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Review

The microRNA Pathway of Macroalgae: Its Similarities and Differences to the Plant and Animal microRNA Pathways

by
Jessica Webb
1,2,
Min Zhao
1,2,
Alexandra H. Campbell
1,3,
Nicholas A. Paul
1,2,
Scott F. Cummins
1,2 and
Andrew L. Eamens
1,3,*
1
Seaweed Research Group, University of the Sunshine Coast, Maroochydore, QLD 4558, Australia
2
School of Science, Technology and Engineering, University of the Sunshine Coast, Maroochydore, QLD 4558, Australia
3
School of Health, University of the Sunshine Coast, Maroochydore, QLD 4558, Australia
*
Author to whom correspondence should be addressed.
Genes 2025, 16(4), 442; https://doi.org/10.3390/genes16040442
Submission received: 16 March 2025 / Revised: 31 March 2025 / Accepted: 5 April 2025 / Published: 9 April 2025
(This article belongs to the Section Molecular Genetics and Genomics)

Abstract

In plants and animals, the microRNA (miRNA) class of small regulatory RNA plays an essential role in controlling gene expression in all aspects of development, to respond to environmental stress, or to defend against pathogen attack. This well-established master regulatory role for miRNAs has led to each protein-mediated step of both the plant and animal miRNA pathways being thoroughly characterized. Furthermore, this degree of characterization has led to the development of a suite of miRNA-based technologies for gene expression manipulation for fundamental research or for use in industrial or medical applications. In direct contrast, molecular research on the miRNA pathway of macroalgae, specifically seaweeds (marine macroalgae), remains in its infancy. However, the molecular research conducted to date on the seaweed miRNA pathway has shown that it shares functional features specific to either the plant or animal miRNA pathway. In addition, of the small number of seaweed species where miRNA data is available, little sequence conservation of individual miRNAs exists. These preliminary findings show the pressing need for substantive research into the seaweed miRNA pathway to advance our current understanding of this essential gene expression regulatory process. Such research will also generate the knowledge required to develop novel miRNA-based technologies for use in seaweeds. In this review, we compare and contrast the seaweed miRNA pathway to those well-characterized pathways of plants and animals and outline the low degree of miRNA sequence conservation across the polyphyletic group known as the seaweeds.
Keywords: microRNA (miRNA); miRNA evolution; miRNA conservation; miRNA pathway; plant miRNA pathway; animal miRNA pathway; seaweed miRNA pathway microRNA (miRNA); miRNA evolution; miRNA conservation; miRNA pathway; plant miRNA pathway; animal miRNA pathway; seaweed miRNA pathway

Share and Cite

MDPI and ACS Style

Webb, J.; Zhao, M.; Campbell, A.H.; Paul, N.A.; Cummins, S.F.; Eamens, A.L. The microRNA Pathway of Macroalgae: Its Similarities and Differences to the Plant and Animal microRNA Pathways. Genes 2025, 16, 442. https://doi.org/10.3390/genes16040442

AMA Style

Webb J, Zhao M, Campbell AH, Paul NA, Cummins SF, Eamens AL. The microRNA Pathway of Macroalgae: Its Similarities and Differences to the Plant and Animal microRNA Pathways. Genes. 2025; 16(4):442. https://doi.org/10.3390/genes16040442

Chicago/Turabian Style

Webb, Jessica, Min Zhao, Alexandra H. Campbell, Nicholas A. Paul, Scott F. Cummins, and Andrew L. Eamens. 2025. "The microRNA Pathway of Macroalgae: Its Similarities and Differences to the Plant and Animal microRNA Pathways" Genes 16, no. 4: 442. https://doi.org/10.3390/genes16040442

APA Style

Webb, J., Zhao, M., Campbell, A. H., Paul, N. A., Cummins, S. F., & Eamens, A. L. (2025). The microRNA Pathway of Macroalgae: Its Similarities and Differences to the Plant and Animal microRNA Pathways. Genes, 16(4), 442. https://doi.org/10.3390/genes16040442

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