首页> 外文期刊>Oceanography and Marine Biology: An Annual Review >ESTABLISHED AND EMERGING TECHNIQUES FOR CHARACTERISING THE FORMATION, STRUCTURE AND PERFORMANCE OF CALCIFIED STRUCTURES UNDER OCEAN ACIDIFICATION
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ESTABLISHED AND EMERGING TECHNIQUES FOR CHARACTERISING THE FORMATION, STRUCTURE AND PERFORMANCE OF CALCIFIED STRUCTURES UNDER OCEAN ACIDIFICATION

机译:建立和新兴技术,用于表征钙化下钙化结构的形成,结构和性能

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摘要

Ocean acidification (OA) is the decline in seawater pH and saturation levels of calcium carbonate (CaCO3) minerals that has led to concerns for calcifying organisms such as corals, oysters and mussels because of the adverse effects of OA on their biomineralisation, shells and skeletons. A range of cellular biology, geochemistry and materials science approaches have been used to explore biomineralisation. These techniques have revealed that responses to seawater acidification can be highly variable among species, yet the underlying mechanisms remain largely unresolved. To assess the impacts of global OA, researchers will need to apply a range of tools developed across disciplines, many of which are emerging and have not yet been used in this context. This review outlines techniques that could be applied to study OA-induced alterations in the mechanisms of biomineralisation and their ultimate effects on shells and skeletons. We illustrate how to characterise, quantify and monitor the process of biomineralisation in the context of global climate change and OA. We highlight the basic principles, as well as the advantages and disadvantages, of established, emerging and future techniques for OA researchers. A combination of these techniques will enable a holistic approach and better understanding of the potential impact of OA on biomineralisation and its consequences for marine calcifiers and associated ecosystems.
机译:海洋酸化(OA)是碳酸钙(CaCO 3)矿物水水平的下降,导致对钙,牡蛎和贻贝等核心,因为OA对其生物键化,壳和骨架的不利影响。一系列细胞生物学,地球化学和材料科学方法已被用于探索生物矿化。这些技术表明,对海水酸化的反应可以在物种之间具有高度变化,但下面的机制仍然很大程度上是未解决的。为评估全球OA的影响,研究人员需要应用一系列跨学科的工具,其中许多是在这种背景下尚未使用的。该综述概述了可以应用于研究oA诱导的生物素化机制的改变以及它们对壳和骨骼的最终影响的技术。我们说明了如何在全球气候变化和OA的背景下表征,量化和监测生物键化的过程。我们突出了对OA研究人员的建立,新兴和未来技术的基本原则,以及优缺点。这些技术的组合将使整体方法能够更好地理解OA对生物丙二原化的潜在影响及其对海洋钙化剂和相关生态系统的后果。

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    Univ Stirling Inst Aquaculture Fac Nat Sci Pathfoot Bldg Stirling FK9 4LA Scotland;

    Clemson Univ Dept Biol Sci Clemson SC 29634 USA;

    Univ Hong Kong Swire Inst Marine Sci Hong Kong Peoples R China;

    Univ Hong Kong Swire Inst Marine Sci Hong Kong Peoples R China;

    Univ Tokyo Grad Sch Agr &

    Life Sci Tokyo Japan;

    Univ Hong Kong Dept Earth Sci Hong Kong Peoples R China;

    Japan Agcy Marine Earth Sci &

    Technol JAMSTEC Dept Marine Biodivers Res BioDive Inst Extracuttingedge Sci &

    Technol Avant Garde R Yokosuka Kanagawa Japan;

    Norwegian Inst Water Res NIVA NIVA Reg West Thormohlensgate 53 D5006 Bergen Norway;

    Univ Sydney Sch Med Sci Sydney NSW Australia;

    Univ Tsukuba Shimoda Marine Res Ctr 5-10-1 Shimoda Shizuoka 4150025 Japan;

    Univ Gothenburg Dept Marine Sci S-45296 Stromstad Sweden;

    Univ Stirling Div Biol &

    Environm Sci Fac Nat Sci Cottrell Bldg Stirling FK9 4LA Scotland;

    Xiamen Univ State Key Lab Marine Environm Sci Xiamen Peoples R China;

    Nat Hist Museum Dept Earth Sci Cromwell Rd London SW7 5BD England;

    Univ Gothenburg Dept Biol &

    Environm Sci S-45178 Fiskebackskil Sweden;

    Univ Plymouth Sch Biol &

    Marine Sci Plymouth PL4 8AA Devon England;

    Univ Hong Kong Swire Inst Marine Sci Hong Kong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
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