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Expression of biomineralization-related ion transport genes in Emiliania huxleyi

机译:生物矿化相关离子转运基因在Em草中的表达

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Biomineralization in the marine phytoplankton Emiliania huxleyi is a stringently controlled intracellular process. The molecular basis of coccolith production is still relatively unknown although its importance in global biogeochemical cycles and varying sensitivity to increased pCO_2 levels has been well documented. This study looks into the role of several candidate Ca~(2+), H~+ and inorganic carbon transport genes in E. huxleyi, using quantitative reverse transcriptase PCR. Differential gene expression analysis was investigated in two isogenic pairs of calcifying and non-calcifying strains of E. huxleyi and cultures grown at various Ca~(2+) concentrations to alter calcite production. We show that calcification correlated to the consistent upregulation of a putative HCO_3~- transporter belonging to the solute carrier 4 (SLC4) family, a Ca~(2+)/H~+ exchanger belonging to the CAX family of exchangers and a vacuolar H~+-ATPase. We also show that the coccolith-associated protein, GPA is downregulated in calcifying cells. The data provide strong evidence that these genes play key roles in E. huxleyi biomineralization. Based on the gene expression data and the current literature a working model for biomineralization-related ion transport in coccolithophores is presented.
机译:海洋浮游植物Emiliaania huxleyi中的生物矿化是严格控制的细胞内过程。尽管球藻在全球生物地球化学循环中的重要性以及对增加的pCO_2水平的不同敏感性已得到了充分的文献记载,但其分子基础仍然相对未知。本研究利用定量逆转录酶PCR研究了几种候选Ca〜(2 +),H〜+和无机碳转运基因在赫氏大肠杆菌中的作用。差异基因表达分析进行了研究的两个等基因的钙和非钙化的赫氏大肠杆菌菌株和培养在不同的Ca〜(2+)浓度以改变方解石生产的文化。我们表明,钙化与一致的上调有关的假定的HCO_3〜-转运蛋白属于溶质载体4(SLC4)家族,Ca〜(2 +)/ H〜+交换剂属于CAX家族的交换蛋白和液泡H 〜+ -ATPase。我们还表明,可可脂相关蛋白GPA在钙化细胞中被下调。数据提供了有力的证据,表明这些基因在赫hu黎大肠杆菌生物矿化中起关键作用。基于基因表达数据和目前的文献,提出了一种在球石藻体内生物矿化相关离子转运的工作模型。

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