{"database":"EVA","file_versions":[],"scores":{"citationCount":0,"reanalysisCount":0,"viewCount":0,"searchCount":0},"additional":{"dataset_type":["Whole Genome Sequencing"],"omics_type":["Genomics"],"submitter":["University of Kentucky"],"instrument_platform":["Illumina HiSeq 2500"],"species":["Ambystoma 'unisexual Hybrid'"],"full_dataset_link":["https://www.ebi.ac.uk/eva/?eva-study=PRJEB30506"],"repository":["EVA"],"name_synonyms":["Mexican, axolotl, Axolotls, Ambystoma mexicanum (Shaw & Nodder, 1798), mexicanums, Mexican Salamander, Chromosome., Ambystoma, Ambystoma mexicanums, Salamander, Axolotl, Gyrinus mexicanus"],"description_synonyms":["prophase chromosome, scale tissue, me75, Lr, cou, Chromosome, scale, Genomes, interphase chromosome, plant peltate hair, Bra, Low, chromatid, whole genome, scales, peltate hair., Tl3, Tl2, D17Mit170, T1"],"citation_count":["0"],"additional_accession":[]},"is_claimable":false,"name":"Scaffolding of Ambystoma mexicanum chromosomes","description":"Analyses of low coverage sequence data yielded 12.6 million A. mexicanum / A. tigrinum polymorphisms segregating in a meiotic mapping panel. These were distributed across 98,802 scaffolds with individual scaffolds containing between 1 and 12,108 polymorphisms. Segregation patterns were used for meiotic maping and genome scaffoding to achieve chromosome-scale contiguity.","dates":{"publication":"2019-01-14"},"accession":"PRJEB30506","cross_references":{"TAXONOMY":["8307"]}}