首页> 外文期刊>Molecular biology reports >Transcript profiling of chickpea pod wall revealed the expression of floral homeotic gene AGAMOUS-like X2 (CaAGLX2)
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Transcript profiling of chickpea pod wall revealed the expression of floral homeotic gene AGAMOUS-like X2 (CaAGLX2)

机译:Chickpea Pod壁的转录物分析显示了花卉归气基因嘧啶般的X2(CaAglx2)的表达

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摘要

The differentially expressed genes in the chickpea pod wall have been identified for the first time using a forward suppression subtractive hybridization (SSH) library. In all, 226 clones of SSH library were sequenced and analyzed. A total of 179 high-quality expressed sequence tags (ESTs) were generated and based on the CAP3 assembly of these ESTs, 126 genes (97 singletons and 29 contigs) were computationally annotated. The mapping of 88.26% ESTs by gene ontology (GO) annotation distributed them into 751 GO terms of three categories, cellular location, molecular function, and biological process. The KEGG pathway analysis revealed 45 ESTs are involved in 49 different biological pathways. Also, 67 ESTs encodes four different classes of enzymes such as oxidoreductases (29), transferase (20), hydrolases (16) and isomerase (2). Six genes were selected and subjected to qPCR analysis, of these, two genes (FHG Floral homeotic AGAMOUS-like isoform X2, MADS1 MADS-box transcription factor) showed significant up-regulation in the pod wall compared to leaves. Surprisingly, one of the MADS1 box gene, FHG (CaAGLX2), responsible for flower development expressed in the pod wall. Therefore, understanding its specific role in the pod wall could be interesting. Thus, the transcript dynamics of the chickpea pod wall revealed differentially expressed genes in the pod wall, which may be participating in the metabolic build-up of both pod wall and seeds.
机译:首次使用正向抑制减法杂交(SSH)文库首次鉴定了鸡豆荚壁中的差异表达基因。总而言之,测序和分析226个SSH库。共产生179个高质量的表达序列标签(EST)并基于这些EST的CAP3组装,126个基因(97个单身和29个Contigs)被计算注释。通过基因本体(GO)注释的映射为88.26%EST分布到751的三类,细胞位置,分子功能和生物过程。 Kegg途径分析显示45个EST参与49种不同的生物途径。此外,67 EST编码了四种不同类别的酶,例如氧化还原酶(29),转移酶(20),水解酶(16)和异构酶(2)。选择六种基因并进行QPCR分析,其中两种基因(FHG花卉杂志样同种型X2,MADS1 MAD箱转录因子)与叶子相比,荚壁的显着上调。令人惊讶的是,疯子1盒基因,FHG(CAAGLX2)中的一种,负责在荚墙上表达的花发育。因此,了解其在豆荚中的特定作用可能是有趣的。因此,鹰嘴豆荚壁的转录动态显示荚壁中的差异表达基因,其可以参与荚壁和种子的代谢堆积。

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