Photosynthetic response to a winter heatwave in leading and trailing edge populations of the intertidal red alga Corallina officinalis (Rhodophyta)

IF 1.4 3区 地球科学 Q3 OCEANOGRAPHY Acta Oceanologica Sinica Pub Date : 2024-06-21 DOI:10.1007/s13131-023-2275-6
Regina Kolzenburg, Federica Ragazzola, Laura Tamburello, Katy R. Nicastro, Christopher D. McQuaid, Gerardo I. Zardi
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Abstract

Marine heatwaves (MHWs) caused by anthropogenic climate change are becoming a key driver of change at the ecosystem level. Thermal conditions experienced by marine organisms across their distribution, particularly towards the equator, are likely to approach their physiological limits, resulting in extensive mortality and subsequent changes at the population level. Populations at the margins of their species’ distribution are thought to be more sensitive to climate-induced environmental pressures than central populations, but our understanding of variability in fitness-related physiological traits in trailing versus leading-edge populations is limited. In a laboratory simulation study, we tested whether two leading (Iceland) and two trailing (Spain) peripheral populations of the intertidal macroalga Corallina officinalis display different levels of maximum potential quantum efficiency (Fv/Fm) resilience to current and future winter MHWs scenarios. Our study revealed that ongoing and future local winter MHWs will not negatively affect leading-edge populations of C. officinalis, which exhibited stable photosynthetic efficiency throughout the study. Trailing edge populations showed a positive though non-significant trend in photosynthetic efficiency throughout winter MHWs exposure. Poleward and equatorward populations did not produce significantly different results, with winter MHWs having no negative affect on Fv/Fm of either population. Additionally, we found no long-term regional or population-level influence of a winter MHWs on this species’ photosynthetic efficiency. Thus, we found no statistically significant difference in thermal stress responses between leading and trailing populations. Nonetheless, C. officinalis showed a trend towards higher stress responses in southern than northern populations. Because responses rest on a variety of local population traits, they are difficult to predict based solely on thermal pressures.

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潮间带红藻 Corallina officinalis(红藻纲)前缘和后缘种群对冬季热浪的光合响应
人为气候变化引起的海洋热浪(MHWs)正成为生态系统层面变化的主要驱动因素。海洋生物在其分布区(尤其是赤道附近)所经历的热条件很可能接近其生理极限,导致大量死亡,进而引起种群水平的变化。与中心种群相比,处于物种分布边缘的种群被认为对气候引起的环境压力更为敏感,但我们对边缘种群与边缘种群的适应性相关生理特征的变异性了解有限。在一项实验室模拟研究中,我们测试了潮间带大型藻类 Corallina officinalis 的两个前缘种群(冰岛)和两个后缘种群(西班牙)是否对当前和未来的冬季 MHWs 情景表现出不同程度的最大潜在量子效率(Fv/Fm)复原力。我们的研究表明,目前和未来的当地冬季 MHW 不会对 officinalis 的前缘种群产生负面影响,它们在整个研究过程中表现出稳定的光合效率。后缘种群在整个冬季 MHWs 影响期间的光合效率呈正趋势,但不显著。极向种群和赤道向种群的结果没有明显差异,冬季 MHWs 对这两个种群的 Fv/Fm 都没有负面影响。此外,我们还发现冬季 MHWs 对该物种的光合效率没有长期的区域或种群影响。因此,我们发现领头种群和尾随种群的热应力反应在统计学上没有显著差异。不过,C. officinalis在南方种群中的应激反应高于北方种群。由于反应取决于当地种群的各种特征,因此很难仅仅根据热压力来预测。
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来源期刊
Acta Oceanologica Sinica
Acta Oceanologica Sinica 地学-海洋学
CiteScore
2.50
自引率
7.10%
发文量
3884
审稿时长
9 months
期刊介绍: Founded in 1982, Acta Oceanologica Sinica is the official bi-monthly journal of the Chinese Society of Oceanography. It seeks to provide a forum for research papers in the field of oceanography from all over the world. In working to advance scholarly communication it has made the fast publication of high-quality research papers within this field its primary goal. The journal encourages submissions from all branches of oceanography, including marine physics, marine chemistry, marine geology, marine biology, marine hydrology, marine meteorology, ocean engineering, marine remote sensing and marine environment sciences. It publishes original research papers, review articles as well as research notes covering the whole spectrum of oceanography. Special issues emanating from related conferences and meetings are also considered. All papers are subject to peer review and are published online at SpringerLink.
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