Suppr超能文献

全球气候变化与养分富集对三种温带珊瑚藻生理特性的综合影响。

Combined effects of global climate change and nutrient enrichment on the physiology of three temperate maerl species.

作者信息

Qui-Minet Zujaila Nohemy, Coudret Jérôme, Davoult Dominique, Grall Jacques, Mendez-Sandin Miguel, Cariou Thierry, Martin Sophie

机构信息

Sorbonne Universités CNRS UMR 7144 Adaptation et Diversité en Milieu Marin Station Biologique de Roscoff Roscoff France.

Université de Bretagne Occidentale IUEM Plouzané France.

出版信息

Ecol Evol. 2019 Dec 5;9(24):13787-13807. doi: 10.1002/ece3.5802. eCollection 2019 Dec.

Abstract

Made up of calcareous coralline algae, maerl beds play a major role as ecosystem engineers in coastal areas throughout the world. They undergo strong anthropogenic pressures, which may threaten their survival. The aim of this study was to gain insight into the future of maerl beds in the context of global and local changes. We examined the effects of rising temperatures (+3°C) and ocean acidification (-0.3 pH units) according to temperature and pH projections (i.e., the RCP 8.5 scenario), and nutrient (N and P) availability on three temperate maerl species (, , and ) in the laboratory in winter and summer conditions. Physiological rates of primary production, respiration, and calcification were measured on all three species in each treatment and season. The physiological response of maerl to global climate change was species-specific and influenced by seawater nutrient concentrations. Future temperature-pH scenario enhanced maximal gross primary production rates in in winter and in in both seasons. Nevertheless, both species suffered an impairment of light harvesting and photoprotective mechanisms in winter. Calcification rates at ambient light intensity were negatively affected by the future temperature-pH scenario in winter, with net dissolution observed in the dark in and under low nutrient concentrations. Nutrient enrichment avoided dissolution under future scenarios in winter and had a positive effect on calcification rate in the dark in summer. In winter conditions, maximal calcification rates were enhanced by the future temperature-pH scenario on the three species, but suffered inhibition at high irradiances. In summer conditions, the maximal calcification rate dropped in under the future global climate change scenario, with a potential negative impact on CaCO budget for maerl beds in the Bay of Brest where this species is dominant. Our results highlight how local changes in nutrient availability or irradiance levels impact the response of maerl species to global climate change and thus point out how it is important to consider other abiotic parameters in order to develop management policies capable to increase the resilience of maerl beds under the future global climate change scenario.

摘要

藻礁床由钙质珊瑚藻构成,在世界各地的沿海地区作为生态系统工程师发挥着重要作用。它们承受着巨大的人为压力,这可能威胁到它们的生存。本研究的目的是深入了解在全球和局部变化背景下藻礁床的未来。我们根据温度和pH值预测(即RCP 8.5情景),研究了温度升高(+3°C)和海洋酸化(-0.3个pH单位)以及营养物质(氮和磷)可用性对冬季和夏季实验室中三种温带藻礁物种(、和)的影响。在每个处理和季节对所有三种物种测量初级生产、呼吸和钙化的生理速率。藻礁对全球气候变化的生理反应具有物种特异性,并受海水营养浓度影响。未来温度-pH情景提高了冬季的最大总初级生产率以及两个季节的的最大总初级生产率。然而,这两个物种在冬季的光捕获和光保护机制都受到了损害。冬季,未来温度-pH情景对环境光强下的钙化速率产生负面影响,在低营养浓度下,和在黑暗中观察到净溶解。营养物质富集避免了未来情景下冬季的溶解,并对夏季黑暗中的钙化速率产生了积极影响。在冬季条件下,未来温度-pH情景提高了三种物种的最大钙化速率,但在高辐照度下受到抑制。在夏季条件下,在未来全球气候变化情景下,的最大钙化速率下降,这可能对该物种占主导的布雷斯特湾藻礁床的碳酸钙收支产生负面影响。我们的结果强调了营养物质可用性或辐照度水平的局部变化如何影响藻礁物种对全球气候变化的反应,从而指出在未来全球气候变化情景下制定能够提高藻礁床恢复力的管理政策时,考虑其他非生物参数是多么重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc1f/6953553/4ed1f2204c8f/ECE3-9-13787-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验