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Jasmonate-Dependent Response of the Flower Abscission Zone Cells to Drought in Yellow Lupine. | LitMetric

AI Article Synopsis

  • Lipid membranes in plant cells play a crucial role in sensing environmental stresses, particularly drought, by producing signaling molecules called oxylipins.
  • The study focuses on yellow lupine, a drought-sensitive crop, to investigate how lipid enzymes and plant hormones contribute to flower detachment during water scarcity.
  • Findings indicate that drought leads to lipid peroxidation, increasing the levels of key enzymes and jasmonic acid in the flower abscission zone, highlighting the link between drought stress and lipid-derived signaling pathways.

Article Abstract

Lipid membranes, as primary places of the perception of environmental stimuli, are a source of various oxygenated polyunsaturated fatty acids-oxylipins-functioning as modulators of many signal transduction pathways, e.g., phytohormonal. Among exogenous factors acting on plant cells, special attention is given to drought, especially in highly sensitive crop species, such as yellow lupine. Here, we used this species to analyze the contribution of lipid-related enzymes and lipid-derived plant hormones in drought-evoked events taking place in a specialized group of cells-the flower abscission zone (AZ)-which is responsible for organ detachment from the plant body. We revealed that water deficits in the soil causes lipid peroxidation in these cells and the upregulation of phospholipase D, lipoxygenase, and, concomitantly, jasmonic acid (JA) strongly accumulates in AZ tissue. Furthermore, we followed key steps in JA conjugation and signaling under stressful conditions by monitoring the level and tissue localization of enzyme providing JA derivatives (JASMONATE RESISTANT1) and the JA receptor (CORONATINE INSENSITIVE1). Collectively, drought-triggered AZ activation during the process of flower abscission is closely associated with the lipid modifications, leading to the formation of JA, its conjugation, and induction of signaling pathways.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877524PMC
http://dx.doi.org/10.3390/plants11040527DOI Listing

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