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Effectiveness of the Air Stripping in Two Salmonid Fish, Rainbow Trout Oncorhynchus Mykiss and Brown Trout Salmo Trutta Morpha fario
Published on: September 16, 2018
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.
Background:
Maternal transcripts are accumulated in the oocyte during oogenesis to provide for protein synthesis from oocyte maturation through early embryonic development, when nuclear transcription is silenced. The maternal mRNAs have short poly(A) tails after undergoing post-transcriptional processing necessary for stabilizing them for storage. The transcripts undergo cytoplasmic polyadenylation when they are to be translated. Transcriptome analyses comparing total mRNA and elongated poly(A) mRNA content among eggs of different quality can provide insight into molecular mechanisms affecting egg developmental competence in rainbow trout. The present study used RNA-seq to compare transcriptomes of unfertilized eggs of rainbow trout females yielding different eyeing rates, following rRNA removal and poly(A) retention for construction of the libraries.
Results:
The percentage of embryos to reach the 32-cell stage at 24 h post fertilization was significantly correlated to family eyeing rate, indicating that inviable embryos were developmentally compromised before zygotic genome activation. RNA sequencing identified 2 differentially expressed transcripts (DETs) from total mRNA sequencing comparing females with low-quality (< 5% eyeing), medium-quality (30-50% eyeing), and high-quality (> 80% eyeing) eggs. In contrast, RNA sequencing from poly(A) captured transcripts identified 945 DETs between low- and high-quality eggs, 1012 between low- and medium-quality eggs, and only 2 between medium- and high-quality eggs. The transcripts of mitochondrial genes were enriched with polyadenylated transcript sequencing and they were significantly reduced in low-quality eggs. Similarly, mitochondrial DNA was reduced in low-quality eggs compared with medium- and high-quality eggs. The functional gene analysis classified the 945 DETs between low- and high-quality eggs into 31 functional modules, many of which were related to ribosomal and mitochondrial functions. Other modules involved transcription, translation, cell division, apoptosis, and immune responses.
Conclusions:
Our results indicate that differences in egg quality may be derived from differences in maternal nuclear transcript activation and cytoplasmic polyadenylation before ovulation, as opposed to accumulation and storage of maternal nuclear transcripts during oogenesis. Transcriptome comparisons suggest low-quality eggs suffered from impaired oxidative phosphorylation and translation. The DETs identified in this study provide insight into developmental competence in rainbow trout eggs.
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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