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DNA Barcode for the Identification of the Sand Fly Lutzomyia Longipalpis Plant Feeding Preferences in a Tropical Urban Environment

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Journal Sci Rep
Specialty Science
Date 2016 Jul 21
PMID 27435430
Citations 11
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Abstract

Little is known about the feeding behavior of hematophagous insects that require plant sugar to complete their life cycles. We studied plant feeding of Lutzomyia longipalpis sand flies, known vectors of Leishmania infantum/chagasi parasites, in a Brazilian city endemic with visceral leishmaniasis. The DNA barcode technique was applied to identify plant food source of wild-caught L. longipalpis using specific primers for a locus from the chloroplast genome, ribulose diphosphate carboxylase. DNA from all trees or shrubs within a 100-meter radius from the trap were collected to build a barcode reference library. While plants from the Anacardiaceae and Meliaceae families were the most abundant at the sampling site (25.4% and 12.7% of the local plant population, respectively), DNA from these plant families was found in few flies; in contrast, despite its low abundance (2.9%), DNA from the Fabaceae family was detected in 94.7% of the sand flies. The proportion of sand flies testing positive for DNA from a given plant family was not significantly associated with abundance, distance from the trap, or average crown expansion of plants from that family. The data suggest that there may indeed be a feeding preference of L. longipalpis for plants in the Fabaceae family.

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References
1.
Cavalcante R, Pereira M, Freitas J, Gontijo N . Ingestion of saliva during carbohydrate feeding by Lutzomyia longipalpis (Diptera; Psychodidae). Mem Inst Oswaldo Cruz. 2006; 101(1):85-7. DOI: 10.1590/s0074-02762006000100016. View

2.
Costa C, PEREIRA H, Araujo M . [Visceral leishmaniasis epidemic in the State of Piauí, Brazil, 1980-1986]. Rev Saude Publica. 1990; 24(5):361-72. DOI: 10.1590/s0034-89101990000500003. View

3.
Garcia-Robledo C, Erickson D, Staines C, Erwin T, Kress W . Tropical plant-herbivore networks: reconstructing species interactions using DNA barcodes. PLoS One. 2013; 8(1):e52967. PMC: 3540088. DOI: 10.1371/journal.pone.0052967. View

4.
Machado V, Correa A, Goulart T, da Rocha Silva F, Ortiz D, Pinto M . Attraction of the sand fly Nyssomyia neivai (Diptera: Psychodidae) to chemical compounds in a wind tunnel. Parasit Vectors. 2015; 8:147. PMC: 4354759. DOI: 10.1186/s13071-015-0748-y. View

5.
Junnila A, Muller G, Schlein Y . Identification of plant tissues from the gut of Phlebotomus papatasi by DNA analysis. Acta Trop. 2010; 117(1):14-8. DOI: 10.1016/j.actatropica.2010.08.019. View