%0 Journal Article %J mBio %D 2023 %T Transcriptional Mechanisms of Thermal Acclimation in \textit{Prochlorococcus %A Alonso-Sáez, Laura %A Palacio, Antonio S. %A Cabello, Ana M. %A Robaina-Estévez, Semidán %A González, José M. %A Garczarek, Laurence %A López-Urrutia, Ángel %E Martiny, Jennifer B. H. %K RCC3377 %X Low temperature limits the growth and the distribution of the key oceanic primary producer Prochlorococcus, which does not proliferate above a latitude of ca. 40°. Yet, the molecular basis of thermal acclimation in this cyanobacterium remains unexplored. We analyzed the transcriptional response of the Prochlorococcus marinus strain MIT9301 in long-term acclimations and in natural Prochlorococcus populations along a temperature range enabling its growth (17 to 30°C). MIT9301 upregulated mechanisms of the global stress response at the temperature minimum (17°C) but maintained the expression levels of genes involved in essential metabolic pathways (e.g., ATP synthesis and carbon fixation) along the whole thermal niche. Notably, the declining growth of MIT9301 from the optimum to the minimum temperature was coincident with a transcriptional suppression of the photosynthetic apparatus and a dampening of its circadian expression patterns, indicating a loss in their regulatory capacity under cold conditions. Under warm conditions, the cellular transcript inventory of MIT9301 was strongly streamlined, which may also induce regulatory imbalances due to stochasticity in gene expression. The daytime transcriptional suppression of photosynthetic genes at low temperature was also observed in metatranscriptomic reads mapping to MIT9301 across the global ocean, implying that this molecular mechanism may be associated with the restricted distribution of Prochlorococcus to temperate zones. %B mBio %P e03425–22 %G eng %U https://journals.asm.org/doi/10.1128/mbio.03425-22 %R 10.1128/mbio.03425-22