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Brown Seaweed Extract (BSE) application influences auxin- and ABA-related gene expression, root development, and sugar yield in Beta vulgaris L.
Bertoldo, G.; Chiodi, C.; Della Lucia, M.C.; Borella, M.; Ravi, S.; Baglieri, A.; Lucenti, P.; Ganasula, B.K.; Mulagala, C.; Squartini, A.; Concheri, G.; Magro, F.; Campagna, G.; Stevanato, P.; Nardi, S. (2023). Brown Seaweed Extract (BSE) application influences auxin- and ABA-related gene expression, root development, and sugar yield in Beta vulgaris L. Plants-Basel 12(4): 843. https://dx.doi.org/10.3390/plants12040843
In: Plants-Basel. MDPI AG: Basel. e-ISSN 2223-7747, more
Peer reviewed article  

Available in  Authors 

Author keywords
    sugar beet; root traits; RNA-seq; RT-qPCR; molecular pathways; sugar yield

Authors  Top 
  • Bertoldo, G.
  • Chiodi, C., more
  • Della Lucia, M.C.
  • Borella, M.
  • Ravi, S.
  • Baglieri, A.
  • Lucenti, P., more
  • Ganasula, B.K.
  • Mulagala, C.
  • Squartini, A.
  • Concheri, G.
  • Magro, F.
  • Campagna, G.
  • Stevanato, P.
  • Nardi, S.

Abstract
    The molecular and phenotypic effects of a brown seaweed extract (BSE) were assessed in sugar beet (Beta vulgaris L.). Transcript levels of BSE-treated and untreated plants were studied by RNA-seq and validated by quantitative real-time PCR analysis (RT-qPCR). Root morphology, sugar yield, and processing quality traits were also analyzed to better elucidate the treatment effects. RNA-seq revealed 1019 differentially expressed genes (DEGs) between the BSE-treated and untreated plants. An adjusted p-value < 0.1 and an absolute value of log2 (fold change) greater than one was used as criteria to select the DEGs. Gene ontology (GO) identified hormone pathways as an enriched biological process. Six DEGs involved in auxin and ABA pathways were validated using RT-qPCR. The phenotypic characterization indicated that BSE treatment led to a significant increase (p < 0.05) in total root length and the length of fine roots of plants grown under hydroponics conditions. The sugar yield of plants grown under field conditions was higher (p < 0.05) in the treated field plots compared with the control treatment, without impacting the processing quality. Our study unveiled the relevant effects of BSE application in regulating auxin- and ABA-related gene expression and critical traits related to sugar beet development and yield.

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