首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Mining of Brassica-Specific Genes (BSGs) and Their Induction in Different Developmental Stages and under Plasmodiophora brassicae Stress in Brassica rapa
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Mining of Brassica-Specific Genes (BSGs) and Their Induction in Different Developmental Stages and under Plasmodiophora brassicae Stress in Brassica rapa

机译:甘蓝型油菜不同发育阶段和芸苔浆胁迫下甘蓝特异基因的挖掘及其诱导

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摘要

Orphan genes, also called lineage-specific genes (LSGs), are important for responses to biotic and abiotic stresses, and are associated with lineage-specific structures and biological functions. To date, there have been no studies investigating gene number, gene features, or gene expression patterns of orphan genes in Brassica rapa. In this study, 1540 Brassica-specific genes (BSGs) and 1824 Cruciferae-specific genes (CSGs) were identified based on the genome of Brassica rapa. The genic features analysis indicated that BSGs and CSGs possessed a lower percentage of multi-exon genes, higher GC content, and shorter gene length than evolutionary-conserved genes (ECGs). In addition, five types of BSGs were obtained and 145 out of 529 real A subgenome-specific BSGs were verified by PCR in 51 species. In silico and semi-qPCR, gene expression analysis of BSGs suggested that BSGs are expressed in various tissue and can be induced by Plasmodiophora brassicae. Moreover, an A/C subgenome-specific BSG, BSGs1, was specifically expressed during the heading stage, indicating that the gene might be associated with leafy head formation. Our results provide valuable biological information for studying the molecular function of BSGs for Brassica-specific phenotypes and biotic stress in B. rapa.
机译:孤儿基因,也称为谱系特异性基因(LSGs),对生物和非生物胁迫的反应很重要,并且与谱系特异性结构和生物学功能有关。迄今为止,还没有研究调查甘蓝型油菜孤儿基因的基因数目,基因特征或基因表达模式的研究。在这项研究中,根据甘蓝型油菜的基因组鉴定了1540个芸苔属特异性基因(BSG)和1824十字花科特异性基因(CSG)。基因特征分析表明,与进化保守基因(ECG)相比,BSG和CSG拥有较低的多外显子基因百分比,较高的GC含量和较短的基因长度。此外,获得了五种类型的BSG,并通过PCR验证了529个真实A亚基因组特异性BSG中的145种。在计算机和半定量PCR中,对BSG的基因表达分析表明,BSG在各种组织中表达,并且可以被芸苔疟原虫诱导。此外,A / C亚基因组特定的BSG,BSGs1,是在抽穗期特异性表达的,这表明该基因可能与叶状头的形成有关。我们的结果提供了宝贵的生物学信息,可用于研究BSGs的分子功能对甘蓝型油菜特定的表型和生物胁迫。

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