Strategies of desiccation tolerance vary across life phases in the moss Syntrichia caninervis

PREMISE Desiccation tolerance (DT) is a widespread phenomenon among land plants, and variable ecological strategies for DT are likely to exist. Using Syntrichia caninervis, a dryland moss and model system used in DT studies, we hypothesized that DT is lowest in juvenile (protonemal) tissues, highest...

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Veröffentlicht in:American journal of botany 2021-02, Vol.108 (2), p.249-262
Hauptverfasser: Coe, Kirsten K., Greenwood, Joshua L., Slate, Mandy L., Clark, Theresa A., Brinda, John C., Fisher, Kirsten M., Mishler, Brent D., Bowker, Matthew A., Oliver, Melvin J., Ebrahimi, Sotodeh, Stark, Lloyd R.
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Sprache:eng
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Zusammenfassung:PREMISE Desiccation tolerance (DT) is a widespread phenomenon among land plants, and variable ecological strategies for DT are likely to exist. Using Syntrichia caninervis, a dryland moss and model system used in DT studies, we hypothesized that DT is lowest in juvenile (protonemal) tissues, highest in asexual reproductive propagules (gemmae), and intermediate in adults (shoots). We tested the long‐standing hypothesis of an inherent constitutive strategy of DT in this species. METHODS Plants were rapidly dried to levels of equilibrating relative humidity (RHeq) ranging from 0 to 93%. Postrehydration recovery was assessed using chlorophyll fluorescence, regeneration rates, and visual tissue damage. For each life phase, we estimated the minimum rate of drying (RoDmin) at RHeq = 42% that did not elicit damage 24 h postrehydration. RESULTS DT strategy varied with life phase, with adult shoots having the lowest RoDmin (10‒25 min), followed by gemmae (3‒10 h) and protonema (14‒20 h). Adult shoots exhibited no detectable damage 24 h postrehydration following a rapid‐dry only at the highest RHeq used (93%), but when dried to lower RHs the response declined to
ISSN:0002-9122
1537-2197
DOI:10.1002/ajb2.1571