Author:
Martin Lauren C.,O’Hare Michaela A.,Ghielmetti Giovanni,Twesigomwe David,Kerr Tanya J.,Gumbo Rachiel,Buss Peter E.,Kitchin Natasha,Hemmings Sian M. J.,Miller Michele A.,Goosen Wynand J.
Abstract
AbstractHypervariable region sequencing of the 16S ribosomal RNA (rRNA) gene plays a critical role in microbial ecology by offering insights into bacterial communities within specific niches. While providing valuable genus-level information, its reliance on data from targeted genetic regions limits its overall utility. Recent advances in sequencing technologies have enabled characterisation of the full-length 16S rRNA gene, enhancing species-level classification. Although current short-read platforms are cost-effective and precise, they lack full-length 16S rRNA amplicon sequencing capability. This study aimed to evaluate the feasibility of a modified 150 bp paired-end full-length 16S rRNA amplicon short-read sequencing technique on the Illumina iSeq 100 and 16S rRNA amplicon assembly workflow by utilising a standard mock microbial community and subsequently performing exploratory characterisation of captive (zoo) and free-ranging African elephant (Loxodonta africana) respiratory microbiota. Our findings demonstrate that, despite generating assembled amplicons averaging 869 bp in length, this sequencing technique provides taxonomic assignments consistent with the theoretical composition of the mock community and respiratory microbiota of other mammals. Tentative bacterial signatures, potentially representing distinct respiratory tract compartments (trunk and lower respiratory tract) were visually identified, necessitating further investigation to gain deeper insights into their implication for elephant physiology and health.
Funder
National Research Foundation
South African Medical Research Council
National Research Foundation, South Africa
American Association of Zoo Veterinarians
Wellcome Trust
Publisher
Springer Science and Business Media LLC
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