首页> 外文期刊>Journal of phycology >TRANSCRIPTOME ANALYSES REVEAL DIFFERENTIAL GENE EXPRESSION PATTERNS BETWEEN THE LIFE-CYCLE STAGES OF EMILIANIA HUXLEYI (HAPTOPHYTA) AND REFLECT SPECIALIZATION TO DIFFERENT ECOLOGICAL NICHES
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TRANSCRIPTOME ANALYSES REVEAL DIFFERENTIAL GENE EXPRESSION PATTERNS BETWEEN THE LIFE-CYCLE STAGES OF EMILIANIA HUXLEYI (HAPTOPHYTA) AND REFLECT SPECIALIZATION TO DIFFERENT ECOLOGICAL NICHES

机译:转录组分析黑麦草(活菌)生命周期与对不同生态位的专一性之间的差异基因表达模式

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Coccolithophores, especially the abundant, cosmopolitan species Emiliania huxleyi (Lohmann) W. W. Hay et H. P. Mohler, are one of the main driving forces of the oceanic carbonate pump and contribute significantly to global carbon cycling, due to their ability to calcify. A recent study indicates that termination of diploid blooms by viral infection induces life-cycle transition, and speculation has arisen about the role of the haploid, noncalcifying stage in coccolithophore ecology. To explore gene expression patterns in both life-cycle stages, haploid and diploid cells of E. huxleyi (RCC 1217 and RCC 1216) were acclimated to limiting and saturating photon flux densities. Transcriptome analyses were performed to assess differential genomic expression related to different ploidy levels and acclimation light intensities. Analyses indicated that life-cycle stages exhibit different properties of regulating genome expression (e. g., pronounced gene activation and gene silencing in the diploid stage), proteome maintenance (e. g., increased turnover of proteins in the haploid stage), as well as metabolic processing (e. g., pronounced primary metabolism and motility in the haploid stage and calcification in the diploid stage). Furthermore, higher abundances of transcripts related to endocytotic and digestive machinery were observed in the diploid stage. A qualitative feeding experiment indicated that both life-cycle stages are capable of particle uptake (0.5 mu m diameter) in late-stationary growth phase. Results showed that the two life-cycle stages represent functionally distinct entities that are evolutionarily shaped to thrive in the environment they typically inhabit.
机译:球墨石,尤其是丰富的世界性物种,Emililiania huxleyi(Lohmann)W. W. Hay等。H. P. Mohler是海洋碳酸盐泵的主要驱动力之一,由于其钙化能力,对全球碳循环有重要贡献。最近的一项研究表明,病毒感染终止二倍体花期诱导了生命周期的转变,并且人们推测单倍体非钙化阶段在球石藻生态学中的作用。为了探索生命周期两个阶段中的基因表达模式,使赫hu黎大肠杆菌的单倍体和二倍体细胞(RCC 1217和RCC 1216)适应光子通量密度的限制和饱和。进行转录组分析以评估与不同倍性水平和适应光强度有关的差异基因组表达。分析表明,生命周期阶段显示出调节基因组表达(例如,在二倍体阶段的显着基因激活和基因沉默),蛋白质组维持(例如,单倍体阶段的蛋白质周转率增加)的不同特性。例如在单倍体阶段明显的初次代谢和运动,在二倍体阶段钙化)。此外,在二倍体阶段观察到与内吞和消化机制有关的转录物的丰度更高。定性进食实验表明,两个生命周期阶段均能够在静止后期生长阶段吸收颗粒(直径为0.5微米)。结果表明,两个生命周期阶段代表了功能上不同的实体,这些实体在进化过程中可以在它们通常居住的环境中蓬勃发展。

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