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水生无脊椎动物对真菌病原体暴露的差异基因表达 。 (你提供的原文似乎不完整,句末缺少具体内容)

Differential gene expression in response to fungal pathogen exposure in the aquatic invertebrate, .

作者信息

Terrill Sondag Emily E, Stewart Merrill Tara E, Drnevich Jenny, Holmes Jessica R, Fischer Eva K, Cáceres Carla E, Strickland Lynette R

机构信息

Department of Evolution, Ecology, and Behavior, School of Integrative Biology University of Illinois Urbana-Champaign Urbana Illinois USA.

Coastal and Marine Laboratory Florida State University St. Teresa Florida USA.

出版信息

Ecol Evol. 2023 Jul 28;13(8):e10354. doi: 10.1002/ece3.10354. eCollection 2023 Aug.

Abstract

While vertebrate immune systems are appreciated for their complexity and adaptability, invertebrate immunity is often considered to be less complex. However, immune responses in many invertebrates likely involve sophisticated processes. Interactions between the crustacean host and its fungal pathogen provide an excellent model for exploring the mechanisms underlying crustacean immunity. To explore the genomic basis of immunity in , we used RNA-sequencing technology to quantify differential gene expression between individuals of a single host genotype exposed or unexposed to over 24 h. Transcriptomic analyses showed that the number of differentially expressed genes between the control (unexposed) and experimental (exposed) groups increased over time. Gene ontology enrichment analysis revealed that differentially expressed genes were enriched for immune-related molecules and processes, such as cuticle development, prostaglandin, and defense response processes. Our findings provide a suite of immunologically relevant genes and suggest the presence of a rapidly upregulated immune response involving the cuticle in . Studies involving gene expression responses to pathogen exposure shine a light on the processes occurring during the course of infection. By leveraging knowledge on the genetic basis for immunity, immune mechanisms can be more thoroughly understood to refine our understanding of disease spread within invertebrate populations.

摘要

虽然脊椎动物的免疫系统因其复杂性和适应性而受到重视,但无脊椎动物的免疫通常被认为不那么复杂。然而,许多无脊椎动物的免疫反应可能涉及复杂的过程。甲壳类宿主与其真菌病原体之间的相互作用为探索甲壳类免疫的潜在机制提供了一个极好的模型。为了探索[具体甲壳类动物名称]免疫的基因组基础,我们使用RNA测序技术来量化在24小时内暴露或未暴露于[具体真菌病原体名称]的单一宿主基因型个体之间的差异基因表达。转录组分析表明,对照组(未暴露)和实验组(暴露)之间差异表达基因的数量随时间增加。基因本体富集分析显示,差异表达基因在免疫相关分子和过程中富集,如角质层发育、前列腺素和防御反应过程。我们的研究结果提供了一组与免疫相关的基因,并表明在[具体甲壳类动物名称]中存在一种涉及角质层的快速上调的免疫反应。涉及对病原体暴露的基因表达反应的研究揭示了感染过程中发生的过程。通过利用免疫的遗传基础方面的知识,可以更深入地了解免疫机制,以完善我们对无脊椎动物群体中疾病传播的理解。

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