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◇ bioRxiv2026-09-07· microbiology

Outer membrane 'PusCD' complexes coordinate phospho(inositol)lipid utilisation in plant Bacteroidota

A. N. Connolly, L. Moushtaq, P. Qian, A. A. Brindley, D. J. Scanlan, B. van den Berg, A. Hitchcock, I. Lidbury

原始摘要(英文原文)· Original abstract
Gram-negative bacteria belonging to the phylum Bacteroidota are prominent and ecologically important members of host-associated microbiomes. A feature of Bacteroidota species is the presence of diverse outer membrane TonB-dependent transporter and cognate surface exposed lipoprotein (TBDT-SLP) complexes. Many 'SusCD-like' TBDT-SLPs coordinate complex carbohydrate capture from the environment. Here, we show the model soil Bacteroidota species Flavobacterium johnsoniae synthesises two TBDT-SLP complexes (named PusCD1 and PusCD2) that are essential for growth on phosphatidylinositol, a member of an abundant lipid class within plant plasma membranes, as a phosphorus source. Structural characterisation of ligand-bound PusCD1 complex from F. johnsoniae membranes reveals a new binding mechanism for organophosphorus and broadens the known functional repertoire of this class of transporters. Diverse PusCD-like complexes are widespread among plant associated Bacteroidota, pointing to a major, previously unrecognised route for the recycling of organophosphorus compounds in the rhizosphere, with potential implications for engineering microbial-mediated phosphorus recovery from organic waste streams.
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Outer membrane 'PusCD' complexes coordinate phospho(inositol)lipid utilisation in plant Bacteroidota — 科研速览 Science Skim