Mechanisms and Consequences of Inclusive Inheritance
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AI plain-English summaryA single roundworm generation lasts just three days, and its entire genome can be edited with precision—making it the ideal organism to watch non-genetic inheritance in action. This research tackles a blind spot in biology: the assumption that only DNA sequence is passed from parent to offspring. Studies in plants, flies, and microbes have shown that other molecular marks—epigenetic changes—can also be inherited, but the mechanisms in humans remain unknown. The team will use the roundworm *C. elegans* to discover new molecular pathways for non-DNA inheritance, then test whether similar processes operate in African cichlid fish, a vertebrate with extraordinary adaptive radiation. This is fundamental science. It does not promise a near-term medical application. But if epigenetic inheritance proves to be a widespread mechanism shaping health and disease susceptibility, it could eventually reframe how we understand heritable risk for conditions such as obesity, diabetes, or mental illness—where family history matters but standard genetic tests often come up empty.
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