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A Method for Targeted 16S Sequencing of Human Milk Samples
Published on: March 23, 2018
Optimisation and Application of a Novel Method to Identify Bacteriophages in Maternal Milk and Infant Stool
Gregory R Young1,2, Wen C Yew1, Andrew Nelson1
1Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne, United Kingdom.
Abstract:
Human milk oligosaccharides, proteins, such as lactoferrin, and bacteria represent just some of the bioactive components of mother's breast milk (BM). Bacteriophages (viruses that infect bacteria) are an often-overlooked component of BM that can cause major changes in microbial composition and metabolism. BM bacteriophage composition has been explored in term and healthy infants, suggesting vertical transmission of bacteriophages occurs between mothers and their infants. Several important differences between term and very preterm infants (<30 weeks gestational age) may limit this phenomenon in the latter. To better understand the link between BM bacteriophages and gut microbiomes of very preterm infants in health and disease, standardised protocols are required for isolation and characterisation from BM. In this study, we use isolated nucleic acid content, bacteriophage richness and Shannon diversity to validate several parameters applicable during bacteriophage isolation from precious BM samples. Parameters validated include sample volume required; centrifugal sedimentation of microbes; hydrolysis of milk samples with digestive enzymes; induction of temperate bacteriophages and concentration/purification of isolated bacteriophage particles in donor milk (DM). Our optimised method enables characterisation of bacteriophages from as little as 0.1 mL BM. We identify viral families that were exclusively identified with the inclusion of induction of temperate bacteriophages (Inoviridae) and hydrolysis of milk lipid processes (Iridoviridae and Baculoviridae). Once applied to a small clinical cohort we demonstrate the vertical transmission of bacteriophages from mothers BM to the gut of very preterm infants at the species level. This optimised method will enable future research characterising the bacteriophage composition of BM in very preterm infants to determine their clinical relevance in the development of a healthy preterm infant gut microbiome.
Insights
Bacteriophages, viruses in breast milk (BM), are transmitted from mothers to very preterm infants. An optimized method allows characterization of these viruses from small BM samples, aiding research into infant gut microbiome development.
Area of Science:
- Microbiology
- Virology
- Neonatal Research
Background:
- Breast milk (BM) contains bioactive components, including bacteria and bacteriophages (viruses infecting bacteria).
- Bacteriophages in BM are implicated in shaping infant gut microbial composition and metabolism.
- Understanding bacteriophage transmission and impact in very preterm infants (<30 weeks gestational age) is crucial for their health.
Purpose of the Study:
- To develop and validate standardized protocols for isolating and characterizing bacteriophages from human breast milk.
- To investigate the link between BM bacteriophages and the gut microbiomes of very preterm infants.
- To assess the vertical transmission of bacteriophages from mothers to their very preterm infants.
Main Methods:
- Validation of parameters for bacteriophage isolation including sample volume, centrifugation, enzymatic hydrolysis, and induction of temperate phages.
- Utilized nucleic acid content, bacteriophage richness, and Shannon diversity for characterization.
- Applied the optimized method to a small clinical cohort of mothers and very preterm infants.
Main Results:
- An optimized method allows bacteriophage characterization from as little as 0.1 mL of BM.
- Identified viral families (e.g., Inoviridae, Iridoviridae, Baculoviridae) using specific isolation techniques.
- Demonstrated species-level vertical transmission of bacteriophages from maternal BM to the gut of very preterm infants.
Conclusions:
- The optimized method provides a standardized approach for BM bacteriophage analysis.
- This research confirms vertical transmission of bacteriophages from mothers to very preterm infants.
- The findings will facilitate future studies on the clinical relevance of BM bacteriophages in preterm infant gut microbiome development.
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