School of Life Sciences, Guizhou Normal University, No. 116, Baoshanbei Street, Guiyang, 550001, Guizhou Province, PR China.
Agronomy College, State Key Laboratory of Crop Biology, Shandong Agricultural University, No. 61, Daizong Street, Taian 271000, Shandong Province, PR China.
Gene. 2018 Sep 25;672:1-7. doi: 10.1016/j.gene.2018.06.015. Epub 2018 Jun 6.
In graminaceous plants, nicotianamine (NA) is an important component of metal acquisition. NA is synthesized from S-adenosyl-l-methionine (SAM) catalyzed by nicotianamine synthase (NAS). Here, eight Triticum monococcum NAS (TmNAS) genes were cloned and characterized. Amino acid sequence analysis showed that TmNAS genes had high sequence identity with those from Triticum aestivum, Zea mays, Oryza sativa and Hordeum vulgare. Phylogenetic analysis showed that NAS genes were classified into two distinct groups, e.g. group I and group II. Expression analysis demonstrated that two of the TmNAS genes in group II were highly expressed in shoot tissues, and the other six TmNAS genes in group I were expressed in root tissues. Further analysis indicated that root-specific TmNAS genes were up-regulated under conditions of Fe- or Zn-deficiency growth, while shoot-specific TmNAS genes were up-regulated under conditions of Fe- or Zn-sufficiency. These results help us understand the NAS genes in T. monococcum and provide novel genetic resources for improving Fe and Zn concentrations in common wheat.
在禾本科植物中,植物螯合肽(NA)是金属获取的重要组成部分。NA 是由 S-腺苷甲硫氨酸(SAM)催化合成的,由植物螯合肽合酶(NAS)催化。本研究克隆并鉴定了 8 个普通小麦 NAS(TmNAS)基因。氨基酸序列分析表明,TmNAS 基因与来源于普通小麦、玉米、水稻和大麦的基因具有高度的序列同一性。系统发育分析表明,NAS 基因分为两个不同的组,即组 I 和组 II。表达分析表明,组 II 中的两个 TmNAS 基因在茎组织中高度表达,而组 I 中的另外六个 TmNAS 基因在根组织中表达。进一步分析表明,根特异性 TmNAS 基因在缺铁或缺锌生长条件下上调,而茎特异性 TmNAS 基因在铁或锌充足条件下上调。这些结果有助于我们了解 T. monococcum 中的 NAS 基因,并为提高普通小麦中铁和锌的浓度提供新的遗传资源。