...
首页> 外文期刊>Frontiers in Plant Science >Molecular Characterization, Gene Evolution, and Expression Analysis of the Fructose-1, 6-bisphosphate Aldolase (FBA) Gene Family in Wheat ( Triticum aestivum L.)
【24h】

Molecular Characterization, Gene Evolution, and Expression Analysis of the Fructose-1, 6-bisphosphate Aldolase (FBA) Gene Family in Wheat ( Triticum aestivum L.)

机译:小麦果糖-1,6-双磷酸族醛糖酶(FBA)基因家族的分子表征,基因演化和表达分析(<斜斜体>小麦Aestivum L.)

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Fructose-1, 6-bisphosphate aldolase (FBA) is a key plant enzyme that is involved in glycolysis, gluconeogenesis, and the Calvin cycle. It plays significant roles in biotic and abiotic stress responses, as well as in regulating growth and development processes. In the present paper, 21 genes encoding TaFBA isoenzymes were identified, characterized, and categorized into three groups: class I chloroplast/plastid FBA (CpFBA), class I cytosol FBA (cFBA), and class II chloroplast/plastid FBA . By using a prediction online database and genomic PCR analysis of Chinese Spring nulli-tetrasomic lines, we have confirmed the chromosomal location of these genes in 12 chromosomes of four homologous groups. Sequence and genomic structure analysis revealed the high identity of the allelic TaFBA genes and the origin of different TaFBA genes. Numerous putative environment stimulus-responsive cis -elements have been identified in 1,500-bp regions of TaFBA gene promoters, of which the most abundant are the light-regulated elements (LREs). Phylogenetic reconstruction using the deduced protein sequence of 245 FBA genes indicated an independent evolutionary pathway for the class I and class II groups. Although, earlier studies have indicated that class II FBA only occurs in prokaryote and fungi, our results have demonstrated that a few class II CpFBAs exist in wheat and other closely related species. Class I TaFBA was predicted to be tetramers and class II to be dimers. Gene expression analysis based on microarray and transcriptome databases suggested the distinct role of TaFBAs in different tissues and developmental stages. The TaFBA 4–9 genes were highly expressed in leaves and might play important roles in wheat development. The differential expression patterns of the TaFBA genes in light/dark and a few abiotic stress conditions were also analyzed. The results suggested that LRE cis-elements of TaFBA gene promoters were not directly related to light responses. Most TaFBA genes had higher expression levels in the roots than in the shoots when under various stresses. Class I cytosol TaFBA genes, particularly TaFBA10/12/18 and TaFBA13/16 , and three class II TaFBA genes are involved in responses to various abiotic stresses. Class I CpFBA genes in wheat are apparently sensitive to different stress conditions.
机译:果糖-1,6-双磷酸醛糖酶(FBA)是参与糖酵解,葡糖生成和Calvin循环的关键植物酶。它在生物和非生物应激反应中起着重要作用,以及调节生长和开发过程。在本文中,鉴定了编码TAFBA同工酶的21个基因,其特征和分为三组:I类叶绿体/塑性FBA(CPFBA),I类细胞溶胶FBA(CFBA)和II类叶绿体/塑性FBA。通过使用中国春季无胞质线的预测在线数据库和基因组PCR分析,我们已经确认了这些基因的12个染色体的四种同源基团的染色体位置。序列和基因组结构分析揭示了等位基巴基因的高度同一性和不同TAFBA基因的起源。已经在TAFBA基因启动子的1,500-BP区域中鉴定了许多推定的环境刺激响应性CIS -ELEMENT,其中最丰富的是光调节元件(LRE)。使用245 FBA基因推导的蛋白质序列的系统发育重建表明I类和II类组的独立进化途径。虽然早期的研究表明,II级FBA仅发生在原核生物和真菌中,但我们的结果表明,小麦和其他密切相关的物种中存在一些II类CPFBA。 I类Tafba预计是四分之一和II类是二聚体。基于微阵列和转录组数据库的基因表达分析表明TAFBA在不同组织和发育阶段中的不同作用。 TAFBA 4-9基因在叶子中高度表达,可能在小麦发育中发挥重要作用。还分析了光/暗和少数非生物胁迫条件下的TAFBA基因的差异表达模式。结果表明,TAFBA基因启动子的LRE CIS-元素与轻响应没有直接相关。在各种应力​​下,大多数Tafba基因在根中具有比枝条更高的表达水平。 I类Cytosol Tafba基因,特别是TAFBA10 / 12/18和TAFBA13 / 16以及三类TAFBA基因参与各种非生物胁迫的反应。小麦中的I类CPFBA基因对不同的应力条件显然敏感。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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