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The microbial taxonomy is based on the characteristics of microorganisms that can be objectively observed and measured.
Microbial taxonomy is critically important for different fields, including medicine, agriculture, marine ecology and conservation [ 74].
A major advantage of 16S rRNA gene sequences in microbial taxonomy is that it is universally applicable and taxonomically predictive.
It shows that adopting a pluralistic approach to microbial taxonomy is not as radical as one might think.
However, the field of taxonomy as a subfield of biology, and particularly microbial taxonomy, is on the decline.
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A prediction was considered as 'correct' when this closest microbial genome taxonomy was the same as the original genome in which the viral sequence was detected.
Microbial Taxonomy Ontology is developed for the three domain system of microbes for the domain Bacteria which will be helpful for the study of Agriculturally Important Microbes (Bacteria).
In this age of rapid and rampant gene sequencing, the availability of a large amount of genomic information from 639 sequenced genomes (http://www.ncbi.nlm.nih.gov) and 16S rDNA sequencing data of 451545 isolates (http://rdp.cme.msu.edu/) has given new dimensions to microbial taxonomy and is likely to lead to revision of concepts such as species, organism and evolution [2].
These include global and culture-independent studies based on the sequence analysis of the small subunit ribosomal RNA SSUU rRNA) that had provided the molecular basis for microbial taxonomy that is currently used (Woese et al., 1990).
It is plausible to consider that microbial taxonomy will be steadily more dependent on genome sequences than relying on the classic polyphasic, including phenotypic characterization using time-consuming laborious laboratory tests.
But language, unlike taxonomy, is particularly susceptible to Wikiality.
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