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April 27, 2026Communications Biology0 citationsOpen Access

Gram-negative-staining Bacillaceae with thick cell wall and monoderm architecture uncover evolutionary diversity and challenge Gram-based classification

NGNorberto Garcia-MirandaMCMartha Espinosa CantellanoRHRogelio Hernández-Tamayo

Key Points

  • This research aims to explore the evolutionary diversity of Bacillaceae and challenge established Gram-staining classifications.
  • Utilized light and transmission-electron microscopy, antibiotic-sensitivity assays, and comparative genomics on 57 strains.
  • Identified Gram-negative-staining monoderms with thick peptidoglycan walls lacking outer membranes.
  • Analyzed the distribution of teichoic-acid biosynthetic pathways.
  • Identified Bacillaceae lineages that stained Gram-negative but retained thick peptidoglycan walls, demonstrating functional monoderm status.
  • All strains were highly susceptible to vancomycin and lysozyme, which are typically excluded by diderm envelopes.
  • Teichoic-acid biosynthesis showed patchy distribution and did not correlate with staining behavior.

Abstract

Gram staining has guided microbiology for over a century by coloring cells purple or pink, a read-out thought to distinguish monoderms (single membrane, thick peptidoglycan) from diderms (inner and outer membranes with thin wall). Here we show this rule fails repeatedly across Bacillaceae lineages historically deemed “Gram-positive”. By combining light and transmission-electron microscopy, antibiotic-sensitivity assays and comparative genomics across 57 strains, we identify “Gram-negative-staining monoderms” lacking outer membrane yet retaining thick peptidoglycan walls. These bacteria lack lipopolysaccharide- and β-barrel assembly-genes and remain highly susceptible to vancomycin and lysozyme (agents normally excluded by diderm envelopes), demonstrating functional monoderm status. Surprisingly, teichoic-acid biosynthetic pathways are patchily distributed and do not predict staining behavior. This discovery calls into question the textbook purple-or-pink dichotomy, decoupling stain color from membrane architecture. Clinically, misidentifying pink-staining Bacillaceae (including emerging pathogens such as Bacillus infantis) risks inappropriate therapy, whereas genome-guided diagnostics enable precise antibiotic stewardship. Genomic and microscopy evidence shows that the Bacillaceae, assumed to only stain Gram-positive, actually have some lineages staining Gram-negative, yet unexpectedly maintaining a thick wall and no outer membrane, challenging Gram staining assumptions.

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Cite This Study

Garcia-Miranda et al. (2026) studied this question.

synapsesocial.com/papers/69eefdb5fede9185760d4749https://doi.org/10.1038/s42003-026-10072-8
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