Xiao Rong, Wang Liang, Cao Yingshuai, Zhang Guren
State Key Laboratory for Biocontrol Sun Yat-sen University Guangzhou China.
Ecol Evol. 2016 Apr 20;6(11):3540-3554. doi: 10.1002/ece3.2142. eCollection 2016 Jun.
The wolf spider is a dominant predator in paddy ecosystem and an important biological control agent of rice pests. Temperature represents a primary factor influencing its biology and behavior, although the underlying molecular mechanisms remain unknown. To understand the response of to temperature stress, we performed comparative transcriptome analyses of spider adults exposed to 10°C and 40°C for 12 h. We obtained 67,725 assembled unigenes, 21,765 of which were annotated in transcriptome libraries, and identified 905 and 834 genes significantly up- or down-regulated by temperature stress. Functional categorization revealed the differential regulation of transcription, signal transduction, and metabolism processes. Calcium signaling pathway and metabolic pathway involving respiratory chain components played important roles in adapting to low temperature, whereas at high temperature, oxidative phosphorylation and amino acid metabolism were critical. Differentially expressed ribosomal protein genes contributed to temperature stress adaptation, and heat shock genes were significantly up-regulated. This study represents the first report of transcriptome identification related to the Araneae species in response to temperature stress. These results will greatly facilitate our understanding of the physiological and biochemical mechanisms of spiders in response to temperature stress.
狼蛛是稻田生态系统中的优势捕食者,也是水稻害虫的重要生物防治因子。温度是影响其生物学特性和行为的主要因素,但其潜在的分子机制尚不清楚。为了解狼蛛对温度胁迫的反应,我们对暴露于10°C和40°C环境12小时的成年狼蛛进行了比较转录组分析。我们获得了67,725个组装的单基因,其中21,765个在转录组文库中得到注释,并鉴定出905个和834个受温度胁迫显著上调或下调的基因。功能分类揭示了转录、信号转导和代谢过程的差异调节。涉及呼吸链成分的钙信号通路和代谢途径在适应低温中起重要作用,而在高温下,氧化磷酸化和氨基酸代谢至关重要。差异表达的核糖体蛋白基因有助于温度胁迫适应,热休克基因显著上调。本研究是关于蜘蛛目物种响应温度胁迫的转录组鉴定的首次报道。这些结果将极大地促进我们对蜘蛛响应温度胁迫的生理生化机制的理解。