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首页> 外文期刊>Ecological indicators >Zostera noltii development probing using chlorophyll a transient analysis (JIP-test) under field conditions: Integrating physiological insights into a photochemical stress index
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Zostera noltii development probing using chlorophyll a transient analysis (JIP-test) under field conditions: Integrating physiological insights into a photochemical stress index

机译:野外条件下使用叶绿素a瞬态分析(JIP测试)进行的Zostera noltii发育探测:将生理见解整合到光化学胁迫指数中

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摘要

Beyond their undeniable role, nowadays we also must look to seagrass beds as endangered environments with urgent monitoring and conservation needs. In the present study 1 noltii photochemical performance of under different stages of development/recovery was assessed and its results applied in the development of a photochemical stress index (PSI) to classify and efficiently assess the physiological condition of seagrass beds. In order to investigate deeper into this metabolic network the JIP-test was applied, allowing to identify the reasons underlying the first signs of stress. Less developed beds low connectivity between PS II antennae leading inevitably to an impairment of the energetic transport. Associated to this also the quinone pool showed severe depletion both in number and function. Alongside the K-step presence in the Kautsky curve points to severe damage at donor side of the PS II, where the Oxygen Evolving Complexes (OECs) are located. All these negative impacts increase the quantum yield of the non photochemical reactions in stressed less developed seagrass beds. In sum, more developed beds show proportionally higher light use efficiencies promoted by a higher number of oxidized reaction centres coupled with an enhanced capacity in using the generated electron potential and relatively lower energy dissipations. Coupling all the photochemical into an Integrated Biomarker Response (IBR) approach, a photochemical stress index (PSI) was produced. The PSI showed that more developed sites present lower photochemical stress values with inverse significant correlation with biomass coverage, reinforcing the applicability of this non-invasive index as a reflex of the seagrass bed development stage. (C) 2017 Elsevier Ltd. All rights reserved.
机译:除了其不可否认的作用,如今,我们还必须将海草床视为具有紧急监测和保护需求的濒危环境。在本研究中,对1种不同发育/恢复阶段的Noltii光化学性能进行了评估,并将其结果应用于光化学胁迫指数(PSI)的开发中,以对海草床的生理状况进行分类和有效评估。为了更深入地研究这个代谢网络,应用了JIP测试,从而确定了最初出现压力迹象的原因。欠发达的床,PS II天线之间的连接性低,不可避免地导致了能量传输的损害。与此相关的醌池在数量和功能上也显示出严重的消耗。在Kautsky曲线中,随着K阶跃的出现,这表明PS II的供体侧有氧气释放复合物(OEC)的严重损坏。所有这些负面影响增加了在欠发达的海草床中非光化学反应的量子产率。总而言之,更发达的床层显示出更高比例的光利用效率,这是由更高数量的氧化反应中心所促进的,同时还增强了利用产生的电子势能的能力以及相对较低的能量耗散。将所有光化学物质耦合到综合生物标记反应(IBR)方法中,产生了光化学应激指数(PSI)。 PSI显示,更多发达的地点呈现出较低的光化学应力值,与生物量覆盖率呈负相关,从而增强了该非侵入性指标作为海草床发育阶段反射的适用性。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Ecological indicators》 |2017年第5期|219-229|共11页
  • 作者单位

    Univ Lisbon, Fac Sci, MARE Marine & Environm Sci Ctr, P-1749016 Lisbon, Portugal;

    Univ Evora, Sch Sci & Technol, MARE Marine & Environm Sci Ctr, Apartado 94, P-7002554 Evora, Portugal;

    Univ Coimbra, Fac Sci & Technol, Dept Zool, MARE Marine & Environm Sci Ctr, P-3000 Coimbra, Portugal;

    Univ Evora, Sch Sci & Technol, MARE Marine & Environm Sci Ctr, Apartado 94, P-7002554 Evora, Portugal;

    Univ Lisbon, Fac Sci, MARE Marine & Environm Sci Ctr, P-1749016 Lisbon, Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seagrasses; Photochemistry; Recovery; IBR;

    机译:海草;光化学;回收率;IBR;

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