Transcriptome analysis of the bivalve Placuna placenta mantle reveals potential biomineralization-related genes
The shells of window pane oyster Placuna placenta are very thin and exhibit excellent optical transparency and mechanical robustness. However, little is known about the biomineralization-related proteins of the shells of P. placenta . In this work, we report the comprehensive transcriptome of the ma...
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Veröffentlicht in: | Scientific reports 2022-03, Vol.12 (1), p.4743-4743, Article 4743 |
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Zusammenfassung: | The shells of window pane oyster
Placuna placenta
are very thin and exhibit excellent optical transparency and mechanical robustness. However, little is known about the biomineralization-related proteins of the shells of
P. placenta
. In this work, we report the comprehensive transcriptome of the mantle tissue of
P. placenta
for the first time
.
The unigenes of the mantle tissue of
P. placenta
were annotated by using the public databases such as nr, GO, KOG, KEGG, and Pfam. 24,343 unigenes were annotated according to Pfam database, accounting for 21.48% of the total unigenes. We find that half of the annotated unigenes of the mantle tissue of
P. placenta
are consistent to the annotated unigenes from pacific oyster
Crassostrea gigas
according to nr database. The unigene sequence analysis from the mantle tissue of
P. placenta
indicates that 465,392 potential single nucleotide polymorphisms (SNPs) and 62,103 potential indel markers were identified from 60,371 unigenes. 178 unigenes of the mantle tissue of
P. placenta
are found to be homologous to those reported proteins related to the biomineralization process of molluscan shells, while 18 of them are highly expressed unigenes in the mantle tissue. It is proposed that four unigenes with the highest expression levels in the mantle tissue are very often related to the biomineralization process, while another three unigenes are potentially related to the biomineralization process according to the Quantitative Real-Time Polymerase Chain Reaction (qRT-PCR) analysis. In summary, the transcriptome analysis of the mantle tissue of
P. Placenta
shows the potential biomineralization-related proteins and this work may shed light for the shell formation mechanism of bivalves. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-022-08610-5 |