首页> 外文期刊>Plant molecular biology reporter >F-Box Genes in Emphasis Type='Italic'>Brassica rapa/Emphasis>: Genome-Wide Identification, Structural Characterization, Expressional Validation, and Comparative Analysis
【24h】

F-Box Genes in Emphasis Type='Italic'>Brassica rapa/Emphasis>: Genome-Wide Identification, Structural Characterization, Expressional Validation, and Comparative Analysis

机译:&lt中的F型盒基因。强调=“斜体”>芸苔属Rapa& /重点>:基因组 - 范围鉴定,结构表征,表征验证和比较分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The F-box genes form one of the largest functionally important, rapidly evolving plant gene families. The encoded proteins mainly function as part of the Skp1–Cullin–F-box complex involved in ubiquitinating and degrading proteins. The F-box proteins also regulate diverse functions, including embryogenesis, organ development, floral organ identity, self-incompatibility, senescence, homeostasis, signaling, and responses to biotic and abiotic stresses. We identified 571 Brassica rapa F-box genes ( BrFBX ) and mapped approximately 560 genes onto 10 chromosomes. We also classified the duplicated genes. A phylogenetic tree consisting of the B. rapa F-box genes and an analysis of conserved motif sequences enabled us to categorize the identified genes into 11 subgroups based on node support. Additionally, we determined the intron–exon structural characteristics, which helped detect differences among the BrFBX genes. Gene ontology predictions enabled the classification of 431 genes related to biological processes, 63 genes involved in molecular functions, and 40 genes associated with cellular localization. The 69 genes differentially expressed under abiotic stress conditions (i.e., cold, drought, and salt stresses) and 446 genes expressed in specific tissues (i.e., calli, roots, leaves, stems, flowers, and siliques) were further categorized into three groups based on their expression levels. These genes exhibited various spatiotemporal expression patterns during stress treatments and in specific tissues. Based on motif and expression analyses, we selected approximately 30 BrFBX genes for quantitative reverse transcription polymerase chain reaction analysis, which detected differences in expression among eight tissues during B. rapa (Chiifu) growth. The genome-wide study results reveal the relationships among the BrFBX genes regarding evolution, structural variability, potential functions, and these data can be further used as a resource for the gene characterization in relation to growth, development, and during different stress conditions for the development of Brassica rapa .
机译:F-Box基因形成最大的功能重要,快速发展的植物基因系列之一。编码的蛋白质主要用作突出的蛋白质和降解蛋白的SKP1-CULLIN-F箱复合物的一部分。 F箱蛋白还调节各种功能,包括胚胎发生,器官发育,花器官身份,自我不相容性,衰老,稳态,信号传导和对生物和非生物胁迫的反应。我们鉴定了571个芸苔属Rapa F盒基因(BRFBX)并将大约560个基因映射到10染色体上。我们还分类了重复的基因。由B. RAPA F箱基因组成的系统发育树和保守的基序序列的分析使我们能够根据节点支持将所识别的基因分类为11个子组。此外,我们确定了内外的内外结构特征,这有助于检测BRFBX基因之间的差异。基因本体预测使得431基因的分类与生物过程相关的431个基因,参与分子函数的63个基因,以及与细胞定位相关的40个基因。在非生物胁迫条件下差异表达的69个基因(即,在特定组织中表达的446个基因(即,Calli,Root,叶,茎,茎,花和单片机)被进一步分类为基于三组在他们的表达水平上。这些基因在应力处理和特定组织中表现出各种时空表达模式。基于基于基序和表达分析,我们选择了大约30 brFBx基因进行定量逆转录聚合酶链反应分析,其在B. RAPA(Chiifu)生长期间检测到八个组织中表达的差异。基因组的研究结果揭示了关于演化,结构可变性,潜在功能的BRFBX基因之间的关系,并且这些数据可以进一步用作基因表征与生长,发展和不同的压力条件相关的资源Brassica Rapa的发展。

著录项

  • 来源
    《Plant molecular biology reporter》 |2018年第3期|共18页
  • 作者单位

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

    Department of Biological Sciences College of Biological Sciences and Biotechnology Chungnam National University;

    Molecular Genetics and Genomics Laboratory Department of Horticulture College of Agriculture and Life Science Chungnam National University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 植物学;
  • 关键词

    Brassica rapa; BrFBX genes; Structural characteristics; Expression; Stress;

    机译:Brassica Rapa;BRFBX基因;结构特征;表达;压力;

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