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3 results for “triatomines”
Figs 37-54 in Mg -dependent ATPase activity in triatomine salivary glands (Heteroptera, Triatominae)
Figs 37-54, Salivary glands of male T. infestans (Figs 37-45) and P. megistus (Figs 46-54) submitted to the control method (absence of substrate) of cytochemical for Mg2 +-dependent ATPase. General view and detail of anterior (Figs 37-39; 46-48), median (Figs 40-42; 49-51), and posterior (Figs 43- 45; 52-54) salivary gland. Note the absence of enzyme activity in the nucleus (Nu) and cytoplasm. Magnifications: Figs 37, 40, 43, 46, 49, 52 = 270x; Figs 38, 39, 41, 42, 44, 45, 47, 48, 50, 51, 53, 54 = 1344x.
Figs 19-36 in Mg -dependent ATPase activity in triatomine salivary glands (Heteroptera, Triatominae)
Figs 19-36. Panstrongylus megistus (Burmeister, 1835), salivary glands of males (Figs 19-27) and females (Figs 28-36) submitted to cytochemical reaction for Mg2 +-dependent ATPase. General view and detail of anterior (Figs 19-21, 28-30), median (Figs 22-24, 31-33), and posterior (Figs 25-27, 34-36) salivary gland. Arrows indicate dark nuclear corpuscles with a strong cobalt sulfide precipitation. The arrowheads indicate a positive response in the nuclear envelope. Magnifications: Figs 19, 22, 25, 28, 31, 34 = 270x; Figs 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36 = 1344x.
Figs 1-18 in Mg -dependent ATPase activity in triatomine salivary glands (Heteroptera, Triatominae)
Figs 1-18. Triatoma infestans (Klug, 1834), salivary glands of males (Figs 1-9) and females (Figs 10-18) submitted to cytochemical reaction for Mg2 +-dependent ATPase. General view and detail of anterior (Figs 1-3, 10-12), median (Figs 4-6, 13-15), and posterior (Figs 7-9, 16-18) salivary gland. Arrows indicate dark nuclear corpuscles with a strong cobalt sulfide precipitation. The arrowheads indicate a positive response in the nuclear envelope. Magnifications: Figs 1, 4, 7, 10, 13, 16 = 270x; Figs 2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18 = 1344x.
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