利用析氧和叶绿素a荧光评价温度对关节珊瑚藻光合作用和呼吸作用的影响

IF 0.5 4区 生物学 Q4 MARINE & FRESHWATER BIOLOGY Ciencias Marinas Pub Date : 2022-10-28 DOI:10.7773/cm.y2022.3269
R. M. Vásquez-Elizondo, Wiebke E Kräemer, A. Cabello‐Pasini
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引用次数: 1

摘要

珊瑚藻在世界各地形成了丰富的、具有重要生态意义的水下水生植被栖息地。然而,藻类的生长受到气候变化和海洋酸化的威胁。先前的研究表明,它们的光合作用性能主要在高温下受到损害。理解不同气候变化情景的影响需要对光合作用对温度梯度的响应有一个清晰而彻底的理解。本研究旨在研究温度(10 ~ 35℃)对3种珊瑚藻(石藻、officinalis和波氏菌)的光合作用、呼吸和电子传递速率(ETRs)的短期影响,以更好地了解它们的代谢,并探讨GPS和ETR随温度的关系。结果表明,珊瑚藻的代谢对温度高度敏感,但这种反应具有物种特异性,可能与它们的光适应/驯化有关;高光适应曲霉菌受负面影响最小。根据当地的热制度,光合作用与呼吸比在20 ~ 25°C之间是最佳的,但在更高的温度下显著降低,表明强烈的碳不平衡,并突出了热应激与珊瑚藻性能的相关性。在10 ~ 30°C范围内,所有物种的GPS和ETR之间存在很强的相关性,但在饱和辐照度以上和高温(≥30°C)下,线性关系明显偏离。这表明ETR不能很好地代表光或热胁迫下的光合活性。这一信息对于在珊瑚藻中实施全球变化情景和脉冲幅度调制(PAM)荧光测定法的研究应该是有用的。
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Evaluating the effect of temperature on photosynthesis and respiration of articulated coralline algae using oxygen evolution and chlorophyll a fluorescence
Coralline algae form abundant and ecologically important submerged aquatic vegetation habitats throughout the world. However, algal performance is threatened by climate change and ocean acidification. Previous studies suggest that their photosynthetic performance will be compromised mainly at elevated temperatures. Understanding the impact of diverse climate change scenarios requires a clear and thorough comprehension of the photosynthetic response to temperature gradients. The objective of this study was to evaluate the short-term effect of temperature (10–35 °C) on the gross photosynthesis (GPS), respiration, and electron transport rates (ETRs) of 3 articulated coralline algae (Lithothrix aspergillum, Corallina officinalis, and Bossiella orbigniana) for a better understanding of their metabolism and to investigate the relationship between GPS and ETR as a function of temperature. The results showed that the coralline algal metabolism is highly sensitive to temperature, but responses were species-specific and can be related to their light adaptation/acclimation; the high-light-adapted L. aspergillum was least negatively affected. The photosynthesis to respiration ratio was optimal between 20 and 25 °C according to the local thermal regime but was significantly reduced toward higher temperatures, indicating strong carbon imbalances and highlighting the relevance of thermal stress for coralline algal performance. A strong correlation between GPS and ETR was found between 10 and 30 °C in all species, but both above saturation irradiances and at elevated temperatures (≥30 °C), a clear deviation from linearity occurred. This suggests that ETR is not a good proxy to estimate photosynthetic activity under light or thermal stress. This information should be useful for studies implementing global change scenarios and pulse amplitude modulated (PAM) fluorometry in coralline algae.
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来源期刊
Ciencias Marinas
Ciencias Marinas 生物-海洋与淡水生物学
CiteScore
1.10
自引率
0.00%
发文量
9
审稿时长
>12 weeks
期刊介绍: A bilingual open-access publication, Ciencias Marinas (CM) is an international peer-reviewed journal that contains original research findings in all areas of marine science. It is published quarterly by the Autonomous University of Baja California, Mexico, and all its contents are publicly available on our journal website. Though a limited number of copies are still printed, the journal is mainly distributed in its electronic format. CM was conceived in 1973 as part of an academic project aimed to entice local researchers to publicly disclose their findings by adopting the culture of peer-review publishing. This academic project evolved into an international journal after accepting papers from researchers in the United States and, eventually, other parts of the world. Because of the diversity in authorship, CM issues were initially published in either Spanish or English, and occasionally in both languages. It was not until 1984 when CM included both language versions of all its contents, and it then became the fully bilingual journal it still is today. At CM we believe our inclusive format allows us not only to address a wider range of submissions from international authors but also to make published findings available to a wider international audience. So whether you are looking for information on the redfish in Icelandic waters or the physical and biological properties of the Gulf of California, feel free to peruse CM contents. You may find them to provide source material for your research.
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