Transcriptomic analysis reveals the potential antioxidant pathways regulated by multiprotein bridging factor 1 (BbMBF1) in the fungal entomopathogen Beauveria bassiana
Transcriptomic analysis reveals the potential antioxidant pathways regulated by multiprotein bridging factor 1 (BbMBF1) in the fungal entomopathogen Beauveria bassiana
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转录组分析揭示了真菌昆虫病原白僵菌中多蛋白桥接因子 1 (BbMBF1) 调节的潜在抗氧化途径
DOI:
10.1080/09583157.2015.1057696
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发表时间:
2015-06
影响因子:
1.4
通讯作者:
Ying Sheng-Hua
中科院分区:
文献类型:
--
作者:
Chu Xin-Lin;Feng Ming-Guang;Ying Sheng-Hua
Resistance to oxidative stress is crucial to environmental fitness and potency of the fungal entomopathogen Beauveria bassiana. Multiprotein bridging factor 1 (BbMBF1), an evolutionarily conserved transcriptional cofactor, plays an important role in development and stress tolerance of eukaryotic organisms. It has been established that the B. bassiana homologue (BbMBF1) contributes to the fungal response to menadione stress under lower nutritional conditions. The present study indicated that rich nutrient reduces fungal sensitivity to menadione stress, but further confirmed that the BbMBF1 is also required for fungal tolerance to oxidation under rich nutritional conditions. To explore the down-stream targets regulated by BbMBF1 under menadione stress, a comparative trancriptome was performed on the wild type and the ΔBbMBF1 mutant strains. Transcriptomic analysis showed that the oxidation-response genes regulated by BbMBF1 were significantly enriched in the functional catalogues of metabolism, cell rescue and transportation. Moreover, bioinformatic analysis predicted a putative motif which distributed mainly over the promoters of genes associated with metabolism and detoxification. Conclusively, these results indicate that BbMBF1 contributes to B. bassiana response to oxidative stress by mediating the potential transcription factors regulating pathway of metabolism and detoxification. These findings highlight the potential antioxidant strategies in the fungal entomopathogens, and provide the new clues/targets for improving potency of entomopathogenic fungi by molecular manipulation.
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影响因子:
4.6
作者:
Xiao G;Ying SH;Zheng P;Wang ZL;Zhang S;Xie XQ;Shang Y;St Leger RJ;Zhao GP;Wang C;Feng MG
通讯作者:
Feng MG
DOI:
--
发表时间:
2011
期刊:
--
影响因子:
--
作者:
Smita Kanwal;A. Mahmood
通讯作者:
Smita Kanwal;A. Mahmood
DOI:
10.1159/000099415
发表时间:
2007-02
期刊:
--
影响因子:
--
作者:
J. Hulshof
通讯作者:
J. Hulshof
影响因子:
5.1
作者:
Bosshard, Franziska;Riedel, Kathrin;Egli, Thomas
通讯作者:
Egli, Thomas
影响因子:
3.6
作者:
Frohner IE;Bourgeois C;Yatsyk K;Majer O;Kuchler K
通讯作者:
Kuchler K