Three -like genes encoding putative ubiquitin-conjugating E2 enzymes of were characterized for potential roles in phosphorous (P) homeostasis and symbiotic nitrogen fixation (SNF). All three genes, , contain miR399-binding sites characteristic of genes in other plant species. Distinct spatiotemporal expression patterns and responsiveness of gene expression to P- and N-deprivation in roots and shoots indicated potential roles, especially for , in P and N homeostasis. Phenotypic analysis of mutants revealed that MtPHO2B is integral to Pi homeostasis, affecting Pi allocation during plant growth under nutrient-replete conditions, while MtPHO2C had a limited role in controlling Pi homeostasis. Genetic analysis also revealed a connection between Pi allocation, plant growth and SNF performance. Under N-limited, SNF conditions, Pi allocation to different organs was dependent on MtPHO2B and, to a lesser extent, MtPHO2C and MtPHO2A. MtPHO2A also affected Pi homeostasis associated with nodule formation. Thus, genes play roles in systemic and localized, i.e., nodule, P homeostasis affecting SNF.

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http://dx.doi.org/10.3389/fpls.2023.1211107DOI Listing

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