Nucleotide Sequence and Secondary Structure Variations in ITS2-rDNA Region of the Members of Anopheles culicifacies (Diptera: Culicidae) Species Complex
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Anopheles culicifacies, major vector o f malaria in Sri Lanka is a five member species complex. Differences o f the vector competence o f siblings, is still poorly delineated. Therefore, the current study was carried out to observe any relationship o f the variations in vector competence to ITS2 nucleotide sequences and secondary structure characteristics o f the species complex. DNA was extracted from sibling species B and E, the ITS2 region was amplified and sequenced. Sequences for A, C and D siblings were retrieved from NCBI GenBank. The complex divided into two groups, AD and BCE based on primary and secondary structure of the ITS2 sequences. Secondary structures o f all species had three helices where pyrimidine-pyrimidine mismatch in Helix II and a UUUGG motif at 5’ o f Helix III were displayed only for B, C and E. Among five types o f loops, interior and exterior loops were more conserved than other loop types. Results showed the major vector sibling E and poor or non vector sibling B shares identical nucleotide sequence and secondary structure. Therefore, ITS2 secondary structure is independent o f the vector competence o f the sibling species.
Anopheles culicifacies, major vector o f malaria in Sri Lanka is a five member species complex. Differences o f the vector competence o f siblings, is still poorly delineated. Therefore, the current study was carried out to observe any relationship o f the variations in vector competence to ITS2 nucleotide sequences and secondary structure characteristics o f the species complex. DNA was extracted from sibling species B and E, the ITS2 region was amplified and sequenced. Sequences for A, C and D siblings were retrieved from NCBI GenBank. The complex divided into two groups, AD and BCE based on primary and secondary structure of the ITS2 sequences. Secondary structures o f all species had three helices where pyrimidine-pyrimidine mismatch in Helix II and a UUUGG motif at 5’ o f Helix III were displayed only for B, C and E. Among five types o f loops, interior and exterior loops were more conserved than other loop types. Results showed the major vector sibling E and poor or non vector sibling B shares identical nucleotide sequence and secondary structure. Therefore, ITS2 secondary structure is independent o f the vector competence o f the sibling species.
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Shanika, K.H.S., Harischandra, I.N., De Silva, B.G.D.N.K. (2016). "Nucleotide Sequence and Secondary Structure Variations in ITS2-rDNA Region of the Members of Anopheles culicifacies (Diptera: Culicidae) Species Complex", pp. 01-22
