Transcriptome analysis of egg viability in rainbow trout, Oncorhynchus mykiss

Hao Ma1, Kyle Martin2, Doug Dixon2

  • 1USDA/ARS National Center for Cool and Cold Water Aquaculture, Kearneysville, WV, USA.

BMC Genomics
|April 29, 2019
PubMed
Abstract

Insights

Rainbow trout egg quality is linked to maternal transcript polyadenylation, not just storage. Low-quality eggs show impaired mitochondrial function and translation, impacting early development.

Area of Science:

  • Aquaculture
  • Developmental Biology
  • Molecular Genetics

Background:

  • Maternal transcripts are crucial for early embryonic development in species with silenced zygotic transcription.
  • Polyadenylation of maternal mRNAs is essential for their translation during oocyte maturation and early embryogenesis.
  • Understanding egg quality in rainbow trout (Oncorhynchus mykiss) is vital for aquaculture success.

Purpose of the Study:

  • To investigate the molecular differences in rainbow trout eggs of varying quality using RNA sequencing.
  • To compare the transcriptomes of total mRNA and polyadenylated mRNA in unfertilized eggs.
  • To identify key molecular mechanisms underlying developmental competence in rainbow trout eggs.

Main Methods:

  • RNA sequencing (RNA-seq) was employed to analyze unfertilized eggs from rainbow trout females with distinct egg quality (eyeing rates).
  • Libraries were constructed after ribosomal RNA removal and poly(A) retention to focus on polyadenylated transcripts.
  • Differential gene expression analysis was performed comparing low, medium, and high-quality egg groups.

Main Results:

  • RNA-seq of poly(A) transcripts revealed significantly more differentially expressed transcripts (DETs) between quality groups compared to total mRNA.
  • Low-quality eggs showed enrichment of mitochondrial gene transcripts and reduced mitochondrial DNA compared to higher quality eggs.
  • Functional analysis of DETs highlighted impaired ribosomal and mitochondrial functions, alongside issues in transcription, translation, cell division, apoptosis, and immune responses in low-quality eggs.

Conclusions:

  • Egg quality differences in rainbow trout may stem from variations in maternal nuclear transcript activation and cytoplasmic polyadenylation prior to ovulation.
  • Low-quality eggs exhibit compromised oxidative phosphorylation and translation, suggesting a primary role for these processes in developmental competence.
  • The identified DETs offer valuable molecular insights into the determinants of developmental competence in rainbow trout oocytes.

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