Javascript must be enabled to continue!
A metagenomic catalog of the early-life human gut virome
View through CrossRef
AbstractEarly-life human gut microbiome is a pivotal driver of gut homeostasis and infant health. However, the viral component (known as “virome”) remains mostly unexplored. Here, we establish the Early-Life Gut Virome (ELGV), a catalog of 160,478 non-redundant DNA and RNA viral sequences from 8130 gut virus-like particles (VLPs) enriched or bulk metagenomes in the first three years of life. By clustering, 82,141 viral species are identified, 68.3% of which are absent in existing databases built mainly from adults, and 64 and 8 viral species based on VLPs-enriched and bulk metagenomes, respectively, exhibit potentials as biomarkers to distinguish infants from adults. With the largest longitudinal population of infants profiled by either VLPs-enriched or bulk metagenomic sequencing, we track the inherent instability and temporal development of the early-life human gut virome, and identify differential viruses associated with multiple clinical factors. The mother-infant shared virome and interactions between gut virome and bacteriome early in life are further expanded. Together, the ELGV catalog provides the most comprehensive and complete metagenomic blueprint of the early-life human gut virome, facilitating the discovery of pediatric disease-virome associations in future.
Springer Science and Business Media LLC
Title: A metagenomic catalog of the early-life human gut virome
Description:
AbstractEarly-life human gut microbiome is a pivotal driver of gut homeostasis and infant health.
However, the viral component (known as “virome”) remains mostly unexplored.
Here, we establish the Early-Life Gut Virome (ELGV), a catalog of 160,478 non-redundant DNA and RNA viral sequences from 8130 gut virus-like particles (VLPs) enriched or bulk metagenomes in the first three years of life.
By clustering, 82,141 viral species are identified, 68.
3% of which are absent in existing databases built mainly from adults, and 64 and 8 viral species based on VLPs-enriched and bulk metagenomes, respectively, exhibit potentials as biomarkers to distinguish infants from adults.
With the largest longitudinal population of infants profiled by either VLPs-enriched or bulk metagenomic sequencing, we track the inherent instability and temporal development of the early-life human gut virome, and identify differential viruses associated with multiple clinical factors.
The mother-infant shared virome and interactions between gut virome and bacteriome early in life are further expanded.
Together, the ELGV catalog provides the most comprehensive and complete metagenomic blueprint of the early-life human gut virome, facilitating the discovery of pediatric disease-virome associations in future.
Related Results
Choice of assembly software has a critical impact on virome characterisation
Choice of assembly software has a critical impact on virome characterisation
Abstract
Background
The viral component of microbial communities play a vital role in driving bacterial di...
The Human Virome in Health and Its Remodeling During HIV Infection and Antiretroviral Therapy: A Narrative Review
The Human Virome in Health and Its Remodeling During HIV Infection and Antiretroviral Therapy: A Narrative Review
The human virome represents a fundamental yet understudied component of the microbiome, influencing immune regulation and disease. Given the profound immune dysregulation and micro...
The Application of The Skin Virome for Human Identification
The Application of The Skin Virome for Human Identification
Abstract
The use of skin virome for human identification purposes offers a unique approach to instances where a viable and statistically relevant...
A previously undescribed highly prevalent phage identified in a Danish enteric virome catalogue
A previously undescribed highly prevalent phage identified in a Danish enteric virome catalogue
Abstract
Background: Gut viruses are important players in the complex human gut microbial ecosystem. Recently, the number of human gut virome studies is steadily increasing...
INTRICATE INTERPLAY OF BACTERIA, VIRUS & OUR IMMUNE SYSTEM.
INTRICATE INTERPLAY OF BACTERIA, VIRUS & OUR IMMUNE SYSTEM.
Over the past few years, the utilization of metagenomic sequencing techniques and analogous methodologies has significantly advanced our comprehension of the human virome's diversi...
Tameness selection pressure affects gut virome diversity in mice
Tameness selection pressure affects gut virome diversity in mice
Abstract
The gut microbiome, a complex ecosystem comprising bacteria, viruses, archaea, fungi, and other microorganisms, plays a pivotal role in ...
Viral Dark Matter in the Gut Virome of Elderly Humans
Viral Dark Matter in the Gut Virome of Elderly Humans
The human virome is an area of increasing interest with relation to human health and disease. It has been demonstrated to alter in concert with the bacterial microbiome in early li...
Viral Dark Matter in the Gut Virome of Elderly Humans
Viral Dark Matter in the Gut Virome of Elderly Humans
The human virome is an area of increasing interest with relation to human health and disease. It has been demonstrated to alter in concert with the bacterial microbiome in early li...

