Effects of experimental CO2 enrichment on the PSII photochemical efficiency of Symbiodinium sp. in Acropora millepora

Qeios Pub Date : 2024-07-03 DOI:10.32388/f5cktw.2
Ashleigh McNie, Daniel Breen, Kay Vopel
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Abstract

Enrichment of seawater with CO2 decreases the concentration of the carbonate ion while increasing that of hydrogen and bicarbonate ions. We use pulse-amplitude-modulation (PAM) fluorometry to investigate whether, in the absence of warming, and in sub-saturating light, these changes affect the PSII photochemical efficiency of _Symbiodinium_ sp. in the reef-building coral _Acropora millepora_. We assessed this experimentally with 30-min-interval saturation pulse analyses at 25 °C, a daily peak in the intensity of the photosynthetically active radiation (PAR) at ~65 µmol quanta m–2 s–1, and a seawater _p_CO2 that we gradually increased over nine days from ~496 to ~1290 μatm by injection of CO2-enriched air. Nine 14-day time series, which, except one, were recorded at the growing apices of a coral branch, revealed diel oscillations in the PSII photochemical efficiency characterized by a steep nocturnal decrease followed by a steep increase and peak in the morning, a daily minimum at midday (∆F/Fm’,midday), and a daily maximum at the onset of darkness at 19:00 h (Fv/Fm,19:00 h). An inadvertent shift in the position of one of the PAM fluorometer measuring heads revealed differences between the basal part and the growing coral apices of a coral branch in ∆F/Fm’midday and Qm. In ambient seawater (Control) _Symbiodinium_ sp. exhibited a gradual decrease, over the course of the experiment, in ∆F/Fm’,midday, Fv/Fm,19:00 h, and the slope of the linear regression between the relative electron transport rate and the intensity of PAR (rETR/PAR). Although two of three successive experiments indicated that CO2 enrichment counteracted these trends, statistical analyses failed to confirm an influence of _p_CO2 on ∆F/Fm’,midday, Fv/Fm,19:00 h, and Qm, rendering this experiment inconclusive.
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实验性二氧化碳富集对 Acropora millepora 中 Symbiodinium sp.
海水中富含二氧化碳会降低碳酸根离子的浓度,同时增加氢离子和碳酸氢根离子的浓度。我们利用脉冲幅度调制(PAM)荧光测定法研究了在没有变暖的情况下,在亚饱和光照条件下,这些变化是否会影响造礁珊瑚_Acropora millepora_中_Symbiodinium_ sp.的PSII光化学效率。我们在 25 °C、光合有效辐射(PAR)强度的日峰值约为 65 µmol quanta m-2 s-1、海水_p_CO2(我们通过注入富含 CO2 的空气,在九天内将海水_p_CO2 从约 496 μatm 逐步提高到约 1290 μatm)的条件下,进行了 30 分钟间隔饱和脉冲分析。除一个时间序列外,其他九个 14 天的时间序列都是在珊瑚枝条的生长顶端记录的,它们显示了 PSII 光化学效率的日间振荡,其特点是夜间急剧下降,随后急剧上升,并在上午达到峰值,正午为日最低值(∆F/Fm',正午),19:00 时黑暗来临时为日最高值(Fv/Fm,19:00 h)。一个 PAM 荧光仪测量头位置的无意移动显示了珊瑚枝条基部和生长珊瑚尖部在∆F/Fm',正午和 Qm 方面的差异。在环境海水(对照组)中,_Symbiodinium_ sp.的 ∆F/Fm'(正午)、Fv/Fm(19:00 h)以及相对电子传输速率与 PAR 强度(rETR/PAR)之间的线性回归斜率在实验过程中逐渐下降。尽管三次连续实验中有两次表明二氧化碳的富集抵消了这些趋势,但统计分析未能证实 _p_CO2 对 ∆F/Fm',正午、Fv/Fm,19:00 h 和 Qm 的影响,因此该实验不能得出结论。
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