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That sort of structural autarky represents a huge functional constraint; building machines that must carry the equipment to detect everything they'll need to detect to do their jobs, process the incoming information, and draw upon an internal database that covers most every eventuality greatly limits the functions that can economically be done by robots.
It is not so obvious why further cross-linking should have here the huge functional relevance that has been observed experimentally.
Recent developments in metagenomics-based analyses of the soil microbiota have enabled us to unlock the huge functional diversity, yielding access to novel genes and useful biomolecules (Ferrer et al. 2005; Simon and Daniel 2009; Nacke et al. 2011).
Interestingly, the distribution of the number of PGP activities displayed by the strains in the three study sites revealed a similar distribution profile (96% in Italy, 97% in Tunisia, and 94% in Egypt), supporting the hypothesis that a huge functional PGP potential is maintained in grapevine root systems, 5(b), and 5(c)).
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Implementation is a huge undertaking, requiring functional responsibility from multiple teams working in unison across the organization.
In the case of the huge bank of functional information embedded in biological systems, the best explanation – based on the observation everywhere else that such information only arises from intelligence – is that it too has an intelligent source.
One of the most crucial high performance systems-on-chip design challenge is to front their power supply noise sufferance due to high frequencies, huge number of functional blocks and technology scaling down.
The accessibility of huge sequenced genomes, functional genomics studies, the development of in silico models at the genome scale, metabolic pathway reconstruction, and synthetic biology approach predicts engineering strategies to enhance H2 production in an organism.
In this context, reversible addition-fragmentation chain transfer polymerization/macromolecular design by interchange of xanthates (RAFT/MADIX) technology is a fantastic tool that can be easily performed in mild and "green" conditions, being compatible with a huge variety of functional monomers and providing an excellent control of the organic shell characteristics.
The advent of next-generation sequencing (NGS) technologies has had a huge impact on functional genomics [ 1].
ESTs contain a huge amount of functional information that can greatly accelerate the research and discovery of new genes [ 24] and molecular markers [ 25, 26].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com