Department of Biological Science, CSU Fullerton, Fullerton, CA 92831, USA.
Department of Integrative Biology, UC Berkeley, Berkeley, CA 94720, USA.
Integr Comp Biol. 2024 Sep 17;64(2):222-233. doi: 10.1093/icb/icae007.
Kelp and other habitat-forming seaweeds in the intertidal zone are exposed to a suite of environmental factors, including temperature and hydrodynamic forces, that can influence their growth, survival, and ecological function. Relatively little is known about the interactive effect of temperature and hydrodynamic forces on kelp, especially the effect of cold stress on biomechanical resistance to hydrodynamic forces. We used the intertidal kelp Egregia menziesii to investigate how freezing in air during a low tide changes the kelp's resistance to breaking from hydrodynamic forces. We conducted a laboratory experiment to test how short-term freezing, mimicking a brief low-tide freezing event, affected the kelp's mechanical properties. We also characterized daily minimum winter temperatures in an intertidal E. menziesii population on San Juan Island, WA, near the center of the species' geographic range. In the laboratory, acute freezing events decreased the strength and toughness of kelp tissue by 8-20% (change in medians). During low tides in the field, we documented sub-zero temperatures, snow, and low canopy cover (compared to summer surveys). These results suggest that freezing can contribute to frond breakage and decreased canopy cover in intertidal kelp. Further work is needed to understand whether freezing and the biomechanical performance in cold temperatures influence the fitness and ecological function of kelp and whether this will change as winter conditions, such as freezing events and storms, change in frequency and intensity.
潮间带的海带和其他造礁海藻暴露在一系列环境因素中,包括温度和水动力,这些因素会影响它们的生长、存活和生态功能。相对而言,人们对温度和水动力对海藻的相互作用知之甚少,特别是寒冷应激对水动力生物力学阻力的影响。我们使用潮间带巨藻 Egregia menziesii 来研究潮汐低潮期间空气冻结如何改变海藻对水动力断裂的抵抗力。我们进行了一项实验室实验,以测试模仿短暂低潮冻结事件的短期冻结如何影响海藻的机械性能。我们还描述了华盛顿州圣胡安岛潮间带 E. menziesii 种群的冬季每日最低温度,该岛位于该物种地理分布范围的中心附近。在实验室中,急性冻结事件使海藻组织的强度和韧性降低了 8-20%(中位数变化)。在野外低潮期间,我们记录到了零下温度、积雪和低树冠覆盖(与夏季调查相比)。这些结果表明,冻结会导致潮间带海藻叶片断裂和树冠覆盖减少。需要进一步的工作来了解冻结和寒冷温度下的生物力学性能是否会影响海藻的适应性和生态功能,以及随着冻结事件和风暴等冬季条件的频率和强度的变化,这种情况是否会发生变化。