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Long Serial Analysis of Gene Expression for Gene Discovery and Transcriptome Profiling in the Widespread Marine Coccolithophore Emiliania huxleyi†

机译:广泛的海洋球石藻Emiliania huxleyi中用于基因发现和转录组分析的基因表达的长期序列分析

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摘要

The abundant and widespread coccolithophore Emiliania huxleyi plays an important role in mediating CO2 exchange between the ocean and the atmosphere through its impact on marine photosynthesis and calcification. Here, we use long serial analysis of gene expression (SAGE) to identify E. huxleyi genes responsive to nitrogen (N) or phosphorus (P) starvation. Long SAGE is an elegant approach for examining quantitative and comprehensive gene expression patterns without a priori knowledge of gene sequences via the detection of 21-bp nucleotide sequence tags. E. huxleyi appears to have a robust transcriptional-level response to macronutrient deficiency, with 42 tags uniquely present or up-regulated twofold or greater in the N-starved library and 128 tags uniquely present or up-regulated twofold or greater in the P-starved library. The expression patterns of several tags were validated with reverse transcriptase PCR. Roughly 48% of these differentially expressed tags could be mapped to publicly available genomic or expressed sequence tag (EST) sequence data. For example, in the P-starved library a number of the tags mapped to genes with a role in P scavenging, including a putative phosphate-repressible permease and a putative polyphosphate synthetase. In short, the long SAGE analyses have (i) identified many new differentially regulated gene sequences, (ii) assigned regulation data to EST sequences with no database homology and unknown function, and (iii) highlighted previously uncharacterized aspects of E. huxleyi N and P physiology. To this end, our long SAGE libraries provide a new public resource for gene discovery and transcriptional analysis in this biogeochemically important marine organism.
机译:丰富的球石藻Emililiania huxleyi通过影响海洋光合作用和钙化作用,在介导海洋与大气之间的CO2交换中起着重要作用。在这里,我们使用基因表达(SAGE)的长期序列分析来鉴定对氮(N)或磷(P)饥饿有反应的E. huxleyi基因。 Long SAGE是一种无需定量先验知识即可通过检测21 bp核苷酸序列标签来检查定量和全面基因表达模式的巧妙方法。赫x氏大肠杆菌似乎对强营养素缺乏症有很强的转录水平反应,在N-饥饿的文库中有42个独特存在或上调两倍或以上的标记,在P-饥饿区中有128个独特存在或上调两倍或以上的标记。挨饿的图书馆。用逆转录PCR验证了几个标签的表达模式。这些差异表达标签中大约有48%可以映射到公众可获得的基因组或表达序列标签(EST)序列数据。例如,在P饥饿的文库中,许多标签定位到在P清除中起作用的基因,包括推定的磷酸盐可抑制通透酶和推定的多磷酸盐合成酶。简而言之,长期的SAGE分析已(i)鉴定了许多新的差异调控基因序列,(ii)将调控数据分配给EST序列而没有数据库同源性和未知功能,并且(iii)突出了以前未鉴定的E. huxleyi N和P生理学。为此,我们长久的SAGE库为这种生物地球化学重要的海洋生物提供了新的公共资源,用于基因发现和转录分析。

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