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通过基因免疫表型分析探索免疫细胞生物学的新维度。

Exploring new dimensions of immune cell biology in through genetic immunophenotyping.

作者信息

Samantsidis George-Rafael, Smith Ryan C

机构信息

Department of Plant Pathology, Entomology and Microbiology, Iowa State University, Ames, Iowa, USA.

出版信息

bioRxiv. 2024 Oct 25:2024.10.22.619690. doi: 10.1101/2024.10.22.619690.

Abstract

Mosquito immune cells, or hemocytes, are integral components of the innate immune responses that define vector competence. However, the lack of genetic resources has limited their characterization and our understanding of their functional roles in immune signaling. To overcome these challenges, we engineered transgenic that express fluorescent proteins under the control of candidate hemocyte promoters. Following the characterization of five transgenic constructs through gene expression and microscopy-based approaches, we examine mosquito immune cell populations by leveraging advanced spectral imaging flow cytometry. Our results comprehensively map the composition of mosquito hemocytes, classifying them into twelve distinct populations based on size, granularity, ploidy, phagocytic capacity, and the expression of PPO6, SPARC, and LRIM15 genetic markers. Together, our novel use of morphological properties and genetic markers provides increased resolution into our understanding of mosquito hemocytes, highlighting the complexity and plasticity of these immune cell populations, while providing the foundation for deeper investigations into their roles in immunity and pathogen transmission.

摘要

蚊子的免疫细胞,即血细胞,是定义媒介能力的先天免疫反应的重要组成部分。然而,缺乏遗传资源限制了对它们的表征以及我们对其在免疫信号传导中功能作用的理解。为了克服这些挑战,我们构建了转基因蚊子,它们在候选血细胞启动子的控制下表达荧光蛋白。通过基因表达和基于显微镜的方法对五个转基因构建体进行表征后,我们利用先进的光谱成像流式细胞术检查蚊子免疫细胞群体。我们的结果全面绘制了蚊子血细胞的组成,根据大小、粒度、倍性、吞噬能力以及PPO6、SPARC和LRIM15遗传标记的表达将它们分为十二个不同的群体。总之,我们对形态学特性和遗传标记的新颖应用提高了我们对蚊子血细胞的理解分辨率,突出了这些免疫细胞群体的复杂性和可塑性,同时为深入研究它们在免疫和病原体传播中的作用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a87f/11526922/147da0f42a0b/nihpp-2024.10.22.619690v1-f0001.jpg

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