Abstract
Abstract
Background
Cattail (Typha domingensis Pers.) is a perennial emergent plant which is used in Green Floating Filters (GFFs), one of the most innovative systems of wastewater treatment to bioremediate eutrophic waters and produce biomass as biofuel feedstocks. The establishment of cattails in GFFs depends on the seed germination and plant responses under conditions of a new habitat. This study analysed the germination responses of four different populations of cattails through a thermal time model to know their basic parameters of germination and which population would be more adapted to the conditions tested.
Results
Seeds from the Badajoz (Ba), Cuenca (Cu), Madrid (Ma), Seville (Se) and Toledo (To) populations were exposed to different thermal regimes (constant, and alternating temperatures between 15 and 30 °C) and different darkness treatments (between 0 and 20 days with 24 h dark photoperiod, then exposed to light with 12 h light/dark photoperiod) to determine the parameters of the thermal model from germination levels in each treatment. To population was used to validate the thermal time parameters of other populations. Regardless of the other parameters, no germination occurred in total darkness. The mean value of base temperature (Tb) was 16.4 ± 0.2 °C in all treatments. Optimum temperature (To) values in Ma and Ba were 25 °C, and those in Cu and Se were 22.5 °C. The germination response decreased when the temperature approached Tb and increased when it was close to To. In comparison to alternating temperatures, constant temperatures had the highest germination response and lowest thermal time (θT(50)). Darkness treatments had a direct relationship with θT(50). The population origin also affected seed germination; Cu had the highest values of To and germination response but had a lower θT(50), which coincides with the lowest mean ambient temperatures.
Conclusion
According to these results, the germination response of cattails was high in all populations under optimal conditions but was affected to a greater or lesser extent depending on thermal regimes, darkness treatments, and populations. The thermal time model allowed us to determine that To was between 22.5–25 °C and that Cu is the best population regarding the germination response under the conditions tested.
Publisher
Springer Science and Business Media LLC
Reference71 articles.
1. CABI. Typha domingensis. In: Invasive Species Compendium; 2020. https://www.cabi.org/isc/datasheet/54296. Accessed 15 Jan 2019.
2. Bansal S, Lishawa SC, Newman S, Tangen BA, Wilcox D, Albert D, et al. Typha (cattail) invasion in north American wetlands: biology, regional problems, impacts, ecosystem services, and management. Wetlands. 2019;39(4):645–84. https://doi.org/10.1007/s13157-019-01174-7.
3. Cirujano S. CLXXV. Typhaceae. In: Flora Iberica Plantas vasculares de la Peninsula Ibérica e Islas Baleares. Volumen 18. Real Jardin Botánico: CSIC; 2007. p. 259–66.
4. Finkelstein SA. Identifying pollen grains of Typha latifolia, Typha angustifolia, and Typha × glauca. Can J Bot. 2003;81(9):985–90. https://doi.org/10.1139/b03-084.
5. Lorenzen B, Brix H, McKee KL, Mendelssohn IA, Miao S. Seed germination of two Everglades species, Cladium jamaicense and Typha domingensis. Aquat Bot. 2000;66(3):169–80. https://doi.org/10.1016/S0304-3770(99)00076-5.
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