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首页> 外文期刊>Plant and Cell Physiology >Towards a Systems Approach for Lignin Biosynthesis in Populus trichocarpa: Transcript Abundance and Specificity of the Monolignoln Biosynthetic Genes
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Towards a Systems Approach for Lignin Biosynthesis in Populus trichocarpa: Transcript Abundance and Specificity of the Monolignoln Biosynthetic Genes

机译:毛果杨木质素生物合成的系统方法:单宁生物合成基因的转录丰度和特异性。

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As a step toward a comprehensive description of lignin biosynthesis in Populus trichocarpa, we identified from the genome sequence 95 phenylpropanoid gene models in 10 protein families encoding enzymes for monolignol biosynthesis. Transcript abundance was determined for all 95 genes in xylem, leaf, shoot and phloem using quantitative real-time PCR (qRT-PCR). We identified 23 genes that most probably encode monolignol biosynthesis enzymes during wood formation. Transcripts for 18 of the 23 are abundant and specific to differentiating xylem. We found evidence suggesting functional redundancy at the transcript level for phenylalanine ammonia-lyase (PAL), cinnamate 4-hydroxylase (C4H), 4-coumarate:CoA ligase (4CL), p-hydroxycinnamoyl-CoA:quinate shikimate p-hydroxycinnamoyltransferase (HCT), caffeoyl-CoA O-methyltransferase (CCoAOMT) and coniferyl aldehyde 5-hydroxylase (CAld5H). We carried out an enumeration-based motif identification and discriminant analysis on the promoters of all 95 genes. Five core motifs correctly discriminate the 18 xylem-specific genes from the 77 non-xylem genes. These motifs are similar to promoter elements known to regulate phenylpropanoid gene expression. This work suggests that genes in monolignol biosynthesis are regulated by multiple motifs, often related in sequence.
机译:作为全面描述毛果杨木质素生物合成的一个步骤,我们从基因组序列中鉴定了10种编码单木香酚生物合成酶的蛋白质家族的95苯基丙烷基因模型。使用定量实时PCR(qRT-PCR)测定了木质部,叶片,枝条和韧皮部中所有95个基因的转录本丰度。我们鉴定了23个最有可能在木材形成过程中编码单木酚醇生物合成酶的基因。 23个中的18个的转录本丰富且特定于区分木质部。我们发现证据表明苯丙氨酸解氨酶(PAL),肉桂酸4-羟化酶(C4H),4-香豆酸酯:CoA连接酶(4CL),对羟基肉桂酸-CoA:奎宁酸酯sh草酸酯对羟基肉桂酸转移酶(HCT)在转录水平上具有功能冗余),咖啡酰-CoA O-甲基转移酶(CCoAOMT)和松柏基醛5-羟化酶(CAld5H)。我们对所有95个基因的启动子进行了基于枚举的基序识别和判别分析。五个核心基序正确地从77个非木质部基因中区分出18个木质部特异性基因。这些基序类似于已知调节苯基丙烷基因表达的启动子元件。这项工作表明,单木酚醇生物合成中的基因受多个基序调控,这些基序通常在序列上相关。

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