fellowship ALTF 6-2022. This work is funded by Eric and Wendy Schmidt Fund for Strategic Innovation Polymath Award 0140001000 (O.R.); European Research Council grant 335624 (O.R.); Israel Science Foundation 979/21 (Y.B.T.); and the US-Israel Binational Science Foundation 2023036 (Y.B.T.).
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Cite this
Ewe CK, Achache H, Schön H, et al. Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress. Current Biology. doi:10.1016/j.cub.2026.06.016
Ewe, C. K., Achache, H., Schön, H., Kontorovich, L., Teichman, G., Weiss, S., … Rechavi, O. (n.d.). Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress. Current Biology. Elsevier. https://doi.org/10.1016/j.cub.2026.06.016
Ewe, Chee Kiang, Hanna Achache, Hanna Schön, Leonid Kontorovich, Guy Teichman, Shir Weiss, Anna Mogilevskaya, et al. “Neuronal RNAi and Oxygen-Sensing Circuit Shape Germline Resilience to Heat Stress.” Current Biology. Elsevier, n.d. https://doi.org/10.1016/j.cub.2026.06.016.
C. K. Ewe et al., “Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress,” Current Biology. Elsevier.
Ewe CK, Achache H, Schön H, Kontorovich L, Teichman G, Weiss S, Mogilevskaya A, Valenski M, Anava S, Bardapurkar R, Gingold H, Posner R, Antonova O, de Bono M, Tzur YB, Rechavi O. Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress. Current Biology.
Ewe, Chee Kiang, et al. “Neuronal RNAi and Oxygen-Sensing Circuit Shape Germline Resilience to Heat Stress.” Current Biology, Elsevier, doi:10.1016/j.cub.2026.06.016.
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