The majority of plant species are glycophytes and are not salt-tolerant and maintain low sodium levels within their tissues; if high tissue sodium concentrations do occur, it is in response to elevated environmental salt levels. Here we report an apparently novel and taxonomically diverse grouping of plants that continuously maintain high tissue sodium contents and share the rare feature of possessing symbiotic cyanobacteria. Leaves of in Tierra del Fuego always had sodium contents (dry weight basis) of around 4.26 g kg, about 20 times greater than measured in other higher plants in the community (0.29 g kg). Potassium and chloride levels were also elevated. This was not a response to soil sodium and chloride levels as these were low at all sites. High sodium contents were also confirmed in from several other sites in Tierra del Fuego, in plants taken to, and cultivated in Madrid for 2 years at low soil salt conditions, and also in other free living or cultivated species of from the UK and New Zealand. species are the only angiosperms that possess cyanobacterial symbionts so we analysed other plants that have this rather rare symbiosis, all being glycophytes. Samples of , a floating aquatic fern, from Europe and New Zealand all had even higher sodium levels than . Roots of the gymnosperm had lower sodium contents (2.52 ± 0.34 g kg) but still higher than the non-symbiotic glycophytes. The overaccumulation of salt even when it is at low levels in the environment appears to be linked to the possession of a cyanobacterial symbiosis although the actual functional basis is unclear.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5716166PMC
http://dx.doi.org/10.1093/aobpla/plx053DOI Listing

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