Comparative Transcriptomic and Expression Profiles Between the Foot Muscle and Mantle Tissues in the Giant Triton Snail .

Front Physiol

CAS Key Laboratory of Tropical Marine Bio-Resources and Ecology, Guangdong Provincial Key Laboratory of Applied Marine Biology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, China.

Published: February 2021

AI Article Synopsis

  • The giant triton snail is an endangered species crucial for coral reef ecosystems in the Indo-West Pacific, but its genomic information is lacking.
  • Researchers conducted transcriptome sequencing on its foot muscle and mantle, uncovering 7,994 differentially expressed genes (DEGs) that reveal important biomineralization processes.
  • The findings identified key functional categories in the Gene Ontology and KEGG pathways, highlighting genes related to sulfotransferase activity and calcium ion binding, with potential implications for understanding reproduction and other molecular mechanisms.

Article Abstract

The giant triton snail (, an endangered gastropod species of ecological and economic importance, is widely distributed in coral reef ecosystems of the Indo-West Pacific region and the tropical waters of the South China Sea. Limited research on molecular mechanisms can be conducted because the complete genomic information on this species is unavailable. Hence, we performed transcriptome sequencing of the foot muscle and mantle using the Illumina HiSeq sequencing platform. In 109,722 unigenes, we detected 7,994 (3,196 up-regulated and 4,798 down-regulated) differentially expressed genes (DEGs) from the foot muscle and mantle transcriptomes. These DEGs will provide valuable resources to improve the understanding of molecular mechanisms involved in biomineralization of In the Gene Ontology (GO) database, DEGs were clustered into three main categories (biological processes, molecular functions, and cellular components) and were involved in 50 functional subcategories. The top 20 GO terms in the molecular function category included sulfotransferase activity, transferring sulfur-containing groups, and calcium ion binding, which are terms considered to be related to biomineralization. In KEGG classifications, transcriptomic DEGs were mainly enriched in glycosaminoglycan biosynthesis-chondroitin sulfate/dermatan sulfate, and sulfur metabolism pathway, which may be related to biomineralization. The results of qPCR showed that three of the eight genes examined were significantly up-regulated in the mantle. The phylogenetic tree of BMP1 suggested a significant divergence between homologous genes in . Our results improve the understanding of biomineralization in and provide fundamental transcriptome information to study other molecular mechanisms such as reproduction.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7959727PMC
http://dx.doi.org/10.3389/fphys.2021.632518DOI Listing

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