Thalassia hemprichii may benefit from ocean acidification and slightly increased salinity in the future

IF 3.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Marine environmental research Pub Date : 2025-02-08 DOI:10.1016/j.marenvres.2025.107000
Zhiqiang Shi , Yunfeng Shi , Muqiu Zhao , Kang Wang , Siyang Ma , Qiuying Han
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Abstract

Since the industrial revolution, the direct impacts of elevated CO2 concentrations, such as ocean acidification, and indirect impacts, such as extreme drought events, have synergistically influenced coastal ecosystems, including seagrass meadow. Consequently, investigating the individual and combined effects of ocean acidification and extreme drought-induced increased salinity on seagrasses is crucial for enhancing the management and monitoring of these ecosystems. This study used a two-factor crossover indoor simulation experiment to thoroughly examine the effects of seawater acidification at pH 7.7 and elevated salinity levels at 43‰ and 51‰ on the physiological responses and growth status of the dominant tropical seagrass species Thalassia hemprichii. The results indicated that seawater acidification at pH 7.7 significantly enhanced the growth rate and photosynthetic activity of T. hemprichii across all salinity levels. A salinity of 43‰ activated certain antioxidant enzymes without inducing severe osmotic stress in T. hemprichii and positively influenced leaf photosynthetic activity, with a 15.6% increase in growth rate compared to the CK group. The extreme salinity of 51‰ imposed osmotic stress, leading to increase in reactive oxygen species and decreased photosynthetic activity and a 52% decrease in growth rate compared to seagrasses in the CK group. Under future scenarios of ocean acidification and frequent extreme droughts, T. hemprichii inhabiting enclosed marine environments may exhibit greater adaptability and secure an ecologically competitive edge. Our findings underscore the importance of conserving declining meadows, forecasting the ecological trajectory of these ecosystems, and managing salinity in lagoons for the well-being of seagrass ecosystems.

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未来,海洋酸化和盐度的轻微增加可能会使麻氏Thalassia hemprichii受益
自工业革命以来,二氧化碳浓度升高的直接影响(如海洋酸化)和间接影响(如极端干旱事件)协同影响了包括海草草甸在内的沿海生态系统。因此,调查海洋酸化和极端干旱引起的盐度增加对海草的个别和综合影响,对于加强对这些生态系统的管理和监测至关重要。本研究采用双因素交叉室内模拟实验,深入研究了pH为7.7的海水酸化以及43‰和51‰的盐度升高对热带优势海草海草海草(Thalassia hemprichii)生理反应和生长状况的影响。结果表明,pH值为7.7的海水酸化显著提高了血吸虫在不同盐度下的生长速率和光合活性。43‰的盐度激活了部分抗氧化酶,但没有引起严重的渗透胁迫,并对叶片光合活性产生了积极影响,其生长速度比CK组提高了15.6%。51‰的极端盐度造成了渗透胁迫,导致活性氧增加,光合活性降低,生长速度比CK组下降52%。在未来海洋酸化和极端干旱频发的情景下,居住在封闭海洋环境中的麻孔虫可能表现出更强的适应性,并获得生态竞争优势。我们的研究结果强调了保护退化草甸、预测这些生态系统的生态轨迹以及管理泻湖盐度对海草生态系统健康的重要性。
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来源期刊
Marine environmental research
Marine environmental research 环境科学-毒理学
CiteScore
5.90
自引率
3.00%
发文量
217
审稿时长
46 days
期刊介绍: Marine Environmental Research publishes original research papers on chemical, physical, and biological interactions in the oceans and coastal waters. The journal serves as a forum for new information on biology, chemistry, and toxicology and syntheses that advance understanding of marine environmental processes. Submission of multidisciplinary studies is encouraged. Studies that utilize experimental approaches to clarify the roles of anthropogenic and natural causes of changes in marine ecosystems are especially welcome, as are those studies that represent new developments of a theoretical or conceptual aspect of marine science. All papers published in this journal are reviewed by qualified peers prior to acceptance and publication. Examples of topics considered to be appropriate for the journal include, but are not limited to, the following: – The extent, persistence, and consequences of change and the recovery from such change in natural marine systems – The biochemical, physiological, and ecological consequences of contaminants to marine organisms and ecosystems – The biogeochemistry of naturally occurring and anthropogenic substances – Models that describe and predict the above processes – Monitoring studies, to the extent that their results provide new information on functional processes – Methodological papers describing improved quantitative techniques for the marine sciences.
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