AI Article Synopsis

  • Blueberries, particularly the southern highbush cultivar 'O'Neal', are gaining popularity due to their health benefits, but they have lower yields and smaller sizes compared to other berries, making their development mechanisms unclear.
  • This study analyzed the changes in cell behavior, hormone levels, and gene expression during the growth of 'O'Neal' blueberries, revealing unique patterns of cell proliferation and hormonal shifts, particularly with auxin and abscisic acid (ABA).
  • The transcriptomic analysis identified numerous genes that are crucial for the blueberry's growth stages, with many linked to auxin's role in cell expansion and development, providing insights for future research in blueberry cultivation.

Article Abstract

Blueberry () is reputed as a rich source of health-promoting phytonutrients, which contributes to its burgeoning consumer demand and production. However, blueberries are much smaller and have lower yields than most domesticated berries, and the inherent regulatory mechanisms remain elusive. In this study, the cytological and physiological changes, as well as comparative transcriptomic analysis throughout flower and fruit development in the southern highbush blueberry cultivar 'O'Neal' were performed. 'O'Neal' hypanthium and fruit exhibited a distinctive cell proliferation pattern, and auxin accumulation was unusual throughout development, while abscisic acid (ABA) levels rapidly increased in association with anthocyanin accumulation, total phenolic reduction and fruit maturation. Transcriptomic data showed that many differentially expressed genes (DEGs) were specifically expressed at each flower bud and fruit developmental stage. Further weighted gene co-expression network analysis (WGCNA) revealed numerous DEGs that correlated with the cell numbers of outer mesocarp and columella, showed two distinctive expression patterns. Most of the DEGs involved in auxin biosynthesis, transportation and signal transduction were upregulated, and this upregulation was accompanied by cell expansion, and flower bud and fruit development. However, individual members of and families might be insensitive to auxin, suggesting that these genes play a distinctive role in the growth and development of blueberry fruits. These results will support future research to better understand the flower and fruit development of southern highbush blueberry.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8886112PMC
http://dx.doi.org/10.3389/fpls.2022.818233DOI Listing

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