4.8 Article

The hard clam genome reveals massive expansion and diversification of inhibitors of apoptosis in Bivalvia

期刊

BMC BIOLOGY
卷 19, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12915-020-00943-9

关键词

IAP gene family; Molecular evolution; Mollusca; Gene duplication; Divergence

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资金

  1. National Key R&D Program of China [2019YFD0900800]
  2. earmarked fund for the Modern Agro-industry Technology Research System [CARS-49]
  3. Major Applied Technology Innovation Project in Agriculture of Shandong Province [SF1405303301]
  4. Supporting Program of Science and Technology Service Network Initiative in Fujian Province [2017 T3014]
  5. Industry Leading Talents Project of Taishan Scholars
  6. Double Hundred Blue Industry Leader Team of Yantai

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The study reveals a significant expansion and diversification of the IAP gene family in hard clams, indicating its crucial role in evolutionary success in coping with environmental stresses.
Background Inhibitors of apoptosis (IAPs) are critical regulators of programmed cell death that are essential for development, oncogenesis, and immune and stress responses. However, available knowledge regarding IAP is largely biased toward humans and model species, while the distribution, function, and evolutionary novelties of this gene family remain poorly understood in many taxa, including Mollusca, the second most speciose phylum of Metazoa. Results Here, we present a chromosome-level genome assembly of an economically significant bivalve, the hard clam Mercenaria mercenaria, which reveals an unexpected and dramatic expansion of the IAP gene family to 159 members, the largest IAP gene repertoire observed in any metazoan. Comparative genome analysis reveals that this massive expansion is characteristic of bivalves more generally. Reconstruction of the evolutionary history of molluscan IAP genes indicates that most originated in early metazoans and greatly expanded in Bivalvia through both lineage-specific tandem duplication and retroposition, with 37.1% of hard clam IAPs located on a single chromosome. The expanded IAPs have been subjected to frequent domain shuffling, which has in turn shaped their architectural diversity. Further, we observed that extant IAPs exhibit dynamic and orchestrated expression patterns among tissues and in response to different environmental stressors. Conclusions Our results suggest that sophisticated regulation of apoptosis enabled by the massive expansion and diversification of IAPs has been crucial for the evolutionary success of hard clam and other molluscan lineages, allowing them to cope with local environmental stresses. This study broadens our understanding of IAP proteins and expression diversity and provides novel resources for studying molluscan biology and IAP function and evolution.

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