6 research outputs found

    Additional file 2: of Genome scaffolding and annotation for the pathogen vector Ixodes ricinus by ultra-long single molecule sequencing

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    Figure S1. Sequence distribution as percent identity between I. ricinus and I. scapularis.I. ricinus scaffolds were blasted against I. scapularis scaffolds. Only sequences passing the threshold of a maximum e-value of 1.0 e-5 and minimum 80% identity are included. (PDF 229 kb

    Additional file 13: of Integration of Ixodes ricinus genome sequencing with transcriptome and proteome annotation of the naĂŻve midgut

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    FDR analysis of mass spectrometry search results. Mass spectrometry search results against concatenated target-decoy databases including protein scores and cumulative FDR. (XLSX 138 kb

    Additional file 12: of Integration of Ixodes ricinus genome sequencing with transcriptome and proteome annotation of the naĂŻve midgut

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    Combined direct acyclic graphs for the different GO categories “molecular function” (A), “biological process” (B) and “cellular component” (C). (PDF 90 kb

    Additional file 4: of Integration of Ixodes ricinus genome sequencing with transcriptome and proteome annotation of the naĂŻve midgut

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    Homology comparison to Acari genomes (except I. scapularis ). A description of the best match including e-value, identity, bit score and hit length of a homology comparison against all Acari genomes registered at NCBI Genbank at the time of analysis except I. scapularis, namely Dermatophagoides farinae, Metaseiulus occidentalis, Rhipicephalus microplus, Tetranychus urticae and Varroa destructor, are listed for each contig. (XLSX 1023 kb

    Additional file 7: of Integration of Ixodes ricinus genome sequencing with transcriptome and proteome annotation of the naĂŻve midgut

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    Distribution of annotated sequences by GO categories “molecular function” (A), “biological process” (B) and “cellular component” (C) of level 2 of the combined direct acyclic graph for the annotated transcriptome sequences. The number in brackets represent the number of sequences that are annotated to this GO term. (PDF 495 kb
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