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1 publications mentioning cqu-mir-2951

Open access articles that are associated with the species Culex quinquefasciatus and mention the gene name mir-2951. Click the [+] symbols to view sentences that include the gene name, or the word cloud on the right for a summary.

[+] score: 17
Other miRNAs from this paper: hsa-mir-33a, hsa-mir-92a-1, hsa-mir-92a-2, dme-mir-1, dme-mir-8, dme-mir-11, hsa-mir-34a, hsa-mir-210, dme-mir-184, dme-mir-275, dme-mir-92a, dme-mir-276a, dme-mir-277, dme-mir-33, dme-mir-281-1, dme-mir-281-2, dme-mir-34, dme-mir-276b, dme-mir-210, dme-mir-92b, dme-bantam, dme-mir-309, dme-mir-317, hsa-mir-1-2, hsa-mir-184, hsa-mir-190a, hsa-mir-1-1, hsa-mir-34b, hsa-mir-34c, aga-bantam, aga-mir-1, aga-mir-184, aga-mir-210, aga-mir-275, aga-mir-276, aga-mir-277, aga-mir-281, aga-mir-317, aga-mir-8, aga-mir-92a, aga-mir-92b, hsa-mir-92b, hsa-mir-33b, hsa-mir-190b, dme-mir-190, dme-mir-957, dme-mir-970, dme-mir-980, dme-mir-981, dme-mir-927, dme-mir-989, dme-mir-252, dme-mir-1000, aga-mir-1174, aga-mir-1175, aga-mir-34, aga-mir-989, aga-mir-11, aga-mir-981, aga-mir-1889, aga-mir-1890, aga-mir-1891, aga-mir-190, aga-mir-927, aga-mir-970, aga-mir-957, aga-mir-1000, aga-mir-309, cqu-mir-1174, cqu-mir-281-1, cqu-mir-1, cqu-mir-275, cqu-mir-957, cqu-mir-277, cqu-mir-252-1, cqu-mir-970, cqu-mir-317-1, cqu-mir-981, cqu-mir-989, cqu-mir-1175, cqu-mir-276-1, cqu-mir-276-2, cqu-mir-276-3, cqu-mir-210, cqu-mir-92, cqu-mir-190-2, cqu-mir-190-1, cqu-mir-1000, cqu-mir-11, cqu-mir-8, cqu-bantam, cqu-mir-1891, cqu-mir-184, cqu-mir-1890, cqu-mir-980, cqu-mir-33, cqu-mir-2941-1, cqu-mir-2941-2, cqu-mir-2952, cqu-mir-1889, cqu-mir-309, cqu-mir-252-2, cqu-mir-281-2, cqu-mir-317-2, aga-mir-2944a-1, aga-mir-2944a-2, aga-mir-2944b, aga-mir-2945, aga-mir-33, aga-mir-980
miR-2951 is 100% identical to cqu-miR-2951, expressed in Culex mosquitoes (Figure 4C). [score:3]
Both miRNAs were sequenced ~1,100 times; however, primer extension analysis suggested that miR-2951 is expressed at higher levels than miR-2765 (Figure 4A). [score:2]
Furthermore, unlike Aedes miR-2951*, for which a distinct sequence was identified, over five equally abundant sequences for Cx. [score:1]
No orthologs for miR-2951 or miR-2952 were found in An. [score:1]
albopictus miR-2951 reads contained an additional 5' G, while Cx. [score:1]
These sequence variations might also be attributed to diversity in the flanking pri-miRNA sequences; miR-2951 maps to eight locations within each of the Ae. [score:1]
quinquefasciatus and Aedes miR-210, miR-252, and miR-2951 are examples of multiple, distinct miRNAs arising from one arm of a single hairpin (Figures 2 and 4). [score:1]
quinquefasciatus miR-2951*, contributing to differences in the predicted pre-miRNA hairpin structures. [score:1]
quinquefasciatus miR-2951* were observed, which affect the positioning of the star strand in the pre-miRNA hairpin (Table 1, 2). [score:1]
albopictus miR-2951 and Cx. [score:1]
quinquefasciatus miR-2951, which affect the seed. [score:1]
Two novel Aedes miRNAs, miR-2765 and miR-2951, arise from pre-miRNAs with typical lengths of 59 nt and 57 nt, respectively (Figure 4B). [score:1]
albopictus miR-2951 differs by one nucleotide from the Ae. [score:1]
Only 15 nucleotides, excluding the potential 5' seed, are conserved between Aedes miR-2951*, and Cx. [score:1]
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