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首页> 外文期刊>Phycological Research >Gene expression analysis in the green macroalga Acrosiphonia arcta (Dillw.) J. Ag.: Method optimization and influence of ultraviolet radiation
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Gene expression analysis in the green macroalga Acrosiphonia arcta (Dillw.) J. Ag.: Method optimization and influence of ultraviolet radiation

机译:绿色大型藻(Acrosiphonia arcta(Dillw。)J. Ag。)中的基因表达分析:方法优化和紫外线辐射的影响

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摘要

Marine macroalgae represent an important part of coastal ecosystems in temperate and polar areas. Increasing surface ultraviolet radiation (UVR) levels due to stratospheric ozone thinning may lead to deleterious effects on the physiology of marine macroalgae. Only few studies concentrate on the response of macroalgal gene expression towards elevated UVR. Analyzing gene expression in marine algae is challenging regarding RNA extraction, enrichment of differentially expressed transcripts and identification of resulting sequences. Thus, we focused on the optimization of the appropriate techniques using the widely distributed green marine macroalga Acrosiphonia arcta. We successfully used a combination of suppression subtractive hybridization with microarray-based screening of size-selected cDNA libraries and were able to substantially improve the outcome compared with standard techniques. Analysis of differential gene expression revealed a distinct pattern of reactions towards ecologically relevant UVR levels pointing to specific mechanisms that include modulation of the photosynthetic apparatus, induction of glutathione metabolism, removal of toxic photoproducts and use of the malate valve to dissipate excess energy. The results of this study clearly correlate with previous physiological findings on photosynthesis and the antioxidative capacity of this alga.
机译:海洋大型藻类是温带和极地地区沿海生态系统的重要组成部分。由于平流层臭氧变稀而增加的表面紫外线辐射(UVR)水平可能对海洋大型藻类的生理产生有害影响。只有很少的研究集中在大型藻类基因表达对UVR升高的反应上。在RNA提取,差异表达转录本的富集和所得序列的鉴定方面,分析海藻中的基因表达具有挑战性。因此,我们专注于使用广泛分布的绿色海洋大型藻类响尾蛇的适当技术的优化。我们成功地将抑制消减杂交与基于微阵列的大小选择的cDNA文库筛选相结合,与标准技术相比,能够显着改善结果。差异基因表达的分析揭示了针对生态相关的UVR水平的不同反应模式,其指向特定的机制,包括调节光合装置,诱导谷胱甘肽代谢,去除有毒的光产物以及使用苹果酸瓣膜消散过多的能量。这项研究的结果与以前有关光合作用的生理发现和该藻的抗氧化能力明显相关。

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