首页> 美国卫生研究院文献>International Journal of Plant Genomics >Analysis of Gene Expression Profiles in Leaf Tissues of Cultivated Peanuts and Development of EST-SSR Markers and Gene Discovery
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Analysis of Gene Expression Profiles in Leaf Tissues of Cultivated Peanuts and Development of EST-SSR Markers and Gene Discovery

机译:栽培花生叶片组织基因表达谱分析及EST-SSR标记的发展及基因发现

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摘要

Peanut is vulnerable to a range of foliar diseases such as spotted wilt caused by Tomato spotted wilt virus (TSWV), early (Cercospora arachidicola) and late (Cercosporidium personatum) leaf spots, southern stem rot (Sclerotium rolfsii), and sclerotinia blight (Sclerotinia minor). In this study, we report the generation of 17,376 peanut expressed sequence tags (ESTs) from leaf tissues of a peanut cultivar (Tifrunner, resistant to TSWV and leaf spots) and a breeding line (GT-C20, susceptible to TSWV and leaf spots). After trimming vector and discarding low quality sequences, a total of 14,432 high-quality ESTs were selected for further analysis and deposition to GenBank. Sequence clustering resulted in 6,888 unique ESTs composed of 1,703 tentative consensus (TCs) sequences and 5185 singletons. A large number of ESTs (5717) representing genes of unknown functions were also identified. Among the unique sequences, there were 856 EST-SSRs identified. A total of 290 new EST-based SSR markers were developed and examined for amplification and polymorphism in cultivated peanut and wild species. Resequencing information of selected amplified alleles revealed that allelic diversity could be attributed mainly to differences in repeat type and length in the SSR regions. In addition, a few additional INDEL mutations and substitutions were observed in the regions flanking the microsatellite regions. In addition, some defense-related transcripts were also identified, such as putative oxalate oxidase () and NBS-LRR domains. EST data in this study have provided a new source of information for gene discovery and development of SSR markers in cultivated peanut. A total of 16931 ESTs have been deposited to the NCBI GenBank database with accession numbers to .
机译:花生易患一系列叶病,例如番茄斑萎病毒(TSWV),早期(Cercospora arachidicola)和晚期(Cercosporidium personatum)叶斑,南部茎腐烂菌(Sclerotium rolfsii)和核盘菌枯萎病(Sclerotinia)引起的斑萎病。次要)。在这项研究中,我们报告了花生品种(Tifrunner,对TSWV和叶斑具有抗性)和育种系(GT-C20,对TSWV和叶斑易感)的叶子组织产生了17376个花生表达序列标签(EST)。 。修剪载体并丢弃低质量序列后,总共选择了14,432个高质量EST,以进行进一步分析并保存到GenBank。序列聚类产生6,888个独特的EST,由1,703个暂定共有(TC)序列和5185个单例组成。还鉴定了代表功能未知基因的大量EST(5717)。在独特序列中,鉴定出856个EST-SSR。总共开发了290种基于EST的新SSR标记,并检查了栽培花生和野生物种的扩增和多态性。对选定扩增的等位基因的信息进行重测序发现,等位基因多样性可能主要归因于SSR区域中重复类型和长度的差异。另外,在微卫星区域侧翼的区域中观察到一些额外的INDEL突变和取代。此外,还鉴定了一些与防御相关的转录本,例如假定的草酸氧化酶()和NBS-LRR域。这项研究中的EST数据为栽培花生中SSR标记的基因发现和开发提供了新的信息来源。共有16931个EST储存在NCBI GenBank数据库中,登录号为。

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