4.6 Article

Expanding the Search for Sperm Transmission Elements in the Mitochondrial Genomes of Bivalve Mollusks

期刊

GENES
卷 12, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/genes12081211

关键词

mitochondrial DNA inheritance; sperm transmission elements; bivalves; DUI

资金

  1. Natural Sciences and Engineering Research Council of Canada (NSERC) [217175, 435656]
  2. European Union [713750]
  3. Regional Council of Provence- Alpes-Cote d'Azur
  4. A*MIDEX - Investissements d'Avenir project by the French Government [ANR- 11-IDEX-0001-02]
  5. NSERC CGS-D award
  6. Killam Predoctoral Scholarship
  7. NS Graduate Scholarship
  8. Harrison McCain Visiting Professorship Award at Acadia University from the Harrison McCain Foundation

向作者/读者索取更多资源

Studies have found additional putative sperm transmission element (STE) signatures in the large unassigned regions of various marine clams and freshwater mussels with doubly uniparental inheritance (DUI), indicating potential implications for understanding the origin of DUI in ancestral bivalve mollusks and suggesting future in vitro and in silico studies to further refine our understanding of this unusual mtDNA inheritance system.
Doubly uniparental inheritance (DUI) of mitochondrial DNA (mtDNA) in bivalve mollusks is one of the most notable departures from the paradigm of strict maternal inheritance of mtDNA among metazoans. Recently, work on the Mediterranean mussel Mytilus galloprovincialis suggested that a nucleotide motif in the control region of this species, known as the sperm transmission element (STE), helps protect male-transmitted mitochondria from destruction during spermatogenesis. Subsequent studies found similar, yet divergent, STE motifs in other marine mussels. Here, we extend the in silico search for mtDNA signatures resembling known STEs. This search is carried out for the large unassigned regions of 157 complete mitochondrial genomes from within the Mytiloida, Veneroida, Unionoida, and Ostreoida bivalve orders. Based on a sliding window approach, we present evidence that there are additional putative STE signatures in the large unassigned regions of several marine clams and freshwater mussels with DUI. We discuss the implications of this finding for interpreting the origin of doubly uniparental inheritance in ancestral bivalve mollusks, as well as potential future in vitro and in silico studies that could further refine our understanding of the early evolution of this unusual system of mtDNA inheritance.

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