Botany and Plant Science, School of Natural Sciences, National University of Ireland Galway, Galway, Ireland; Ryan Institute for Marine, Environmental and Energy Research, National University of Ireland Galway, Galway, Ireland.
Mar Environ Res. 2013 Dec;92:102-9. doi: 10.1016/j.marenvres.2013.09.006. Epub 2013 Sep 17.
Kelps of the genus Laminaria accumulate iodine at high concentrations, but the iodine retaining capacity can be affected by emersion and physiological stress. In this study, I2 emission into the atmosphere from Laminaria digitata and Laminaria hyperborea was compared under controlled low irradiances and temperatures. The two species exhibited different I2 emission rates as blades of L. digitata emitted I2 at rates five times higher than those from newly-grown blades (current growth season) of L. hyperborea. I2 emission was not detectable from old blades (previous growth season) of L. hyperborea. Additionally, effects of irradiance and temperature on both I2 emission into air and net I(-) release into seawater where assessed for L. digitata while monitoring photo-physiological parameters as stress indicators. Irradiances between 30 and 120 μmol photons m(-2) s(-1) had only marginal effects on both I2 emission and I(-) release rates, but physiological stress, indicated by photoinhibition, was observed. The results suggest that the irradiances applied here were not stressful enough to impact on the iodine release. By contrast, at elevated temperatures (20 °C), photoinhibition was accompanied by an increase in I2 emission rates, but net I(-) release rates remained similar at 10-20 °C. High I2 emission rates into air and I(-) release into seawater observed from L. digitata underpin the fundamental function of this kelp as mediator of coastal iodine fluxes.
海带属植物能高度浓缩碘,但碘的保留能力可能会受到暴露和生理压力的影响。在这项研究中,我们在受控的低光照和温度条件下比较了掌状海带和北太平洋海带叶片向大气中排放 I2 的情况。这两个物种的 I2 排放率不同,掌状海带叶片的 I2 排放率是新生长的北太平洋海带叶片(本生长季)的五倍。北太平洋海带的老叶片(上一生长季)则检测不到 I2 排放。此外,我们还评估了光照和温度对掌状海带向空气中排放 I2 和向海水中净释放 I(-) 的影响,同时监测了光生理参数作为应激指标。30 至 120 μmol 光子 m(-2) s(-1) 的光照对 I2 排放和 I(-) 释放率的影响不大,但观察到了生理应激,表现为光抑制。结果表明,这里应用的光照强度不足以对碘的释放产生影响。相比之下,在较高温度(20°C)下,光抑制伴随着 I2 排放率的增加,但在 10-20°C 时净 I(-)释放率保持相似。掌状海带向空气中大量排放 I2 和向海水中释放 I(-),这突显了这种海带作为沿海碘通量中介的基本功能。