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1.
Arthropod Struct Dev ; 41(6): 515-34, 2012 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-22814269

RESUMO

In arthropods, the modified primary cilium is a structure common to all peripheral sensory neurons other than photoreceptors. Since its first description in 1958, it has been investigated in great detail in numerous sense organs (sensilla) of many insect species by means of electron microscopy and electrophysiology. The perfection of molecular biological methods has led to an enormous advance in our knowledge about development and function of sensory cilia in the fruitfly since the end of the last century. The cilia show a wealth of adaptations according to their different physiological roles: chemoreception, mechanoreception, hygroreception, and thermoreception. Divergent types of receptors and channels have evolved fulfilling these tasks. The number of olfactory receptor genes can be close to 300 in ants, whereas in crickets slightest mechanical stimuli are detected by the interaction of extremely sophisticated biomechanical devices with mechanosensory cilia. Despite their enormous morphological and physiological divergence, sensilla and sensory cilia develop according to a stereotyped pattern. Intraflagellar transport genes have been found to be decisive for proper development and function.


Assuntos
Artrópodes/anatomia & histologia , Artrópodes/fisiologia , Adaptação Fisiológica , Animais , Cílios/fisiologia , Órgãos dos Sentidos/anatomia & histologia , Órgãos dos Sentidos/fisiologia
2.
Methods Cell Biol ; 96: 363-94, 2010.
Artigo em Inglês | MEDLINE | ID: mdl-20869531

RESUMO

For almost 100 years, insects have been favorable "model systems" in biology. Just to mention a few examples: fruit flies in genetics and developmental biology; bugs and caterpillars in hormone research; houseflies, blowflies, and locusts in neurobiology; silk moths in pheromone research; honeybees and crickets in neuroethology. For more than 50 years the electron microscope (EM) has been a valuable tool in analyzing the structure of cells and organs of these creatures. However, progress in specimen preparation was relatively slow compared with mammalian material and, in 1970, it was taken for granted that insects were much more difficult to fix than mammals. Since then, methods have dramatically improved, and satisfactory results can now be obtained routinely with chemical as well as cryofixation. In this chapter we briefly demonstrate what can be achieved with insect material, and help the researcher to find the most appropriate method for her/his systems and scientific questions.


Assuntos
Insetos/ultraestrutura , Modelos Biológicos , Fixação de Tecidos/métodos , Animais , Artefatos , Biologia Celular , Criopreservação/instrumentação , Criopreservação/métodos , Substituição ao Congelamento/métodos , Imuno-Histoquímica/métodos , Microscopia Eletrônica/instrumentação , Microscopia Eletrônica/métodos
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