AI Article Synopsis

  • The study focuses on the genetic mechanisms behind the adaptations of the green mud crab, Scylla paramamosain, highlighting the importance of genomic analysis for understanding their ecological roles and evolutionary development. !* -
  • Researchers achieved a high-quality genome assembly, revealing 33,662 protein-coding genes and significant expansions in developmental pathways, while contractions were noted in metabolic pathways, indicating specialization in their environments. !* -
  • Key discoveries include the identification of gene regulation mechanisms, particularly the role of the Abd-A gene in pleopod development and the importance of the elovl6 gene in producing long-chain polyunsaturated fatty acids, which are crucial for environmental adaptability. !*

Article Abstract

Background: Evolutionary adaptation drives organismal adjustments to environmental pressures, exemplified in the diverse morphological and ecological adaptations seen in Decapoda crustaceans, particularly brachyuran crabs. Crabs thrive in diverse ecosystems, from coral reefs to hydrothermal vents and terrestrial habitats. Despite their ecological importance, the genetic mechanisms underpinning their developmental processes, reproductive strategies, and nutrient acquisition remain poorly understood.

Results: Here, we report a comprehensive genomic analysis of the green mud crab Scylla paramamosain using ultralong sequencing technologies, achieving a high-quality chromosome-level assembly. The refined 1.21 Gb genome, with an impressive contig N50 of 11.45 Mb, offers a valuable genomic resource. The genome exhibits 33,662 protein-coding genes, enriched in various pathways related to development and environmental adaptation. Gene family analysis shows expansion in development-related pathways and contraction in metabolic pathways, indicating niche adaptations. Notably, investigation into Hox gene regulation sheds light on their role in pleopod development, with the Abd-A gene identified as a linchpin. Post-transcriptional regulation involving novel-miR1317 negatively regulates Abd-A levels. Furthermore, the potential role of fru gene in ovarian development and the identification of novel-miR35 as a regulator of Spfru2 add complexity to gene regulatory networks. Comparative functional analysis across Decapoda species reveals neo-functionalization of the elovl6 gene in the synthesis of long-chain polyunsaturated fatty acids (LC-PUFA), suggesting its importance in environmental adaptation.

Conclusions: Our findings shed light on various aspects of crab biology, including genome sequencing, assembly, and annotation, as well as gene family expansion, contraction, and regulatory mechanisms governing crucial developmental processes such as metamorphosis, reproductive strategies, and fatty acid metabolism.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11545969PMC
http://dx.doi.org/10.1186/s12915-024-02054-1DOI Listing

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