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Transcriptional profiling provides new insights into the role of nitric oxide in enhancing Ganoderma oregonense resistance to heat stress

机译:转录谱分析为一氧化氮在增强灵芝抗热应激中的作用提供了新见解

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摘要

Ganoderma is well known for its use in traditional Chinese medicine and is widely cultivated in China, Korea, and Japan. Increased temperatures associated with global warming are negatively influencing the growth and development of Ganoderma. Nitric oxide is reported to play an important role in alleviating fungal heat stress (HS). However, the transcriptional profiling of Ganoderma oregonense in response to HS, as well as the transcriptional response regulated by NO to cope with HS has not been reported. We used RNA-Seq technology to generate large-scale transcriptome data from G. oregonense mycelia subjected to HS (32 °C) and exposed to concentrations of exogenous NO. The results showed that heat shock proteins (HSPs), “probable stress-induced proteins”, and unigenes involved in “D-amino-acid oxidase activity” and “oxidoreductase activity” were significantly up-regulated in G. oregonense subjected to HS (P < 0.05). The significantly up-regulated HSPs, “monooxygenases”, “alcohol dehydrogenase”, and “FAD/NAD(P)-binding domain-containing proteins” (P < 0.05) regulated by exogenous NO may play important roles in the enhanced HS tolerance of G. oregonense. These results provide insights into the transcriptional response of G. oregonense to HS and the mechanism by which NO enhances the HS tolerance of fungi at the gene expression level.
机译:灵芝以其在传统中药中的使用而闻名,并在中国,韩国和日本广泛种植。与全球变暖相关的温度升高对灵芝的生长和发育产生负面影响。一氧化氮据报道在减轻真菌热应激(HS)中起重要作用。然而,尚未报道灵芝响应HS的转录概况以及由NO调节以应对HS的转录响应。我们使用RNA-Seq技术从经受HS(32°C)并暴露于外源NO浓度的牛至线菌菌丝体中生成大规模转录组数据。结果表明,热休克蛋白(HSPs),“可能的应激诱导蛋白”和参与“ D-氨基酸氧化酶活性”和“氧化还原酶活性”的单基因在受HS(S。 P <0.05)。外源NO调节的HSP,“单加氧酶”,“酒精脱氢酶”和“含FAD / NAD(P)结合域的蛋白”的显着上调(P <0.05)可能在增强HSP的HS耐受性中起重要作用。 G.牛至。这些结果提供了洞悉牛至对HS的转录反应以及NO在基因表达水平上增强真菌对HS的耐受性的机理的见解。

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