Pascoalini S S, Tognella M M P, Falqueto A R, Soares M L G
Department of Oceanography and Ecology, Federal University of Espírito Santo, Vitória, ES, Brazil.
Department of Agricultural and Biological Sciences, Federal University of Espírito Santo, São Mateus, ES, Brazil.
Photosynthetica. 2022 May 17;60(3):337-349. doi: 10.32615/ps.2022.025. eCollection 2022.
The study proposes to evaluate the photosynthetic plasticity of L. in four mangrove sites distributed along with the Great Vitória Estuarine System. The variation in organic matter content, which implies the higher essential nutrient availability, contributed to better energy flux performance related to electron transport. Furthermore, salinity damaged the reaction centers (RC), since the site with the highest salinity showed changes in the number and size of active photosynthetic RC and in the specific energy flows per active RC (absorption flux, trapped energy flux, and dissipated energy flux), but the plasticity of the species in response to salt stress was confirmed by the increase of performance index for energy conservation (PI), net photosynthetic rate ( ), and the water-use efficiency (WUE). Also, the results showed that the luminous intensity available compromises the functionality of PSII, in turn, it increases WUE. The results indicate the effect of the chlorophyll content, which provides more substrate for light absorption, on the electron flow and PI is related to and WUE. The study indicates the ecological plasticity of to the conditions of the evaluated area.
该研究提议评估分布在大维多利亚河口系统沿岸四个红树林地点的L.的光合可塑性。有机质含量的变化意味着更高的必需养分可用性,这有助于与电子传递相关的更好的能量通量表现。此外,盐度损害了反应中心(RC),因为盐度最高的地点在活跃光合RC的数量和大小以及每个活跃RC的特定能量流(吸收通量、捕获能量通量和耗散能量通量)方面出现了变化,但通过能量守恒性能指数(PI)、净光合速率( )和水分利用效率(WUE)的增加证实了该物种对盐胁迫的可塑性。此外,结果表明可用光强会损害PSII的功能,进而增加WUE。结果表明叶绿素 含量的影响,其为光吸收提供了更多底物,对电子流和PI与 和WUE相关。该研究表明L.对评估区域条件的生态可塑性。