Stage-Specific Transcriptomes of the Mussel Mytilus coruscus Reveals the Developmental Program for the Planktonic to Benthic Transition

Author:

Wang Yu-Qing12,Liu Qi3,Zhou Yan12ORCID,Chen Lizhi3,Yang Yue-Ming12,Shi Xue12,Power Deborah M.124ORCID,Li Yi-Feng12

Affiliation:

1. International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai 201306, China

2. Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Ocean University, Shanghai 201306, China

3. Aquatic Technology Promotion Station, Sanmen Rural Bureau, Taizhou 317199, China

4. Comparative Endocrinology and Integrative Biology, Centro de Ciências do Mar (CCMAR), Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal

Abstract

Many marine invertebrate larvae undergo complex morphological and physiological changes during the planktonic—benthic transition (a.k.a. metamorphosis). In this study, transcriptome analysis of different developmental stages was used to uncover the molecular mechanisms underpinning larval settlement and metamorphosis of the mussel, Mytilus coruscus. Analysis of highly upregulated differentially expressed genes (DEGs) at the pediveliger stage revealed enrichment of immune-related genes. The results may indicate that larvae co-opt molecules of the immune system to sense and respond to external chemical cues and neuroendocrine signaling pathways forecast and trigger the response. The upregulation of adhesive protein genes linked to byssal thread secretion indicates the anchoring capacity required for larval settlement arises prior to metamorphosis. The results of gene expression support a role for the immune and neuroendocrine systems in mussel metamorphosis and provide the basis for future studies to disentangle gene networks and the biology of this important lifecycle transformation.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

Reference77 articles.

1. (2022). China Fishery Statistical Yearbook, China Agriculture Press. (In Chinese).

2. Marine biofilms as mediators of colonization by marine macroorganisms: Implications for antifouling and aquaculture;Qian;Mar. Biotechnol.,2007

3. Mussels as a model system for integrative ecomechanics;Carrington;Ann. Rev. Mar. Sci.,2015

4. Thyroid hormone receptor: A new player in epinephrine-induced larval metamorphosis of the hard-shelled mussel;Li;Gen. Comp. Endocrinol.,2020

5. Why and how marine-invertebrate larvae metamorphose so fast;Hadfield;Semin. Cell Dev. Biol.,2000

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