Multistressor impacts of ocean acidification and warming on regeneration and biomineralisation in coastal sea urchins
Multistressor impacts of ocean acidification and warming on regeneration and biomineralisation in coastal sea urchins
批准号:
2600238
负责人:
金额:
$0.0万
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --
中文摘要
该研究将集中在两个相互关联的问题上:海胆如何在未来的多压力环境中使其组织再生和再生?多重气候变化相关压力源的影响是相加的、拮抗的还是协同的?它将利用海胆再生试验,使用海洋酸化(OA)和变暖的实验条件来研究多种气候压力因素(图1)。表型分析已经开发出可视化和量化脊柱和管脚再生从一个单一的步带节段,通过拍摄再生水下和分析图像。除了表型分析外,还将包括分子和细胞分析:靶向基因表达、原位杂交和再生管足和棘的组织学,以及互补转录组学和蛋白质组学的潜力,代表了基因、细胞和生物体生理学的生物组织水平分析。不同物种的比较实验将调查种间的变化,在应激敏感性,和物种从不同的纬度分布将提供洞察冷适应或温暖的适应机制。碳酸钙结构的元素比分析将允许表征镁含量,并提供在OA和高温条件下可能的骨骼权衡的进一步见解。
英文摘要
The studentship will centre on two inter-connected questions: How will sea urchins remineralise and regenerate their tissues in a future multi-stressor environment? And Are the effects of multiple climate-change associated stressors additive, antagonistic, or synergistic? It will utilise the sea urchin regeneration assay to investigate multiple-climatic stressors using experimental conditions of ocean acidification (OA) and warming (Fig 1). The phenotypic assay has been developed to visualise and quantify spine and tube feet regeneration from a single ambulacral section, by photographing regrowth underwater and analysing the images. In addition to the phenotypic assay, molecular and cellular analyses will be included: targeted gene expression, in-situ hybridisation, and histology on regenerating tube feet and spines, with the potential for complementary transcriptomics and proteomics, representing analyses across levels of biological organisation from genes, cells, and organismal physiology. Comparison experiments with different species will investigate interspecific variation in stressor susceptibility, and species from different latitudinal distributions will provide insight into cold-adapted or warmer-adapted mechanisms. Elemental ratio analysis of calcium carbonate structures will allow characterisation of magnesium content and provide further insights into possible skeletal trade-offs under OA and elevated temperature conditions.
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会议论文
国内基金
海外基金
IMPACTS站点土壤铝活化机制研究
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批准号:40273045
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项目类别:面上项目
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资助金额:32.0万元
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批准年份:2002
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负责人:张晓山
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依托单位: