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首页> 外文期刊>Marine biology >Under high light stress two Indo-Pacific coral species display differential photodamage and photorepair dynamics
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Under high light stress two Indo-Pacific coral species display differential photodamage and photorepair dynamics

机译:在高光照条件下,两个印度洋-太平洋珊瑚物种显示出不同的光损伤和光修复动力学

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摘要

The in hospite Symbiodinium symbiont of corals on shallow reefs relies on photoprotection and photorepair during periods of exposure to short-term high light and/or temperature stress. A coral's susceptibility to bleaching is species specific and determined not only by Symbiodinium type, size and physiology, but also by coral host features. Here, photoprotective, photorepair, photochemical and non-photochemical efficiency parameters of Symbiodinium harboured in two morphologically different coral species were examined on Heron Island (23.4420 degrees S, 151.9140 degrees E) in July 2011. The two coral species were exposed to high light stress for 96 h, with or without inhibition of photosystem (PS) II repair by lincomycin. Symbiodinium harboured in Pocillopora damicornis showed an increase in xanthophyll de-epoxidation under high light exposure, whereas algal symbionts in Pavona decussata showed constant levels of xanthophyll de-epoxidation. High light-treated specimens of P. damicornis maintained steady PsbA protein (D1 protein) content throughout the experiment, but P. decussata showed a peak in PsbA protein content after 48 h of exposure. In hospite Symbiodinium in P. damicornis had greater content of PsbA protein fragments, suggesting higher accumulation of photodamaged products, compared to Symbiodinium in P. decussata, where both maintained steady PSII photochemical capacity over 96 h of exposure. Under inhibition of PSII repair, both species lost PsbA protein content and PSII photochemical capacity. Both species showed increased heat dissipation under inhibition of PSII repair, but differed in photoprotective strategies and photorepair activity. Our results suggest that, as well as any differences in the symbiont, characteristics of the coral host can alter important physiological responses in Symbiodinium.
机译:浅礁中珊瑚的共生共生共生体在暴露于短期高光和/或温度胁迫期间依赖于光保护和光修复。珊瑚对漂白的敏感性是特定物种的,不仅取决于共生菌的类型,大小和生理,还取决于珊瑚的宿主特征。在这里,于2011年7月在苍鹭岛(南太平洋23.4420度,东经151.9140度)检查了存在于两种形态不同的珊瑚物种中共生菌的光防护,光修复,光化学和非光化学效率参数。这两种珊瑚都暴露于高光胁迫持续96小时,有或没有抑制林可霉素对光系统(PS)II的修复。在高光下,Pocillopora damicornis中所藏的共生素显示出叶黄素脱环氧化作用的增加,而Pavona decussata中的藻类共生菌则显示出恒定水平的叶黄素脱环氧化作用。在整个实验过程中,经过高光处理的da虫标本均保持稳定的PsbA蛋白(D1蛋白)含量,但暴露的P. decussata在暴露48 h后显示峰值。与在假单胞菌中的共生菌相比,大麦假单胞菌中的共生菌具有更高的PsbA蛋白片段含量,表明光损伤产物的积累更高,后者在暴露96小时后均保持稳定的PSII光化学能力。在抑制PSII修复的作用下,两个物种都失去了PsbA蛋白含量和PSII光化学能力。两种物种在抑制PSII修复下均显示出增加的散热性,但在光保护策略和光修复活性方面存在差异。我们的结果表明,以及共生体的任何差异,珊瑚寄主的特征都可以改变共生体中重要的生理反应。

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  • 来源
    《Marine biology》 |2016年第8期|168.1-168.13|共13页
  • 作者单位

    Univ Technol Sydney, Sch Environm, Plant Funct Biol & Climate Change Cluster C3, Broadway, NSW, Australia;

    Univ Bremen, Dept Marine Bot, Bremen, Germany|Univ Nacl Autonoma Mexico, Inst Ciencias Mar & Limnol, Unidad Acad Sistemas Arrecifales Puerto Morelos, Lab Fotobiol, Cancun, Quintana Roo, Mexico;

    Univ New South Wales, Sch Biol Earth & Environm Sci, Ctr Marine Bioinnovat, Sydney, NSW 2052, Australia;

    Mt Allison Univ, Dept Biol, Sackville, NB, Canada|Mem Univ Newfoundland & Labrador, St John, NF, Canada;

    Univ Technol Sydney, Sch Environm, Plant Funct Biol & Climate Change Cluster C3, Broadway, NSW, Australia;

    Univ Bremen, Dept Marine Bot, Bremen, Germany;

    Mt Allison Univ, Dept Biol, Sackville, NB, Canada;

    Univ Technol Sydney, Sch Environm, Plant Funct Biol & Climate Change Cluster C3, Broadway, NSW, Australia;

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