首页> 外文期刊>Molecular Biotechnology >Molecular Identification and Characterization of a Gene Associated with the Onset of Tapping Panel Dryness (TPD) Syndrome in Rubber Tree (Hevea brasiliensis Muell.) by mRNA Differential Display
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Molecular Identification and Characterization of a Gene Associated with the Onset of Tapping Panel Dryness (TPD) Syndrome in Rubber Tree (Hevea brasiliensis Muell.) by mRNA Differential Display

机译:利用mRNA差异显示技术鉴定和鉴定橡胶树轻触干燥(TPD)综合征相关基因的分子鉴定和表征

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In rubber tree (Hevea brasiliensis), tapping panel dryness (TPD) syndrome is considered as a complex physiological disorder which affects latex biosynthesis. To identify differentially expressed genes between healthy and TPD-affected trees, mRNA differential display reverse transcriptase polymerase chain reaction (DDRT-PCR) analysis was performed. We isolated 10 differentially expressed cDNA fragments of which one cDNA encoding a putative TOM20 like protein was identified. The cDNA (1,024 bp), corresponding to the HbTOM20 gene (H evea b rasiliensis Translocase of the Outer Mitochondrial Membrane), contained an open reading frame to code for 202 amino acid protein with a theoretical pI value of 9.5 and the calculated protein M W was 23.5 kDa. The predicted amino acid sequence contained conserved domains of TOM20 like proteins in the N-terminal. The protein HbTOM20 has 32% and 27% similarity to Populus TOM20 and Solanum TOM20, respectively. Both semi-quantitative RT-PCR and Northern blot results revealed that the HbTOM20 expression was significantly down-regulated in TPD-affected trees compared to healthy one. Accumulation of HbTOM20 mRNA transcripts was significantly higher in the bark tissues collected from healthy region than that of partially affected by TPD (partially dried) while barely detectable in completely TPD-affected area. Differential expression pattern was noticed in three rubber clones representing various degrees of TPD tolerance. These results suggest that down-regulation of HbTOM20 in TPD-affected trees may play an important role in alteration of mitochondrial metabolism resulting in impaired latex biosynthesis.
机译:在橡胶树(巴西橡胶树)中,轻拍面板干燥(TPD)综合征被认为是一种复杂的生理疾病,会影响乳胶的生物合成。为了鉴定健康树和受TPD影响的树之间的差异表达基因,进行了mRNA差异显示逆转录酶聚合酶链反应(DDRT-PCR)分析。我们分离了10个差异表达的cDNA片段,其中一个cDNA被编码为TOM20样蛋白。 cDNA(1,024 bp)对应于HbTOM20基因(外线粒体膜的evelia b rasiliensis Translocase),包含一个开放阅读框,可编码202个氨基酸蛋白,理论pI值为9.5,计算得出的蛋白MW < / sub为23.5kDa。预测的氨基酸序列在N-末端包含TOM20样蛋白的保守结构域。 HbTOM20蛋白分别与Populus TOM20和Solanum TOM20具有32%和27%的相似性。半定量RT-PCR和Northern印迹结果均显示,与健康树种相比,受TPD影响的树种中HbTOM20表达显着下调。从健康区域采集的树皮组织中,HbTOM20 mRNA转录物的积累明显高于部分受TPD影响(部分干燥)的树皮组织,而在完全受TPD影响的区域中几乎检测不到。在代表不同程度的TPD耐受性的三个橡胶克隆中发现了差异表达模式。这些结果表明,受TPD影响的树木中HbTOM20的下调可能在线粒体代谢改变中起重要作用,从而导致乳胶的生物合成受损。

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