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This paper is not a detailed guide, but rather a rough overview of methods that might be important for evolutionary systems biology with an indication of how they could fit together into the big picture.
More recently it has been suggested that protein interactions between transcription factors and co-regulator proteins they recruit to target genes may also be important for evolutionary potential [ 11, 12].
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Individual variation in gene expression is important for evolutionary adaptation1,2 and susceptibility to diseases and pathologies3,4.
"The discovery is important for evolutionary biologists because it helps us understand how plants colonized land," said Jocelyn Rose, professor of plant biology, director of the Cornell Institute of Biotechnology and a co-author of the paper.
In addition, the effects of a periodically varying environment are important for evolutionary theory as the selective forces on systems in a fluctuating environment differ from those in a stable environment.
Indeed, the effects of an almost periodically varying environment are important for evolutionary theory as the selective forces on systems in a fluctuating environment differ from those in a stable environment.
It seems more likely that single motif gM mutants have subtle defects that are important for evolutionary fitness, where a 10% difference in virus transmissibility would have a major impact, but hard to detect in experimental pathogenesis, where transmission is hard to reproduce and limits on animal numbers make replication reductions of <90% hard to demonstrate.
Accordingly, both structural proteins and replicative proteins are important for evolutionary reconstructions.
Understanding how and why early conditions have such marked effects is important for evolutionary biologists studying phenotypic plasticity and the origins of individual differences.
More generally, our multi-tissue transcriptome is important for evolutionary analyses of any adaptive protein system present in spiders and provides extensive resources for the production of silk through recombinant or synthetic biology approaches.
Inclusion of the tetraploid parents containing the functional Ph1 gene in the synthesis of the allohexaploid wheat lines is important for evolutionary relevance as this is the case in the formation of natural common wheat [ 37].
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