Abstract

To investigate the molecular mechanism underlying fruit development and color change, comparative transcriptome analysis was employed to generate transcriptome profiles of two typical wild varieties of Fragaria pentaphylla at three fruit developmental stages (green fruit stage, turning stage, and ripe fruit stage). We identified 25,699 long noncoding RNAs (lncRNAs) derived from 25,107 loci in the F. pentaphylla fruit transcriptome, which showed distinct stage- and genotype-specific expression patterns. Time course analysis detected a large number of differentially expressed protein-coding genes and lncRNAs associated with fruit development and ripening in both of the F. pentaphylla varieties. The target genes downregulated in the late stages were enriched in terms of photosynthesis and cell wall organization or biogenesis, suggesting that lncRNAs may act as negative regulators to suppress photosynthesis and cell wall organization or biogenesis during fruit development and ripening of F. pentaphylla. Pairwise comparisons of two varieties at three developmental stages identified 365 differentially expressed lncRNAs in total. Functional annotation of target genes suggested that lncRNAs in F. pentaphylla may play roles in fruit color formation by regulating the expression of structural genes or regulatory factors. Construction of the regulatory network further revealed that the low expression of Fra a and CHS may be the main cause of colorless fruit in F. pentaphylla.

Highlights

  • Strawberry (Fragaria) is considered one of the most economically important soft fruits in the world

  • FPR fruit showed a marked change in color from the turning stage to the ripe stage, while anthocyanins were abundant in the ripe stage

  • 66,323 transcripts derived from 33,443 genes were obtained, of which 38,381 novel transcripts were detected on the basis of mapped reads

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Summary

Introduction

Strawberry (Fragaria) is considered one of the most economically important soft fruits in the world. To investigate the underlying molecular changes during fruit development and ripening in F. pentaphylla, we used strand-specific sequencing to explore the expression profiles of proteincoding genes and lncRNAs for each variety at three developmental stages.

Results
Conclusion
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