首页> 外文期刊>Physiologia plantarum >High-affinity nitrateitrite transporter genes (Nrt2) in Tisochrysis lutea: identification and expression analyses reveal some interesting specificities of Haptophyta microalgae
【24h】

High-affinity nitrateitrite transporter genes (Nrt2) in Tisochrysis lutea: identification and expression analyses reveal some interesting specificities of Haptophyta microalgae

机译:黄褐毛线虫中的高亲和力硝酸盐/亚硝酸盐转运蛋白基因(Nrt2):鉴定和表达分析揭示了七足藻微藻的一些有趣的特异性

获取原文
获取原文并翻译 | 示例
           

摘要

Microalgae have a diversity of industrial applications such as feed, food ingredients, depuration processes and energy. However, microalgal production costs could be substantially improved by controlling nutrient intake. Accordingly, a better understanding of microalgal nitrogen metabolism is essential. Using in silico analysis from transcriptomic data concerning the microalgae Tisochrysis lutea, four genes encoding putative high-affinity nitrateitrite transporters (TlNrt2) were identified. Unlike most of the land plants and microalgae, cloning of genomic sequences and their alignment with complementary DNA (cDNA) sequences did not reveal the presence of introns in all TlNrt2 genes. The deduced TlNRT2 protein sequences showed similarities to NRT2 proteins of other phyla such as land plants and green algae. However, some interesting specificities only known among Haptophyta were also revealed, especially an additional sequence of 100 amino acids forming an atypical extracellular loop located between transmembrane domains 9 and 10 and the function of which remains to be elucidated. Analyses of individual TlNrt2 gene expression with different nitrogen sources and concentrations were performed. TlNrt2.1 and TlNrt2.3 were strongly induced by low NO3- concentration and repressed by NH4+ substrate and were classified as inducible genes. TlNrt2.2 was characterized by a constitutive pattern whatever the substrate. Finally, TlNrt2.4 displayed an atypical response that was not reported earlier in literature. Interestingly, expression of TlNrt2.4 was rather related to internal nitrogen quota level than external nitrogen concentration. This first study on nitrogen metabolism of T. lutea opens avenues for future investigations on the function of these genes and their implication for industrial applications.
机译:微藻具有多种工业应用,例如饲料,食品成分,净化过程和能源。但是,通过控制营养摄入量可以显着提高微藻生产成本。因此,对微藻氮代谢的更好理解是必不可少的。使用来自有关微藻黄褐线虫的转录组数据的计算机分析,鉴定了编码推定的高亲和力硝酸盐/亚硝酸盐转运蛋白(T1Nrt2)的四个基因。与大多数陆地植物和微藻不同,基因组序列的克隆及其与互补DNA(cDNA)序列的比对并未揭示所有T1Nrt2基因中均存在内含子。推导的T1NRT2蛋白序列显示出与其他门类(如陆地植物和绿藻)的NRT2蛋白相似。然而,还揭示了仅在七足植物中才知道的一些有趣的特异性,尤其是形成跨膜结构域9和10之间的非典型细胞外环的100个氨基酸的附加序列,其功能尚待阐明。进行了具有不同氮源和浓度的单个T1Nrt2基因表达的分析。低NO3-浓度强烈诱导TlNrt2.1和TlNrt2.3,并被NH4 +底物抑制,被归类为诱导型基因。 TlNrt2.2的特征是本构图,无论底物是什么。最后,TlNrt2.4显示出非典型反应,文献中较早时未报道。有趣的是,T1Nrt2.4的表达与内部氮配额水平相关,而不是外部氮浓度。这是关于T. lutea氮代谢的第一个研究,为今后研究这些基因的功能及其对工业应用的意义开辟了道路。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号