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首页> 外文期刊>Marine biology >Photoinhibition of Symbiodinium spp. within the reef corals Montastraea faveolata and Porites astreoides'. implications for coral bleaching
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Photoinhibition of Symbiodinium spp. within the reef corals Montastraea faveolata and Porites astreoides'. implications for coral bleaching

机译:Symbiodinium spp的光抑制。在珊瑚珊瑚Montastraea faveolata和Porites astreoides中。对珊瑚褪色的影响

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摘要

It is speculated that differences in coral bleaching susceptibility may be influenced by the genotype of in hospite Symbiodinium and their differential responses to bleaching stressors. Photoinhibition of photosystem II (PSII), damage to the Dl (psbA) PSII reaction centre protein and production of reactive oxygen species by in hospite Symbiodinium are likely precursors of coral bleaching. In order to assess whether photorepair rates of in hospite Symbiodinium underlie the bleaching susceptibility of their hosts, photoinhibition (net and gross), photopro-tection and photorepair rates were assessed in a bleaching-'tolerant' coral (P. astreoides) and a bleaching-'sensitive' coral (M. faveolata) using non-invasive fluorometric techniques and by blocking de novo synthesis of psbA. Previous studies using such techniques have demonstrated that in vitro Symbiodinium types 'sensitive' to bleaching stressors had reduced rates of photorepair relative to 'tolerant' Symbiodinum types. Our measurements demonstrated that Symbiodinium in the more bleaching tolerant P. astreoides had higher photorepair rates than Symbiodinium in M. faveolata. Higher repair rates in P. astreoides resulted in lower net photoinhibition relative to M. faveolata, where both corals exhibited similar susceptibility to photodamage (gross photoinhibition). Photopro-tective mechanisms were observed in both corals; M. faveolata exhibited higher antennae-bed quenching than P. astreoides at low-light intensities, but at and above light-saturating intensities, which are different for each coral species, P. astreoides displayed more efficient non-photochemical quenching (Stern-Volmer quenching) of chlorophyll fluorescence than M. faveolata. Increased NPQ by P. astreoides at E/E_k > 1 was not driven by antennae-bed quenching. The ability of in hospite Symbiodinium in P. astreoides to mitigate the effects of photoinhibition under high light conditions compared with Symbiodinium in M. faveolata, and their high repair capacity following photoinhibition, may be a key factor to consider in future bleaching studies and may underlie the relative bleaching tolerance of P. astreoides compared to M. faveolata.
机译:据推测,珊瑚漂白敏感性的差异可能会受到共生共生素的基因型及其对漂白压力源的不同反应的影响。光系统II(PSII)的光抑制,Dl(psbA)PSII反应中心蛋白的破坏以及医院共生菌素中活性氧的产生可能是珊瑚漂白的前兆。为了评估共生共生体中寄主的漂白敏感性是否是其寄主的漂白敏感性的基础,我们在耐漂白的珊瑚(P. astreoides)和漂白中评估了其光抑制(净和总体),光防护和光修复率。 -使用非侵入式荧光测定技术并阻断psbA的从头合成来“敏感”珊瑚(M. faveolata)。以前使用此类技术的研究表明,对漂白应激源“敏感”的体外共生植物类型相对于“耐受性”共生植物类型具有较低的光修复率。我们的测量结果表明,在漂白性更强的P. astreoides中,Symbiodinium的光修复率高于在Mave faveolata中的Symbiodinium。相对于青霉,相对而言,较高的修复率导致P. astreoides的净光抑制作用降低,其中两个珊瑚对光害的敏感性相似(毛光抑制)。在这两种珊瑚中都观察到了光保护机制。在低光强度下,偏叶偏斜藻表现出比P. astreoides更高的触角床猝灭,但在光饱和强度及更高的光强度下,每种珊瑚种类不同,P。astreoides表现出更有效的非光化学猝灭(Stern-Volmer淬灭)的叶绿素荧光比M. faveolata。在E / E_k> 1时,由P. astreoides增加的NPQ并不是由天线层淬灭驱动的。与小叶红景天中的Symbiodinium相比,住院的P. astreoides中的Symbiodinium能够减轻高光条件下光抑制的影响,以及它们在光抑制后的高修复能力,可能是未来漂白研究中要考虑的关键因素,并且可能是其基础P. astreoides与M. faveolata的相对漂白耐受性。

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  • 来源
    《Marine biology 》 |2011年第11期| p.2515-2526| 共12页
  • 作者单位

    Centre for Marine Biodiversity and Biotechnology, Heriot Watt University, Edinburgh EH1 44AS, UK,College of Earth, Ocean and Environment, University of Delaware, Lewes, DE 19958, USA;

    College of Earth, Ocean and Environment, University of Delaware, Lewes, DE 19958, USA;

    School of Earth Sciences, Ohio State University, Columbus, OH 43210, USA;

    College of Earth, Ocean and Environment, University of Delaware, Lewes, DE 19958, USA;

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