<HashMap><database>biostudies-literature</database><scores/><additional><submitter>Tamayo B</submitter><funding>USDA-NIFA</funding><pagination>gigabyte41</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC9933520</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>2022</volume><pubmed_abstract>Citrus greening disease is caused by the pathogen &lt;i>Candidatus&lt;/i> Liberibacter asiaticus and transmitted by the Asian citrus psyllid, &lt;i>Diaphorina citri&lt;/i>. No curative treatment or significant prevention mechanism exists for this disease, which causes economic losses from reduced citrus production. A high-quality genome of &lt;i>D. citri&lt;/i> is being manually annotated to provide accurate gene models to identify novel control targets and increase understanding of this pest. Here, we annotated 25 &lt;i>D. citri&lt;/i> genes involved in glycolysis and gluconeogenesis, and seven in trehaloneogenesis. Comparative analysis showed that glycolysis genes in &lt;i>D. citri&lt;/i> are highly conserved but copy numbers vary. Analysis of expression levels revealed upregulation of several enzymes in the glycolys</pubmed_abstract><journal>GigaByte (Hong Kong, China)</journal><pubmed_title>Annotation of glycolysis, gluconeogenesis, and trehaloneogenesis pathways provide insight into carbohydrate metabolism in the Asian citrus psyllid.</pubmed_title><pmcid>PMC9933520</pmcid><funding_grant_id>2015-70016-23028</funding_grant_id><funding_grant_id>2020-70029-33199</funding_grant_id><funding_grant_id>HSI 2020-38422-32252</funding_grant_id><pubmed_authors>Hunter WB</pubmed_authors><pubmed_authors>Benoit JB</pubmed_authors><pubmed_authors>Vosburg C</pubmed_authors><pubmed_authors>Jernigan MR</pubmed_authors><pubmed_authors>Mathew A</pubmed_authors><pubmed_authors>Shippy T</pubmed_authors><pubmed_authors>Panitz N</pubmed_authors><pubmed_authors>Hosmani PS</pubmed_authors><pubmed_authors>Mueller LA</pubmed_authors><pubmed_authors>D'Elia T</pubmed_authors><pubmed_authors>Saha S</pubmed_authors><pubmed_authors>Adkins S</pubmed_authors><pubmed_authors>Hasan DL</pubmed_authors><pubmed_authors>Flores-Gonzalez M</pubmed_authors><pubmed_authors>Tamayo B</pubmed_authors><pubmed_authors>Kercher K</pubmed_authors><pubmed_authors>Massimino C</pubmed_authors><pubmed_authors>Harper D</pubmed_authors><pubmed_authors>Brown SJ</pubmed_authors></additional><is_claimable>false</is_claimable><name>Annotation of glycolysis, gluconeogenesis, and trehaloneogenesis pathways provide insight into carbohydrate metabolism in the Asian citrus psyllid.</name><description>Citrus greening disease is caused by the pathogen &lt;i>Candidatus&lt;/i> Liberibacter asiaticus and transmitted by the Asian citrus psyllid, &lt;i>Diaphorina citri&lt;/i>. No curative treatment or significant prevention mechanism exists for this disease, which causes economic losses from reduced citrus production. A high-quality genome of &lt;i>D. citri&lt;/i> is being manually annotated to provide accurate gene models to identify novel control targets and increase understanding of this pest. Here, we annotated 25 &lt;i>D. citri&lt;/i> genes involved in glycolysis and gluconeogenesis, and seven in trehaloneogenesis. Comparative analysis showed that glycolysis genes in &lt;i>D. citri&lt;/i> are highly conserved but copy numbers vary. Analysis of expression levels revealed upregulation of several enzymes in the glycolys</description><dates><release>2022-01-01T00:00:00Z</release><publication>2022</publication><modification>2025-04-04T14:16:58.419Z</modification><creation>2025-02-19T02:23:27.984Z</creation></dates><accession>S-EPMC9933520</accession><cross_references><pubmed>36824510</pubmed><doi>10.46471/gigabyte.41</doi></cross_references></HashMap>