Yttrium immobilization through biomineralization with phosphate by the resistant strain Mesorhizobium qingshengii J19

Author:

Coimbra Carina1,Branco Rita1,da Silva Pedro S P2,Paixão José A2,Martins Jean M F3,Spadini Lorenzo3,Morais Paula V1

Affiliation:

1. University of Coimbra, Centre for Mechanical Engineering, Materials and Processes, ARISE, Department of Life Sciences , 3000-456 Coimbra , Portugal

2. University of Coimbra, CFisUC, Department of Physics , 3004-516 Coimbra , Portugal

3. Univ. Grenoble Alpes, CNRS, IRD, Grenoble-INP, IGE , 38000 Grenoble , France

Abstract

Abstract Aims Yttrium (Y) holds significant industrial and economic importance, being listed as a critical element on the European list of critical elements, thus emphasizing the high priority for its recovery. Bacterial strategies play a crucial role in the biorecovery of metals, offering a promising and environmentally friendly approach. Therefore, gaining a comprehensive understanding of the underlying mechanisms behind bacterial resistance, as well as the processes of bioaccumulation and biotransformation, is of paramount importance. Methods and results A total of 207 Alphaproteobacteria strains from the University of Coimbra Bacteria Culture Collection were tested for Y-resistance. Among these, strain Mesorhizobium qingshengii J19 exhibited high resistance (up to 4 mM Y) and remarkable Y accumulation capacity, particularly in the cell membrane. Electron microscopy revealed Y-phosphate interactions, while X-ray diffraction identified Y(PO3)3·9H2O biocrystals produced by J19 cells. Conclusion This study elucidates Y immobilization through biomineralization within phosphate biocrystals using M. qingshengii J19 cells.

Funder

European Union’s Horizon 2020 research and innovation

Fundação para a Ciência e Tecnologia

Publisher

Oxford University Press (OUP)

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