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Titlebook: Behaviour of Micro-organisms; Based on the Proceed A. Pérez-Miravete Conference proceedings 1973 Plenum Publishing Company Ltd. 1973 behavi

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https://doi.org/10.1007/978-3-319-59716-4sponse (positive or negative, respectively, if occurring upon a decrease or an increase of light intensity). Since a nondirectional response is not a true taxis, I have proposed that the term “photophobic response” be used instead of “phobophototaxis” (Diehn, 1969 a, 1970 a), and will adhere to that terminology throughout this presentation.
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Phototaxis in , 1: Physiological Basis of Photoreception and Tactic Orientationsponse (positive or negative, respectively, if occurring upon a decrease or an increase of light intensity). Since a nondirectional response is not a true taxis, I have proposed that the term “photophobic response” be used instead of “phobophototaxis” (Diehn, 1969 a, 1970 a), and will adhere to that terminology throughout this presentation.
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Chemotaxis in ,teria has been recognized since the end of the nineteenth century, thanks to the pioneering work of Engelmann, Pfeffer, and other biologists, the mechanisms involved are still almost entirely unknown. How do bacteria detect the attractants? How is this sensed information translated into action; that
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Phototaxis and Photokinesis in Bacteria and Blue-Green Algaer eukaryontic cells, such as endoplasmic reticulum, golgi apparatus, and mitochondria. Although they also lack true plastids, in the phototrophic forms, i.e. the families athiorhodaceae, thiorhodaceae, and chlorobacteriaceae and in all blue-green algae the photosynthetic pigments are located in thyl
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Phototaxis in , 1: Physiological Basis of Photoreception and Tactic Orientatione description of phototaxis defines it as orientation and subsequent oriented movement of freely motile organisms in response to light — towards the light in the case of positive, and away from it in the case of negative phototaxis. While in the past, some authors have distinguished between “topo-ph
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