首页> 外文期刊>Australian Journal of Botany >Molecular cloning, expression and sequence analysis of a phenylalanine ammonia-lyase gene from Poncirus trifoliata under iron deficiency
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Molecular cloning, expression and sequence analysis of a phenylalanine ammonia-lyase gene from Poncirus trifoliata under iron deficiency

机译:缺铁条件下三叶草苯丙氨酸解氨酶基因的分子克隆,表达及序列分析

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Phenylalanine ammonia-lyase (PAL) is a specific branch point enzyme of primary and secondary metabolism. It is deemed to play a key role in plant development and defence. Homology cloning of the cDNA sequence of PAL gene, Pt-PAL1, from Poncirus trifoliata found a complete open reading frame (ORF) of 2166 bp, with 721 encoded amino acids. The sequence alignment indicated that the amino acid sequence of Pt-PAL1 shared a high identity with PAL genes found in other plants. Both the dominant and catalytic active sites of Pt-PAL1 were similar to PAL proteins observed in Petroselinum crispum. Phylogenetic tree analysis indicated that Pt-PAL1 was more closely related to PALs in Citrus clementina x C. reticulata than to those from other plants. Real-time polymerase chain reaction showed that the expression of Pt-PAL1 gene in roots under iron (Fe) deficiency (0 mu M o, o-FeEDDHA) was significantly higher than that under Fe sufficiency (50 mu M o, o-FeEDDHA). The same result was noted for total phenolic content. Phenolic compounds play an important role in response to iron deficiency in Strategy I plants. In the present study, root exudates of Poncirus trifoliata strongly promoted the reutilisation of apoplastic Fe in roots. Furthermore, more Fe was desorbed from the cell wall under Fe deficiency than during Fe sufficiency, indicating a relationship between Fe and total phenolics in Strategy I plants under Fe deficiency.
机译:苯丙氨酸氨裂合酶(PAL)是一次和二次代谢的特定分支点酶。它被认为在植物发育和防御中起关键作用。三角果PAL基因Pt-PAL1的cDNA序列的同源性克隆发现了一个完整的开放阅读框(ORF),长度为2166 bp,具有721个编码氨基酸。序列比对表明Pt-PAL1的氨基酸序列与其他植物中发现的PAL基因具有高度同一性。 Pt-PAL1的主要活性位点和催化活性位点均与在Petroselinum crispum中观察到的PAL蛋白相似。系统进化树分析表明,Pt-PAL1与柑橘中的CAL相比,与其他植物中的PAL更紧密相关。实时聚合酶链反应显示,铁(Fe)缺乏(0μM o,o-FeEDDHA)根系中Pt-PAL1基因的表达显着高于铁充足(50μM o,o-FeEDDHA)根系中的表达。 )。对于总酚含量,注意到相同的结果。酚类化合物在应对策略I植物中的铁缺乏中起重要作用。在本研究中,三叶半夏的根部分泌物强烈促进根部质外体铁的再利用。此外,与缺铁相比,缺铁时从细胞壁中解吸的铁更多,这表明策略I植物在缺铁条件下,Fe与总酚之间的关系。

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