首页> 美国卫生研究院文献>The Plant Pathology Journal >Identification and Expression Profiles of Six Transcripts Encoding Carboxylesterase Protein in Vitis flexuosa Infected with Pathogens
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Identification and Expression Profiles of Six Transcripts Encoding Carboxylesterase Protein in Vitis flexuosa Infected with Pathogens

机译:病原菌感染的弯曲葡萄中六种编码羧化酶的转录物的鉴定和表达谱

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摘要

Plants protect themselves from pathogen attacks via several mechanisms, including hypersensitive cell death. Recognition of pathogen attack by the plant resistance gene triggers expression of carboxylesterase genes associated with hypersensitive response. We identified six transcripts of carboxylesterase genes, Vitis flexuosa carboxylesterase 5585 (VfCXE5585), VfCXE12827, VfCXE13132, VfCXE17159, VfCXE18231, and VfCXE47674, which showed different expression patterns upon transcriptome analysis of V. flexuosa inoculated with Elsinoe ampelina. The lengths of genes ranged from 1,098 to 1,629 bp, and their encoded proteins consisted of 309 to 335 amino acids. The predicted amino acid sequences showed hydrolase like domains in all six transcripts and contained two conserved motifs, GXSXG of serine hydrolase characteristics and HGGGF related to the carboxylesterase family. The deduced amino acid sequence also contained a potential catalytic triad consisted of serine, aspartic acid and histidine. Of the six transcripts, VfCXE12827 showed upregulated expression against E. ampelina at all time points. Three genes (VfCXE5585, VfCXE12827, and VfCXE13132) showed upregulation, while others (VfCXE17159, VfCXE18231, and VfCXE47674) were down regulated in grapevines infected with Botrytis cinerea. All transcripts showed upregulated expression against Rhizobium vitis at early and later time points except VfCXE12827, and were downregulated for up to 48 hours post inoculation (hpi) after upregulation at 1 hpi in response to R. vitis infection. All tested genes showed high and differential expression in response to pathogens, indicating that they all may play a role in defense pathways during pathogen infection in grapevines.
机译:植物通过多种机制保护自己免受病原体的侵害,包括超敏细胞死亡。植物抗性基因对病原体攻击的识别触发了与超敏反应相关的羧酸酯酶基因的表达。我们鉴定了6个羧基酯酶基因的转录本,即柔叶葡萄(Vitis flexuosa)羧酸酯酶5585(VfCXE5585),VfCXE12827,VfCXE13132,VfCXE17159,VfCXE18231和VfCXE47674,它们在用弯曲弯曲杆菌进行转录组分析后显示出不同的表达模式。基因的长度为1,098至1,629 bp,编码的蛋白质由309至335个氨基酸组成。预测的氨基酸序列在所有六个转录物中均显示水解酶样结构域,并包含两个保守的基序,丝氨酸水解酶特性的GXSXG和与羧酸酯酶家族相关的HGGGF。推导的氨基酸序列还包含潜在的催化三联体,其由丝氨酸,天冬氨酸和组氨酸组成。在这六个转录本中,VfCXE12827在所有时间点均显示针对Ampelina的表达上调。在被灰葡萄孢菌感染的葡萄中,三个基因(VfCXE5585,VfCXE12827和VfCXE13132)显示上调,而其他基因(VfCXE17159,VfCXE18231和 VfCXE47674 )下调。除 VfCXE12827 以外,所有转录本均在早期和较晚的时间点表达针对 Rhizobium v​​itis 的表达上调,并且在接种后(hpi)在1 hpi上调后长达48小时被下调。对 R的回应。葡萄感染。所有测试的基因均显示出对病原体的高表达和差异表达,表明它们都可能在葡萄树中病原体感染期间在防御途径中起作用。

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