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The evolutionary relationships between different organisms are derived from the data.
Evolutionary distances for organisms can be calculated using bioinformatics tools.
Paleogenetic trees can be built to trace relationships between organisms.
The lineage between many species and organisms is well understood.

proteomics
Bioinformatics helps to decode protein sequences.
It also helps us to understand the structure of proteins.
We can also understand the changes in the translation of proteins with the help of bioinformatics.
We have a good understanding of protein-protein interactions in various biological reactions.
This will enable us to create databases of these arrays and structures.

systems biology
Bioinformatics can help us model genetic and protein control mechanisms.
Network
Such models can be tested to identify the key controllers in these networks.
In addition, the samples may help evaluate drugs to treat these key regulators.

Conclusion
Bioinformatics can be applied to life in many ways, helping to understand the sequence
Functions of biological molecules and their interactions. Latest trends in bioinformatics are accompanied by progress
Individualized treatment for cancer and diabetes.
6 Bioinformatics Applications – II

Bioinformatics is used for general information in a number of ways, such as genomics and transcriptomics.
Proteomics, Metabolism, Structural Proteomics, Pharmaceutical Design, Systems Biology and
Adaptation of drugs for recovery.

In addition to these applications, bioinformatics has introduced technologies that allow us to produce
Big data on biology and its uses. Subsequent applications of bioinformatics
Moving from the genetic level to the complete computer level.

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