Advantages and Limitations of 16S rRNA Next-Generation Sequencing for Pathogen Identification in the Diagnostic Microbiology Laboratory: Perspectives from a Middle-Income Country

Bacterial culture and biochemical testing (CBtest) have been the cornerstone of pathogen identification in the diagnostic microbiology laboratory. With the advent of Sanger sequencing and later, next-generation sequencing, 16S rRNA next-generation sequencing (16SNGS) has been proposed to be a plausi...

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Veröffentlicht in:Diagnostics (Basel) 2020-10, Vol.10 (10), p.816
Hauptverfasser: Muhamad Rizal, Nurnabila Syafiqah, Neoh, Hui-min, Ramli, Ramliza, A/L K Periyasamy, Petrick @ Ramesh, Hanafiah, Alfizah, Abdul Samat, Muttaqillah Najihan, Tan, Toh Leong, Wong, Kon Ken, Nathan, Sheila, Chieng, Sylvia, Saw, Seow Hoon, Khor, Bee Yin
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Sprache:eng
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Zusammenfassung:Bacterial culture and biochemical testing (CBtest) have been the cornerstone of pathogen identification in the diagnostic microbiology laboratory. With the advent of Sanger sequencing and later, next-generation sequencing, 16S rRNA next-generation sequencing (16SNGS) has been proposed to be a plausible platform for this purpose. Nevertheless, usage of the 16SNGS platform has both advantages and limitations. In addition, transition from the traditional methods of CBtest to 16SNGS requires procurement of costly equipment, timely and sustainable maintenance of these platforms, specific facility infrastructure and technical expertise. All these factors pose a challenge for middle-income countries, more so for countries in the lower middle-income range. In this review, we describe the basis for CBtest and 16SNGS, and discuss the limitations, challenges, advantages and future potential of using 16SNGS for bacterial pathogen identification in diagnostic microbiology laboratories of middle-income countries.
ISSN:2075-4418
2075-4418
DOI:10.3390/diagnostics10100816