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1. Fly Work
- Maintain flies on standard cornmeal-agar-molasses-yeast medium at room temperature10.
- For crosses, isolate virgins within 6 hr of eclosion. After crossing to males of the desired genotype, change flies to new vials every 3-4 days.
Note: For these experiments, Gal4 line A9 was used to drive expression of transgenes in the wing. Fly stocks can be obtained from the stock center in Bloomington. Stocks used in these experiments include A9-Gal4 (Bl#8761), His2Av-GFP (Bl#5941), Sco/CyO HsCre (Bl#1092), UAS-ChRFP-Tub (Bl#25773), lollibow11.
2. Selection and Mounting of Pupae
- Stage pupae either by collecting them as white prepupae (WPP) and keeping them at 25 °C until they reach the appropriate age or by using morphological criteria12.
- To observe cell divisions, select pupa that have recently undergone head eversion. From this time until just before eclosion (at >96 hr), pupae are immobile allowing extended time-lapse observation.
- Remove pupae from the vials by first touching them with a paintbrush moistened with water, waiting for a minute to allow the water to loosen the adhesive and then gently prodding them onto the paintbrush.
- Gently wash selected pupae by prodding them with a paintbrush in water to remove the salivary gland adhesive and food particles.
- Transfer clean pupae to a 25 mm Petri dish with a coverslip bottom (number 1 ½ coverslips).
- Using thin strips of either modeling clay or dental wax as a support, mount pupae so that the tissue of interest is closest to the coverslip.
Note: In the studies described here, pupal wings, legs, abdominal histoblasts or dorsal notum have been observed. In practice, any tissue within 20 µm of the surface of the pupal case is observable.
- Orient pupae carefully so that the tissue of interest is parallel to the glass coverslip surface.
- Once pupae are mounted, use a paintbrush to transfer a thin layer of thiodiethylene glycol (TDG) to the space between the pupa and the coverslip.
Note: TDG reduces surface scattering, matches the refractive index of oil, and allows oxygen to permeate the tissue13. Use of oils is not recommended, as they tend to deprive the tissues of oxygen, causing rapid cessation of cell behaviors.
3. Imaging
Note: For imaging, a confocal microscope is likely to be essential as the confocality removes most of the obscuring background caused by intense illumination of the pupal case.
- Adjust settings on the confocal to minimize the impact of illumination on pupal development and viability. To do so, strike a balance between the intensity of excitation and the sensitivity of collection. A typical configuration for imaging with the Leica SP5 used the resonant scanner (8,000 Hz), laser power set to 2% (10% transmittance of 20% power), pinhole set to 120 µm, and line averaging set to 8. Settings will vary depending on experimental conditions.
Note: To resolve fine scale features 40X and 63X Oil immersion lenses (0.1 mm working distance) have also been successfully used in this method, though they limit the depth of focus.
4. Analysis
To analyze frames, z-stacks or movies import the data files to FIJI, which has effective tools for viewing, measuring, and modifying files for presentation14. For example time to complete mitosis was measured using the sampling interval and multidimensional image browser to step through frames while watching a cell from prophase to telophase. x-, y-, and z-dimensions can be measured using the measuring tool. For detailed instructions on the software and its use see: http://fiji.sc/Fiji.