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◆ FEBS letters2026-08-31

From junk to function - How weak selection in eukaryotes builds new parts and drives genomic complexity.

Alexander F Palazzo, Yi Qiu

原始摘要(英文原文)· Original abstract
How do eukaryotic genomes acquire new functional parts, such as regulatory elements and long non-coding RNAs? Here, we propose that these parts arise from non-functional precursors primarily through non-adaptive processes that proliferate when selection is weak. Borrowing concepts from Markov chain theory, we represent each stage along the junk-to-function continuum as a discrete state with defined transition probabilities. This formalism makes clear why selection cannot act on future function, and why a part's current biochemical activity may be unrelated to its evolutionary past. We show how, under certain conditions, new intermediate states appear that increase the forward flux from junk DNA to new functional parts. These conditions-weak selection, abundant epistasis and quality control processes, and the accumulation of messiness-are characteristic of many eukaryotic genomes, allowing them to become more complex as new functional parts emerge.
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From junk to function - How weak selection in eukaryotes builds new parts and drives genomic complexity. — 科研速览 Science Skim