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◆ Comparative biochemistry and physiology. Part D, Genomics & proteomics2026-09-19

Massive expansion of Hsp70 family genes in the mussel Mytilus coruscus reveals their adaptability to dynamic environments.

Yanfei Cao, Wenjing Zhang, Jiameng Bi, Xiaxia Wei, Xinwei Xiong, Xiao Liu

原始摘要(英文原文)· Original abstract
Heat shock protein 70 (Hsp70) is a highly conserved molecular chaperone that plays crucial roles in combating both biotic and abiotic stressors. Herein, a total of 97 Hsp70 genes distributed across nine sub-families were identified in Mytilus coruscus. Noticeable gene expansion was detected in three subfamilies, including 77 genes in Hspa12, 4 in Hspa5, and 10 in Hsp70B2. In total, 94 Mco-Hsp70 genes were unequally mapped across 12 chromosomes, with the largest gene number present on chromosome 03 (37 genes, 38.14%). Subcellular localization analysis indicated that 74 (76.3%) Hsp70s were localized in the cytoplasm, with the remaining members distributed across 8 subcellular organelles. Tandem duplication was identified as an essential driver of the expansion of Hspa5, Hsp70B2, and Hspa12 subfamily genes. Transcriptome analysis revealed that Mco-Hsp70 genes exhibited specific expression patterns across different tissues, developmental stages, and stress conditions. Notably, different Mco-Hsp70 subfamilies exhibited divergent responses to identical stimuli, and the expanded paralogs of Mco-Hspa12, Mco-Hsp70B2, and Mco-Hspa5 genes exhibited differential expression under different stress conditions. This study comprehensively explored the Mco-HSP70 gene family and elucidated transcriptional differentiation under diverse stress, enhancing our understanding of adaptation in mussels in dynamic environments.
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Massive expansion of Hsp70 family genes in the mussel Mytilus coruscus reveals their adaptability to dynamic environments. — 科研速览 Science Skim