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首页> 外文期刊>Scientific reports. >Phototransduction and circadian entrainment are the key pathways in the signaling mechanism for the baculovirus induced tree-top disease in the lepidopteran larvae
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Phototransduction and circadian entrainment are the key pathways in the signaling mechanism for the baculovirus induced tree-top disease in the lepidopteran larvae

机译:光反手术和昼夜捕获是杆状病毒诱导鳞翅目幼虫的杆状病毒的信号传导机制的关键途径

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摘要

The tree-top disease is an altered behavioral state, displayed by baculovirus-infected lepidopteran larvae, and characterized by climbing to an elevated position before death. The detailed molecular mechanism underlying this phenomenal behavior change has not been reported yet. Our study focused on the transcriptomic changes in the host larvae due to baculovirus infection from pre-symptomatic to tree-top disease stage. Enrichment map visualization of the gene sets grouped based on the functional annotation similarity revealed 34 enriched pathways in signaling mechanism cluster during LdMNPV induced tree-top disease in third instar Lymantria dispar asiatica larvae. Directed light bioassay demonstrated the positively phototactic larvae during tree-top disease and the gene expression analysis showed altered rhythmicity of the host’s core circadian genes (per and tim) during the course of infection emphasizing the role of Circadian entrainment and Phototransduction pathways?in the process, which also?showed maximum interactions (50% shared genes with 24 and 23 pathways respectively) among other signaling pathways in the enrichment map. Our study provided valuable insights into different pathways and genes, their coordinated response and molecular regulation during baculovirus infection and also improved our understanding regarding signaling mechanisms in LdMNPV induced tree-top disease.
机译:树脂疾病是一种改变的行为状态,由杆状病毒感染的鳞翅目幼虫显示,并在死亡前攀爬到升高的位置。尚未报告这种现象行为变化的详细分子机制。我们的研究重点是由于杆状病毒感染来自前症状至树脂疾病阶段的杆状病毒感染的转录组变化。基于功能注释相似性进行了基因集的富集图可视化,在第三龄诱导的第三瞬间Lymantria Divear Asiatica幼虫中,在LDMNPV诱导的树脂疾病中显示了34个富集的途径。定向光生物测定在树质疾病期间证明了阳性光学幼虫,在感染过程中,基因表达分析显示了宿主核心昼夜昼夜昼夜昼夜节律基因(Per和Tim)的变化,强调了昼夜节律夹带和光电宣传途径的作用?在过程中(其中也含有最大相互作用(分别为富集图中的其他信号通路(分别为24和23路径的50%共用基因)。我们的研究为杆状病毒感染期间提供了有价值的途径和基因,其协调的反应和分子调节,并改善了LDMNPV诱发的树脂疾病中的信号传导机制的理解。

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