Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity of marine microbiomes

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Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Design of mutants in the dimer interface of DERA orthologs. ( a,b )
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Global Change Biology, Environmental Change Journal
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Trading off stability against activity in extremophilic aldolases
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Bubbling beyond the barrier: exosomal RNA as a vehicle for soma–germline communication - Phillips - The Journal of Physiology - Wiley Online Library
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Substrate profiles of the wild-type LAE2, LAE5, and LAE7 ␣ / ␤ hydro
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity of marine microbiomes
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Thermal adaptation of microbial community isozymes from sea
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Response of the enriched heterotrophic bacterial fraction from
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
Microbiomes shaped by enzymes' responses to ocean temperatures - KAUST Discovery
Enzyme adaptation to habitat thermal legacy shapes the thermal plasticity  of marine microbiomes
The modeled changes in temperature and the growth of each strain over
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