How the brain helps protect fertility from heat-induced damage
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As global temperatures continue to rise, scientists are racing to understand why heat so profoundly threatens fertility across the animal kingdom. A new study from the Hebrew University of Jerusalem and collaborators has uncovered a surprising answer: The brain itself may help decide whether reproductive cells can withstand environmental stress.
The research by Dr. Yonatan Tzur of Hebrew University, together with Dr. Chee Kiang Ewe, Dr. Hanna Achache and Professor Oded Rechavi of Tel Aviv University, reveals that nerve cells communicate with reproductive cells using RNA-based signaling, enabling the brain's perception of the environment to influence fertility long before damage occurs.
The findings, published in Current Biology, uncover a previously unknown pathway linking sensory perception, environmental stress and reproductive resilience.
Neurons prepare the germline
For decades, scientists believed that reproductive cells responded directly to environmental conditions such as heat. Instead, this study demonstrates that neurons actively help prepare and protect the germline—the cells that produce sperm and eggs—by transmitting molecular signals that influence how these cells cope with stressful conditions.
In the microscopic worm Caenorhabditis elegans, the researchers discovered that small RNA molecules produced in neurons help preserve fertility under heat stress. When this signaling pathway was disrupted, animals became largely infertile at elevated temperatures because their sperm failed to develop properly. Remarkably, restoring the pathway only in neurons substantially rescued fertility.
The researchers also identified an unexpected player in this process: oxygen-sensing neurons. Simply altering how the nervous system perceives oxygen—even without changing the surrounding environment—improved reproductive success under heat stress. This finding suggests that animals integrate multiple environmental cues before investing energy in reproduction, allowing the nervous system to anticipate whether conditions are favorable for producing healthy offspring.
A broader stress response
Beyond fertility, the neuronal signaling pathway also helps maintain the genetic integrity of reproductive cells, reducing DNA damage that accumulates during heat stress. The discovery provides new insight into how nervous systems coordinate whole-body responses to environmental challenges and raises the possibility that similar communication mechanisms could exist in other animals, including mammals.
"We found that the nervous system isn't simply reacting to the environment—it actively instructs reproductive cells on how to respond," said Tzur of the Hebrew University of Jerusalem. "The brain appears to integrate environmental information and relay it to the germline, helping preserve fertility under stressful conditions. It changes how we think about the relationship between the nervous system and reproduction."
Rechavi of Tel Aviv University added, "As climate change increasingly affects fertility across many species, understanding the mechanisms that naturally protect reproductive cells becomes especially important. Our work reveals a completely unexpected communication channel between the brain and the germline that may represent a fundamental biological strategy for adapting reproduction to changing environments."
The findings deepen scientists' understanding of how organisms balance reproduction with environmental stress and open new avenues for studying fertility, adaptation and the biological consequences of climate change.
Publication details
Chee Kiang Ewe et al, Neuronal RNAi and oxygen-sensing circuit shape germline resilience to heat stress, Current Biology (2026). DOI: 10.1016/j.cub.2026.06.016
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Citation: How the brain helps protect fertility from heat-induced damage (2026, August 3) retrieved 3 August 2026 from https://phys.org/news/2026-08-brain-fertility.html
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