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首页> 外文期刊>International Journal of Medicinal Mushrooms >Cloning and Characterization of Promoters of the Fungal Immunomodulatory Protein Genes from Ganoderma spp. (Agaricomycetes) and Their Response to Methyl Jasmonate and Salicylic Acid
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Cloning and Characterization of Promoters of the Fungal Immunomodulatory Protein Genes from Ganoderma spp. (Agaricomycetes) and Their Response to Methyl Jasmonate and Salicylic Acid

机译:Ganoderma SPP的真菌免疫调节蛋白基因启动子的克隆与表征。 (姬松茸)及其对茉莉酸甲酯和水杨酸的反应

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摘要

Ganoderma mushrooms for medicinal use contain various bioactive compounds. but the genetic elements available for these medicinal mushrooms are still limited. In this study we cloned and analyzed the promoters of fungal inununomodulatoty protein (HP) genes from G. lucidum and G. atrum. FIP gene expression was induced by different concentrations of methyl jasmonate (MeJA) and salicylic acid (SA), and messenger RNA expression was detected by quantitative reverse-transcription polymerase chain reaction. The results provided 5' upstream sequences of FIP genes from G. lucidum and G. atrum. Sequence analysis showed that the FIP-glu promoter sequence contained 11 CAAT boxes, 3 TATA boxes, 3 MeJA-responsive elements, 3 MYB binding site (MBS) motifs, 1 abscisic acid responsive element, 1 TGA, 1 anaerobic inducible element, 2 circadian elements, 1 fungal elicitor, 1 meristem-specific activation element, 3 Skn-1 motifs, and several light-responsive elements. The 5' flanking region of FIP-gat included 9 CAAT boxes, 4 TATA boxes, 3 MeJA-responsive elements, 1 AuxRR core, 1 GC motif, 1 MBS, 1 fungal elicitor, 1 meristem-specific activation element, 3 Skn-1 motifs, and several light-responsive elements. On the transcriptional level, both FTP-glu and FIP gat reached their highest expression after treatment with MeJA at 500 mu mol/L,. FIP-glu expression depended on the concentration of SA (0-1000 mg/L); the expression of the FIP-gat gene was highest at a concentration of 100 mg MeJA/L. This research lays the foundation to use Ganoderma mycelia as bioreactors for producing FIPs.
机译:用于药用的Ganoderma蘑菇含有各种生物活性化合物。但可用于这些药用蘑菇的遗传元素仍然有限。在这项研究中,我们克隆并分析了来自G. lucidum和G. Atrum的真菌inunonomodulatoty蛋白(HP)基因的启动子。通过不同浓度的茉莉甲酸甲(MEJA)和水杨酸(SA)诱导FIP基因表达,并通过定量反转转录聚合酶链反应检测信使RNA表达。结果提供了来自G. lucidum和G. Atrum的FIP基因的5'上游序列。序列分析表明,FIP-Glu启动子序列包含11个Caat盒,3个塔塔盒,3 MejA响应元素,3个MyB结合位点(MBS)图案,1个脱钙酸响应元件,1吨TGA,1个厌氧诱导元素,2昼夜元素,1个真菌ELICITOR,1个分生特异性激活元件,3个SKN-1基序和几个光响应元件。 FIP-GAT的5'侧翼区域包括9个CAAT盒,4个塔塔盒,3 Meja响应元件,1个AUXRR核心,1 GC基序,1 MBS,1个真菌ELICITOR,1个分类特异性激活元素,3 SKN-1图案,以及几个轻响应元件。在转录层面上,FTP-Glu和FIP GAT均在使用Meja达到500 mo mol / l后达到最高表达。 FIP-Glu表达依赖于SA的浓度(0-1000 mg / L); FIP-GAT基因的表达以100mg MEJA / L的浓度最高。该研究为使用Ganoderma Mycelia作为生产FIPS的生物反应器奠定了基础。

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