Flavonols are small (C15) plant-specific molecules that are required for petunia and maize pollen to germinate. They exist in two chemical forms: the aglycone or glycosyl conjugates. Flavonol-deficient pollen is biochemically complemented by flavonol aglycones but not by the glycosylated forms that accumulate in wild type (WT) pollen. Coincident with the biochemical induction of germination, the added flavonol aglycone is rapidly converted to a galactoside and then to a glucosyl galactoside (diglycoside) that is identical to the compound present in WT pollen. A flavonol 3-O-galactosyltransferase (F3GalTase) activity has been identified that controls the formation of glycosylated flavonols in pollen. Importantly, this enzyme also catalyzes the reverse reaction, i.e. the production of the flavonol aglycone from the galactoside and UDP (Fig. 1). F3GalTase/RevGalTase therefore has the potential to control the level of the bioactive flavonol species and as a result, pollen germination.
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http://dx.doi.org/10.1007/978-1-4615-5335-9_3 | DOI Listing |
Protoplasma
March 2025
Key Laboratory of Botany in Heilongjiang Province, College of Life Sciences and Technology, Harbin Normal University, Harbin, 150025, China.
The genus Senecio, which is a basal angiosperm group, holds significant importance for evolutionary and phylogenetic research. It is notable for possessing male meiotic characteristics that are rarely observed in most angiosperms. However, the current understanding about male meiosis in Senecio remains incomplete.
View Article and Find Full Text PDFaBIOTECH
March 2025
Tasmanian Institute of Agriculture, University of Tasmania, Prospect, TAS 7250 Australia.
Unlabelled: Viable pollen is crucial for fertilization, but pollen is generally highly susceptible to heat stress. A quick, reliable method for testing the heat-stress tolerance of pollen is needed to improve the heat-stress tolerance in plants, but current methods require considerable space and labor. In addition, many such methods only test tolerance to a single constant temperature, making it time-consuming to screen heat tolerance over a wide temperature range and to examine the dynamics of pollen viability at different temperatures.
View Article and Find Full Text PDFCommun Biol
March 2025
Seeds Research, Syngenta Crop Protection, Durham, NC, USA.
The inherent short lifespan of Zea mays (maize, corn) pollen hinders crop improvement and challenges the hybrid seed production required to produce food, fuel, and feed. Decades of scientific effort on maize pollen storage technology have been unable to deliver a widely accessible protocol that works for liters of pollen at a hybrid seed production scale. Here we show how suppressing the pollen cellular respiration rate through refrigeration and optimizing gas exchange within the storage environment are the critical combination of factors for maintaining pollen viability in storage.
View Article and Find Full Text PDFAoB Plants
February 2025
Georgina Mace Centre for the Living Planet, Department of Life Sciences, Imperial College London, Silwood Park campus, Buckhurst Road, Ascot, Berkshire, SL5 7PY, UK.
Pollination and subsequent fertilization in most angiosperms are precursors of seed and fruit development. Thus, understanding the developmental processes can improve the management of plant reproductive success and food security. Indeed, the window between ovule fertilization and seed development is crucial for the accumulation of metabolites which determines ultimate seed quality and yield.
View Article and Find Full Text PDFPlant Physiol Biochem
February 2025
Shaanxi Engineering Research Center for Vegetables/College of Horticulture, Northwest A&F University, Yangling, 712100, PR China. Electronic address:
Sucrose is a vital product of photosynthesis and plays important roles in plant growth and development. Sucrose synthase (SUS) is one of the major contributors in sucrose utilization. However, its roles in plant development are still not well understood.
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