Evaluation of full-length 16S rRNA amplicon sequencing using Oxford Nanopore Technologies for diversity surveys of understudied microbiomes
O_LIThe use of long-read sequencing using portable Oxford Nanopore Technologies (ONT) is becoming increasingly popular in the study of host-associated microbiomes. However, its application has not yet been optimized for characterizing understudied microbiomes, such as those in marine environments. C_LIO_LIWe evaluated the accuracy and consistency of ONT sequencing of full-length 16S rRNA genes for diversity surveys of symbiotic dinoflagellate (family Symbiodiniaceae) microbiomes. C_LIO_LIWhen comparing amplicon sequencing of the full-length bacterial 16S rRNA gene with only its V4 hypervariable gene region using a known microbial community, the former recapitulated the bacterial taxonomic composition more accurately. C_LIO_LIONT sequencing was also highly consistent between sequencing runs and flow cells. C_LIO_LILong-read sequencing technologies enable microbiome surveys using the full-length 16S rRNA gene, achieving higher accuracy and resolution. C_LIO_LIThis work validates ONT long-read sequencing as a powerful tool for marine microbiome studies to catalyze advancements in the fields of ecology and evolution, resource management, and conservation. C_LI