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Gerris buenoi genome annotations v0.5.3

    The Gerris buenoi genome was recently sequenced and annotated as part of the i5k pilot project by the Baylor College of Medicine. This dataset presents the Gerris buenoi gene set BCM_v_0.5.3, which was generated computationally. RNA-Seq data was used with additional protein homology data for a MAKER automated annotation of the Gerris buenoi genome assembly 1.0. NOTE: This gene set is an unstable pre-release (v0.5.3), and was provided to facilitate manual curation and analyses before the official gene set is released. Gene identifiers from this gene set will likely not be maintained.

    Gerris buenoi Official Gene set v1.0

      The Gerris buenoi genome was recently sequenced and annotated as part of the i5k pilot project by the Baylor College of Medicine. The Gerris buenoi research community has manually reviewed and curated the computational gene predictions and generated an official gene set, OGSv1.0. The OGS is an integration of automatic gene predictions from Maker (performed by Dan Hughes at Baylor College of Medicine) with manual annotations by the research community (done via the Apollo manual annotation software).

      Hyalella azteca Genome Annotations v0.5.3

        The Baylor College of Medicine recently sequenced and annotated the Hyalella azteca genome as part of the i5k pilot project. This dataset presents the Hyalella azteca gene set BCM_v_0.5.3, which was generated computationally. RNA-Seq data was used with additional protein homology data for a MAKER automated annotation of the Hyalella azteca genome assembly 1.0. Further annotation method details will be available in a forthcoming publication.

        NOTE: This gene set is an unstable pre-release (v0.5.3), and was provided to facilitate manual curation and analyses before the official gene set is released. Gene identifiers from this gene set will likely not be maintained.

        Hyalella azteca Genome Assembly 1.0

          The Baylor College of Medicine recently sequenced and annotated the Hyalella azteca genome as part of the i5k pilot project. The Hyalella azteca research community has manually reviewed and curated the computational gene predictions and generated an official gene set, OGSv1.0. This dataset presents the Hyalella azteca genome v1.0. This assembly version is the pre-release version, prior to filtering and quality control by the National Center for Biotechnology Information's GenBank resource. The corresponding genome assembly in NCBI is [GCA_000764305.1](https://www.ncbi.nlm.nih.gov/assembly/GCA_000764305.1).

          Hyalella azteca Official Gene Set v1.0

            The Hyalella azteca genome was recently sequenced and annotated as part of the i5k pilot project by the Baylor College of Medicine. The Hyalella azteca research community has manually reviewed and curated the computational gene predictions and generated an official gene set, OGSv1.0. The OGS is an integration of automatic gene predictions from Maker with manual annotations by the research community (via the Apollo manual annotation software).

            i5K Workspace@NAL

              The i5k Workspace @ NAL is a platform for communities around ‘orphaned’ arthropod genome projects to access, visualize, curate and disseminate their data.

              Leptinotarsa decemlineata genome annotations v0.5.3

                This dataset presents the Leptinotarsa decemlineata gene set BCM_v_0.5.3, which was generated computationally. RNA-Seq data was used with additional protein homology data for a MAKER automated annotation of the Leptinotarsa decemlineata genome assembly 1.0.

                Leptinotarsa decemlineata genome assembly 1.0

                  This dataset presents the Leptinotarsa decemlineata genome v1.0. This assembly version is the pre-release version, prior to filtering and quality control by the [National Center for Biotechnology Information's GenBank resource](http://www.ncbi.nlm.nih.gov/assembly/GCA_000696205.1)

                  Diaphorina citri Official Gene Set v1.0

                    This gene set (OGS v1.0) combines both automatically predicted and manually curated gene models. This community effort produced 530 manually curated gene models across developmental, physiological, RNAi regulatory, and immunity-related pathways. As previously shown in the pea aphid, RNAi machinery genes putatively involved in the microRNA pathway have been specifically duplicated. A comprehensive transcriptome enabled us to identify a number of gene families that are either missing or misassembled in the draft genome.