首页> 美国卫生研究院文献>Journal of Experimental Botany >Molecular cloning and characterization of PtrLAR3 a gene encoding leucoanthocyanidin reductase from Populus trichocarpa and its constitutive expression enhances fungal resistance in transgenic plants
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Molecular cloning and characterization of PtrLAR3 a gene encoding leucoanthocyanidin reductase from Populus trichocarpa and its constitutive expression enhances fungal resistance in transgenic plants

机译:PtrLAR3一种编码毛果杨白花青素还原酶的基因的分子克隆和表征其组成型表达增强了转基因植物中的真菌抗性

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摘要

The flavonoid-derived proanthocyanidins (PAs) are one class of the major defence phenolics in poplar leaves. Transcriptional activation of PA biosynthetic genes, resulting in PA accumulation in leaves, was detected following infection by the fungal Marssonina brunnea f.sp. multigermtubi using digital gene expression analysis. In order to study PA biosynthesis and its induction by fungi, a putative leucoanthocyanidin reductase gene, PtrLAR3, was isolated from Populus trichocarpa. Sequence comparison of PtrLAR3 with other known leucoanthocyanidin reductase proteins revealed high amino acid sequence similarity. Semi-quantitative reverse-transcription (RT) PCR and quantitative real-time PCR analysis demonstrated that PtrLAR3 was expressed in various tissues and the highest level of expression was observed in roots. Overexpression of PtrLAR3 in Chinese white poplar (Populus tomentosa Carr.) led to a significant plant-wide increase in PA levels. In vitro assays showed that crude leaf extracts from 35S:PtrLAR3 transformants were able to inhibit significantly the hyphal growth of M. brunnea f.sp. multigermtubi compared to the extracts from control plants. The transgenic 35S:PtrLAR3 poplar plants displayed a significant (P < 0.05) reduction in their disease symptoms compared with the control. RT-PCR analysis showed that PtrLAR3 expression was up-regulated in all transformants. These results suggested that constitutive expression of endogenous PtrLAR3 could be exploited to improve resistance to fungal pathogens in poplar.
机译:类黄酮衍生的原花色素(PAs)是杨树叶片中主要的防御酚类中的一类。真菌Marssonina brunnea f.sp.感染后检测到PA生物合成基因的转录激活,导致PA在叶片中积累。 multigermtubi使用数字基因表达分析。为了研究PA的生物合成及其对真菌的诱导作用,从毛果杨中分离出了假定的花青素还原酶基因PtrLAR3。 PtrLAR3与其他已知的花青素还原酶蛋白的序列比较显示出高氨基酸序列相似性。半定量逆转录(RT)PCR和定量实时PCR分析表明,PtrLAR3在各种组织中表达,并且在根中观察到最高的表达水平。 PtrLAR3在中国白杨(Populus tomentosa Carr。)中的过表达导致全植物PA含量显着增加。体外试验表明,从35S:PtrLAR3转化子中提取的粗叶提取物能够显着抑制布鲁氏杆菌的菌丝生长。与对照植物提取物相比,multigermtubi。与对照相比,转基因的35S:PtrLAR3杨树植物的病害症状显着减少(P <0.05)。 RT-PCR分析表明,PtrLAR3表达在所有转化体中均被上调。这些结果表明内源性 PtrLAR3 的组成型表达可用于提高杨树对真菌病原体的抗性。

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