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Published on: February 7, 2025
Tools Allowing Independent Visualization and Genetic Manipulation of Drosophila melanogaster Macrophages and
Attila Gyoergy1, Marko Roblek1, Aparna Ratheesh1
1The Institute of Science and Technology Austria, 3400 Klosterneuburg, Austria.
Abstract:
Drosophila melanogaster plasmatocytes, the phagocytic cells among hemocytes, are essential for immune responses, but also play key roles from early development to death through their interactions with other cell types. They regulate homeostasis and signaling during development, stem cell proliferation, metabolism, cancer, wound responses, and aging, displaying intriguing molecular and functional conservation with vertebrate macrophages. Given the relative ease of genetics in Drosophila compared to vertebrates, tools permitting visualization and genetic manipulation of plasmatocytes and surrounding tissues independently at all stages would greatly aid a fuller understanding of these processes, but are lacking. Here, we describe a comprehensive set of transgenic lines that allow this. These include extremely brightly fluorescing mCherry-based lines that allow GAL4-independent visualization of plasmatocyte nuclei, the cytoplasm, or the actin cytoskeleton from embryonic stage 8 through adulthood in both live and fixed samples even as heterozygotes, greatly facilitating screening. These lines allow live visualization and tracking of embryonic plasmatocytes, as well as larval plasmatocytes residing at the body wall or flowing with the surrounding hemolymph. With confocal imaging, interactions of plasmatocytes and inner tissues can be seen in live or fixed embryos, larvae, and adults. They permit efficient GAL4-independent Fluorescence-Activated Cell Sorting (FACS) analysis/sorting of plasmatocytes throughout life. To facilitate genetic studies of reciprocal signaling, we have also made a plasmatocyte-expressing QF2 line that, in combination with extant GAL4 drivers, allows independent genetic manipulation of both plasmatocytes and surrounding tissues, and GAL80 lines that block GAL4 drivers from affecting plasmatocytes, all of which function from the early embryo to the adult.
Insights
Researchers developed new transgenic tools for visualizing and manipulating Drosophila melanogaster plasmatocytes. These tools enable independent genetic control of plasmatocytes and surrounding tissues, aiding research into development, immunity, and aging.
Area of Science:
- Cell Biology
- Developmental Biology
- Immunology
Background:
- Drosophila melanogaster plasmatocytes are crucial for immune responses and play conserved roles with vertebrate macrophages in development, homeostasis, and aging.
- Existing genetic tools lack the ability to independently visualize and manipulate plasmatocytes and surrounding tissues across all developmental stages.
Purpose of the Study:
- To create a comprehensive set of transgenic lines for independent visualization and genetic manipulation of Drosophila plasmatocytes and surrounding tissues.
- To facilitate detailed studies of plasmatocyte functions and interactions throughout development and in various physiological processes.
Main Methods:
- Development of highly fluorescent mCherry-based transgenic lines for GAL4-independent visualization of plasmatocyte nuclei, cytoplasm, and actin cytoskeleton.
- Creation of a plasmatocyte-expressing QF2 line and GAL80 lines to enable independent genetic manipulation of plasmatocytes and surrounding tissues.
- Utilized confocal imaging and Fluorescence-Activated Cell Sorting (FACS) for analysis and sorting of plasmatocytes.
Main Results:
- The new transgenic lines allow bright, GAL4-independent visualization of plasmatocytes from embryonic stages through adulthood in live and fixed samples.
- These tools enable live tracking of plasmatocytes and visualization of their interactions with inner tissues in embryos, larvae, and adults.
- Efficient GAL4-independent FACS analysis and sorting of plasmatocytes are now possible throughout the organism's life.
Conclusions:
- This comprehensive toolkit significantly advances the ability to study Drosophila plasmatocytes and their roles in diverse biological processes.
- The independent genetic control over plasmatocytes and surrounding tissues will accelerate research into reciprocal signaling and cellular interactions.
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