Chromosome-Level Assembly of Artemia franciscana Sheds Light on Sex Chromosome Differentiation

Since the commercialization of brine shrimp (genus Artemia) in the 1950s, this lineage, and in particular the model species Artemia franciscana, has been the subject of extensive research. However, our understanding of the genetic mechanisms underlying various aspects of their reproductive biology,...

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Published inGenome biology and evolution Vol. 16; no. 1
Main Authors Bett, Vincent Kiplangat, Macon, Ariana, Vicoso, Beatriz, Elkrewi, Marwan
Format Journal Article
LanguageEnglish
Published England Oxford University Press 05.01.2024
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Summary:Since the commercialization of brine shrimp (genus Artemia) in the 1950s, this lineage, and in particular the model species Artemia franciscana, has been the subject of extensive research. However, our understanding of the genetic mechanisms underlying various aspects of their reproductive biology, including sex determination, is still lacking. This is partly due to the scarcity of genomic resources for Artemia species and crustaceans in general. Here, we present a chromosome-level genome assembly of A. franciscana (Kellogg 1906), from the Great Salt Lake, United States. The genome is 1 GB, and the majority of the genome (81%) is scaffolded into 21 linkage groups using a previously published high-density linkage map. We performed coverage and FST analyses using male and female genomic and transcriptomic reads to quantify the extent of differentiation between the Z and W chromosomes. Additionally, we quantified the expression levels in male and female heads and gonads and found further evidence for dosage compensation in this species.
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Vincent Kiplangat Bett and Marwan Elkrewi co-contributors.
ISSN:1759-6653
1759-6653
DOI:10.1093/gbe/evae006