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Koedam, N.

Publications and source records attributed to Koedam, N..

2 recordsLinked to original sources

Unlocking seagrass germination: divergent roles of strigolactones and karrikins in Zostera marina

Seagrasses, such as Zostera marina, play a crucial role in coastal ecosystems, yet the hormonal regulation of their seed dormancy and germination remains poorly understood. Strigolactones (SL) and karrikins (KAR), two plant growth regulators (PGRs) known to regulate germination and development in terrestrial plants, have recently been identified in marine angiosperms. However, their functional roles in seagrasses remain unexplored. Here, we provide the first assessment of SL and KAR effects on Z. marina seed germination and seedling development under controlled conditions. We tested the effect of ten different concentrations of SL and KAR on germination percentage, mean germination time, and seedling growth, considering multiple seed generations. SL significantly promoted germination, particularly at intermediate concentrations, and enhanced cotyledon growth, whereas KAR exerted a strong inhibitory effect, delaying or preventing germination. The identification of Z. marina orthologs of key SL and KAR signaling components suggests evolutionary conservation of these pathways in marine plants. Our findings provide new insights into the hormonal regulation of seagrass germination, highlighting both conserved and divergent functions of SL and KAR compared to terrestrial species. These results advance our understanding of hormonal control in marine plant species and hold implications for the conservation and restoration of seagrass meadows. HighlightsThis study provides the first experimental evidence of the effects of strigolactones (SL) and karrikins (KAR) on seed germination and seedling development in the seagrass Zostera marina.

plant biology↗

Gibberellic acid and light effects on seed germination in the seagrass Zostera marina

O_LISeagrass meadows have been heavily affected by human activities, with Zostera marina being one of the most impacted species. Seed-based methods are currently the preferred approach for their restoration. However, low germination rates and seedling establishment often affect the success rate and feasibility of restoration projects. C_LIO_LIWe tested, for the first time, the combined effect of light spectra (white and red light and darkness), photoperiod, and gibberellic acid (GA3) on seed germination rates in Z. marina, by means of an incubation experiment with a fully crossed design, employing penalised logistic regression and Cox proportional hazards analysis. Seedling development was subsequently monitored to assess the potential side-effects of the priming agents on morphometric growth. C_LIO_LILight priming positively affects germination, with germination probability being substantially increased when red light and darkness treatments were combined with GA3. Time to germination was reduced at mid- to high- GA3 concentrations. Morphometric analysis of the cotyledonary and leaf tissue development did not indicate a posteriori side-effects of seed priming on growth. C_LIO_LILight and GA3 priming favour germination probability and release from dormancy in Z. marina seeds. Seed priming can reduce stress- or manipulation-induced dormancy and can be considered in contexts where on-demand germination is required. C_LI

plant biology↗