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These findings show that the folding of fluorescent proteins is not necessarily correlated with the temperature adaptations of the animals they originated from.
Similarly, temperature in the deep-sea is generally low, typically in the range 2 to 4°C, necessitating low temperature adaptations, particularly in enzyme systems [1], [2].
In the absence of fast moving, powerful predators, the costs of skeletal defenses and relatively high metabolic rates found in derived bivalve families might be disadvantageous, particularly in cold environments where temperature adaptations are themselves costly and figure into evolutionary tradeoffs [32], and hence could have produced a phylogenetically clustered extinction.
First, the partitioning of the data sets to represent lower and higher temperature adaptations was arbitrary.
However, the relationship between high and low temperature adaptations remains unclear.
Overall, four amino acids including Arg, Ser, Pro, and Met showed different patterns between the subsets of data for higher and lower temperature adaptations.
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Although batch cultures are well-suited to study low temperature adaptation dynamics, they are poorly adapted to study prolonged exposure to low temperature.
Species pairs in which the ancestral species was thermophilic and one lineage then adapted to lower temperatures may show different patterns of temperature adaptation than species pairs in which the ancestor was mesophilic and one lineage adapted to higher temperatures (Berezovsky and Shakhnovich 2005).
Our results provide a framework for further research on epigenetic temperature adaptation of invasive species to better explain and predict their rapid range expansions.
This chapter outlines the evolutionary protein design methods that are used to help uncover the molecular basis for temperature adaptation in enzymes.
Here, the structural stabilizing role of residue Lys209 was verified, and semi-rational protein design was applied to further improve capacity of higher temperature adaptation.
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temperature adjusts
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water adaptations
climate adaptations
temperature adaptive
ambient adaptations
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temperature revision
temperature alignment
thermal adaptations
temperature responsiveness
were adaptations
temperature adaption
temperature adjusting
cold adaptations
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