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      The effect of temperature on Leishmania (Kinetoplastida: Trypanosomatidae) development in sand flies.

      1 , ,
      Journal of medical entomology

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          Abstract

          The spread of leishmaniasis to areas where it was previously considered nonendemic has been recently found in the New and Old Worlds, and climate changes are suspected as a crucial factor responsible for this spread. Ambient temperature is known to significantly affect the metabolism of sand flies and their developmental times, but little is known about the effect of temperature on the Leishmania life cycle in vectors. This study assesses the effect of temperature on the development of two closely related New World Viannia species, Leishmania braziliensis and Leishmania peruviana, in the permissive vector Lutzomyia longipalpis, and on the development of New and Old World Leishmania infantum in its natural vectors Lu. longipalpis and Phlebotomus perniciosus, respectively. The mountain species L. peruviana developed well in sand fly females kept at 20 degrees C, whereas at 26 degrees C, most infections were lost during the defecation ofbloodmeal remains; this suggests an adaptation to the slower metabolism of sand flies living at lower ambient temperature. On the contrary, L. infantum and L. braziliensis developed well at both temperatures tested; heavy late-stage infections were observed in a majority of sand fly females maintained at 20 degrees C as well 26 degrees C. Frequent fully developed infections of L. infantum and L. braziliensis at 20 degrees C suggest a certain risk of the spread of these two Leishmania species to higher latitudes and altitudes.

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          Author and article information

          Journal
          J. Med. Entomol.
          Journal of medical entomology
          0022-2585
          0022-2585
          Sep 2013
          : 50
          : 5
          Affiliations
          [1 ] Faculty of Science, Department of Parasitology, Charles University, Prague 2, 128 44, Czech Republic. janehlavac@seznam.cz
          Article
          10.1603/ME13053
          24180098
          cbc45cc7-b346-4ebb-9933-4010487505a1
          History

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