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Comparative transcriptome profiling of a thermal resistant vs. sensitive silkworm strain in response to high temperature under stressful humidity condition

机译:高温和高湿条件下耐热和敏感家蚕菌株响应高温的转录组比较分析

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摘要

Thermotolerance is important particularly for poikilotherms such as insects. Understanding the mechanisms by which insects respond to high temperatures can provide insights into their adaptation to the environment. Therefore, in this study, we performed a transcriptome analysis of two silkworm strains with significantly different resistance to heat as well as humidity; the thermo-resistant strain 7532 and the thermos-sensitive strain Knobbed. We identified in total 4,944 differentially expressed genes (DEGs) using RNA-Seq. Among these, 4,390 were annotated and 554 were novel. Gene Ontology (GO) analysis of 747 DEGs identified between RT_48h (Resistant strain with high-temperature Treatment for 48 hours) and ST_48h (Sensitive strain with high-temperature Treatment for 48 hours) showed significant enrichment of 12 GO terms including metabolic process, extracellular region and serine-type peptidase activity. Moreover, we discovered 12 DEGs that may contribute to the heat-humidity stress response in the silkworm. Our data clearly showed that 48h post-exposure may be a critical time point for silkworm to respond to high temperature and humidity. These results provide insights into the genes and biological processes involved in high temperature and humidity tolerance in the silkworm, and advance our understanding of thermal tolerance in insects.
机译:耐热性对于诸如昆虫的足温特别重要。了解昆虫对高温做出反应的机制可以提供其对环境适应性的见解。因此,在这项研究中,我们对两种对热和湿度具有明显不同的家蚕进行了转录组分析。耐热应变7532和热敏应变Knobbed。我们使用RNA-Seq鉴定了总共4,944个差异表达基因(DEG)。其中,带注释的有4390个,新颖的有554个。在RT_48h(耐高温处理48小时)和ST_48h(耐高温处理48小时)之间鉴定的747个DEG的基因本体论(GO)分析显示,包括代谢过程,细胞外区域和丝氨酸肽酶活性。此外,我们发现了12个DEGs可能有助于家蚕的热湿应激反应。我们的数据清楚地表明,暴露后48小时可能是家蚕应对高温和高湿度的关键时间点。这些结果为了解蚕中高温和高湿耐受性的基因和生物学过程提供了见识,并加深了我们对昆虫耐热性的理解。

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