首页> 外文期刊>Phycologia >Influences of nitrogen deficiency on the transcript levels of ammonium transporter, nitrate transporter and glutamine synthetase genes in Isochrysis galbana (Isochrysidales, Haptophyta)
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Influences of nitrogen deficiency on the transcript levels of ammonium transporter, nitrate transporter and glutamine synthetase genes in Isochrysis galbana (Isochrysidales, Haptophyta)

机译:氮素不足对球等鞭金藻(等鞭毛,七叶植物)铵转运蛋白,硝酸盐转运蛋白和谷氨酰胺合成酶基因的转录水平的影响

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摘要

Three DNA fragments belonging to genes involved in nitrogen uptake and assimilation, including a nitrate transporter gene (IgNrt2), an ammonium transporter gene (IgAmt), and a glutamine synthetase gene (IgglnII, were obtained from the marine haptophyte, Isochrysis galbana. Based on alignments of the deduced amino acid sequences, the IgNRT2 fragment shared 47%,, identity with the Cylindrotheca fusiformis (Bacillariophyceae) nitrate transporter, the IgAMT fragment shared 48%, identity with the C. fusiformis ammonium transporter, and the IgGSII fragment shared 61% identity with Skeletonema costatum (Bacillariophyceae) glutamine synthetase. Southern hybridization indicated that both IgNrt2 and IgAmt may have more than one copy in the genome of L galbana, but only a single copy was detected for IgglnII. The transcript abundances of these three genes under various nitrogen-supply conditions were monitored simultaneously by quantitative real-time polymerase chain reaction (PCR). In the presence of ammonium, both IgNrt2 and IgAmt were severely repressed with mean mRNA concentrations of 0.67 and 3.45 mu mol (mol 18S rRNA)(-1). IgNrt2 and IgAmt mRNA transcripts increased 41-fold and 8.3-fold, respectively, in the presence of nitrate, and increased 160-fold and 15-fold, respectively, in the ni trogen-depleted condition. The mRNA level of IgglnII was low in cells grown in the presence of ammonium [3.98 mu mol (mol 18S rRNA)(-1)], but mild increases in the range of 2- to 4-fold were observed in cells grown in both nitrate-containing and nitrogen-depleted cultures. Our results demonstrated that the expression patterns of IgNrt2, IgAmt, and IgglnII shared a common trend with their homologous genes in diatoms and green algae under various nitrogen-supply conditions. This group of genes could be used as indicators in natural environments to estimate the degree of nitrogen deficiency and chemical forms of nitrogenous nutrients in use on a species-specific basis.
机译:从海洋触藻植物等鞭金藻中获得了三个与氮吸收和同化有关的基因的DNA片段,包括硝酸盐转运蛋白基因(IgNrt2),铵转运蛋白基因(IgAmt)和谷氨酰胺合成酶基因(IgglnII)。推导的氨基酸序列的比对,IgNRT2片段共有47%,与梭状芽孢杆菌硝酸盐转运蛋白相同,IgAMT片段共有48%,与梭状芽孢杆菌铵转运蛋白相同,IgGSII片段共有61% Southern杂交表明,IgNrt2和IgAmt在棉球菌的基因组中可能有一个以上的拷贝,但仅检测到一个拷贝的IgglnII,这三个基因在不同基因下的转录丰度通过定量实时聚合酶链反应(PCR)同时监测氮的供应状况。在铵离子中,IgNrt2和IgAmt均被严重抑制,平均mRNA浓度为0.67和3.45μmol(mol 18S rRNA)(-1)。在硝酸盐存在的情况下,IgNrt2和IgAmt mRNA的转录本分别增加41倍和8.3倍,而在缺乏氮的条件下分别增加160倍和15倍。在存在铵的条件下[3.98μmol(mol 18S rRNA)(-1)]生长的细胞中,IgglnII的mRNA水平较低,但在两种条件下生长的细胞中均观察到2-4倍的轻度增加含硝酸盐和贫氮的培养物。我们的结果表明,在不同的氮供应条件下,IgNrt2,IgAmt和IgglnII的表达模式与它们在硅藻和绿藻中的同源基因共享一个共同的趋势。这组基因可以用作自然环境中的指示剂,以特定物种为基础来估算氮缺乏的程度和含氮营养素的化学形式。

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