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首页> 外文期刊>Marine ecology progress series >Using functional genomics to explore the effects of ocean acidification on calcifying marine organisms
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Using functional genomics to explore the effects of ocean acidification on calcifying marine organisms

机译:利用功能基因组学探索海洋酸化对钙化海洋生物的影响

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摘要

ABSTRACT: As the research community attempts to forecast the effects of ocean acidification on marine ecosystems, a critical element is a clear understanding of the effects of ocean acidification on an individual organism’s physiology. This article explores how the use of genomics-based tools that measure gene expression—DNA microarrays and quantitative PCR—can assist in this effort and reveal aspects of how calcifying marine organisms will respond to ocean acidification. More specifically, what stands to be gained from this approach is an understanding of the direct effects of ocean acidification and whether organisms have sufficient physiological plasticity to adapt to the altered CO2 conditions. We provide a brief overview of biomineralization processes in corals and sea urchin larvae, and then link these pathways to ways in which gene expression analysis can reveal physiological responses and mechanisms, and further, can define new testable hypotheses. In addition, we review the resources available and strategies that might be taken for each of 2 study organisms, stony corals and sea urchins. Finally, we suggest strategies for gene expression profiling in organisms that differ in availability of genomic resources.
机译:摘要:在研究团体试图预测海洋酸化对海洋生态系统的影响时,一个关键因素是对海洋酸化对单个生物的生理学影响的清楚了解。本文探讨了使用基于基因组学的工具来测量基因表达的方法(DNA微阵列和定量PCR)如何协助这项工作,并揭示了钙化海洋生物如何应对海洋酸化的各个方面。更具体地说,从这种方法中可以获得的是对海洋酸化的直接影响以及生物体是否具有足够的生理可塑性以适应改变的CO 2 条件的理解。我们对珊瑚和海胆幼虫的生物矿化过程进行了简要概述,然后将这些途径与基因表达分析可以揭示生理反应和机制,并进一步定义新的可验证假设的方式联系起来。此外,我们将对两种研究生物,石质珊瑚和海胆中的每一种的可用资源和可能采取的策略进行回顾。最后,我们提出了在基因组资源可用性不同的生物体中进行基因表达谱分析的策略。

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