AI Article Synopsis

  • Sirtuins (SRTs) are deacetylases involved in regulating proteins, and the study focuses on FaSRT1-2 in strawberries, which plays a significant role in fruit ripening and plant growth.
  • Transiently overexpressing FaSRT1-2 led to quicker fruit ripening, higher levels of sugars and anthocyanins, and increased growth, but made plants more vulnerable to heat stress and disease.
  • The research also showed that FaSRT1-2 affects hormone levels and gene expression, indicating its dual role in promoting growth while undermining stress resistance in strawberry plants.

Article Abstract

Sirtuins (SRTs) are a group of nicotinamide adenine dinucleotide (NAD)-dependent deacetylase that target both histone and nonhistone proteins. The biological function of SRT in horticultural plants has been rarely studied. In this study, FaSRT1-2 was identified as a key member of the 8 FaSRTs encoded in cultivated strawberry genome. Transient overexpression of FaSRT1-2 in strawberry fruit accelerated ripening, increased the content of anthocyanins and sugars, enhanced ripening-related gene expression. Moreover, stable transformation of FaSRT1-2 in strawberry plants resulted in enhanced vegetative growth, increased sensitivity to heat stress and increased susceptibility to Botrytis cinerea infection. Interestingly, knocking out the homologous gene in woodland strawberry had the opposite effects. Additionally, we found the content of stress-related hormone abscisic acid (ABA) was decreased, while the growth-related gibberellin (GA) concentration was increased in FaSRT1-2 overexpression lines. Gene expression analysis revealed induction of heat shock proteins, transcription factors, stress-related and antioxidant genes in the FaSRT1-2-overexpressed plants while knocked-out of the gene had the opposite impact. In conclusion, our findings demonstrated that FaSRT1-2 could positively promote strawberry plant vegetative growth and fruit ripening by affecting ABA and GA pathways. However, it negatively regulates the resistance to heat stress and B. cinerea infection by influencing the related gene expression.

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Source
http://dx.doi.org/10.1111/pce.14885DOI Listing

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