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◆ PLoS pathogens2026-08-17· Biology

A genome-wide in vivo screen reveals fitness pathways required for streptococcal infective endocarditis.

Liang Bao, Jennifer L Bradley, Vysakh Anandan, Katarzyna M Tyc, Zan Zhu, Josephina Anna Vossen, Valery-Francine Assi, Jasmine Somia Benbei, Nicai Zollar, Todd Kitten, Ping Xu

原始摘要(英文原文)· Original abstract
Infective endocarditis (IE) is a life-threatening disease most often caused by blood-borne bacteria that infect previously damaged cardiac tissue. Despite the importance of this disease, the genetic basis for IE-associated fitness remains poorly defined. Here, we present the first genome-wide in vivo analysis of bacterial fitness in a vertebrate model of IE. We identified 146 genes in Streptococcus sanguinis required for IE fitness, the majority of which had not previously been linked to endocarditis. These determinants cluster into conserved metabolic, cell envelope, transport, and regulatory pathways, representing a vast reservoir of potential targets for novel antimicrobial intervention. A subset of these genes was examined in Streptococcus mutans; all were found to be essential for IE fitness in this distantly related oral species as well, suggesting broad conservation. Using experimental evolution, we further show that disruption of key fitness pathways triggers reproducible compensatory "bypass" mechanisms. Together, these findings provide a comprehensive, genome-wide map of the bacterial niche-requirements for streptococcal infective endocarditis.
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A genome-wide in vivo screen reveals fitness pathways required for streptococcal infective endocarditis. — 科研速览 Science Skim