Fragmented Microbial Networks and Moraxella-Driven Airway Clustering Characterize Preschool Wheezers Across the Gut – Airways Axis
Abstract
Abstract Early-life wheezing in children has been associated with microbial alterations along the gut-airway axis, yet studies simultaneously investigating bacterial communities in both compartments remain scarce. The aim of this cross-sectional exploratory pilot study ( n = 25) was to characterize and compare nasal and stool bacterial communities in preschool children aged 1–4 years with recurrent wheezing and healthy controls using 16S rRNA gene metabarcoding. Across participants, nasal and stool bacteriomes were highly individualized and taxonomically diverse. Overall richness, evenness, and community composition did not differ significantly between healthy children and wheezers in either compartment. However, wheezers displayed markedly higher within-group variability, particularly in nasal communities. Stratification based on microbiome similarity to healthy samples revealed increased Moraxella and reduced commensal genera including Prevotella spp. and Veillonella , along with lower richness and evenness (all p < 0.001) in nasal samples with divergent bacterial communities. Stool alterations were more subtle but included trends toward reduced Bacteroides , Faecalibacterium , and Alistipes in wheezers more divergent from healthy controls. Community assembly in both compartments was largely governed by stochastic processes but accompanied by less complex and more fragmented bacterial interaction networks in wheezing children. Cross-compartment correlations were also altered, most prominently involving stool Lactococcus showing stronger and more numerous correlations with nasal taxa in wheezers than in healthy controls. Divergent wheezers exhibited distinct modular network structure and cross-compartment profiles, consistent with a differentiated microbial organization. Together, these findings suggest compartment-specific differences in microbial interaction patterns across the gut–airway axis in early-life wheezing, despite limited differences in overall community diversity.
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Authors: Silvia Gschwendtner, Nicole Maison, Sabina Illi, Erika von Mutius, Ilona Rosenboom, Burkhard Tümmler, Anna-Maria Dittrich, Markus Weckmann, Mustafa Abdo, Benjamin Waschki, Matthias V. Kopp, Gesine Hansen, Folke (Prof. Dr. med.) Brinkmann, Klaus Rabe, Bianca Schaub, Michael Schloter, the ALLIANCE Study Group, Mira Bürk, Sybille Contento, Markus Ege, Alexander Höse, Constanze Jakwerth, Lena Lagally, Jimmy Omony, CB Schmidt-Weber, Lena Ullemeyer, Esther Zeitlmann, Thomas Bahmer, Heike Biller, Constantin Blanke-Roeser, Karoline I. Gaede, Wiebke Hagedorn, Nikolas Jacobs, Anne-Marie Kirsten, Inke R. König, Lea Kronziel, Gyde Nissen, Wasifa Nurieva, Frauke Pedersen, Loana Penner, Isabell Ricklefs, Silke Szymczak, Vera Veith, Henrik Watz, Christopher Wirks, Marie Bickes, Mifflin-Rae Calvero, David S. DeLuca, Svenja Gaedcke, Ruth Grychtol, Anika Habener, Christine Happle, Adan Chari Jirmo, Bin Liu, Lennart Riemann, Svenja Foth, Inga Jerrentrup, Harald Renz, Chrysanthi Skevaki, Stefanie Weber, Miguel AAlejandre Alcazar, Lena Keufken, Silke van Koningsbruggen-Rietschel, Ernst Rietschel, Tobias Trojan, Jan-Christoph Thomassen