Related Experiment Video
Updated: May 6, 2026

Embryo Rescue Protocol for Interspecific Hybridization in Squash
Published on: September 12, 2022
Viability of Cururbita pepo pollen: biophysical and structural data
C Digonnet-Kerhoas1, G Gay, J C Duplan
1Laboratoire Reconnaissance Cellulaire et Amelioration des Plantes, LA INRA 879, Université Claude Bernard Lyon I, Bât. 741, 43 Boulevard du 11 Novembre 1918, F-69622, Villeurbanne Cédex, France.
Abstract:
During ageing of the short-lived pollen grains of Cucurbita pepo L., water loss was examined in relation to viability using biophysical ((1)H-nuclear magnetic resonance, NMR) and cytological methods (fluorochromatic reaction test, freezefracture and scanning electron microscopy). A semi-logarithmic representation of the pollen weight loss demonstrated the complexity of the dehydration process. A the study of proton loss using (1)H-NMR indicated that two major releases water of had taken place, each with different flux rates. Pulse (1)H-NMR experiments showed the occurrene of non-exponential signal decay as a function of time, indicating the existence of different fractions of water in a pollen grain sample. These fractions leave the pollen grain at different times during pollen dehydration, and one of them (that of the so-called "vital water") can be related to pollen viability. The quantity of protons giving a signal during pulse (1)H-NMR experiments was very low when the pollen grains were judged to be dead according to the fluorochromatic test. Freeze-fracture replicas of these dead pollen grains (less than 25% water content) showed that the plasma membrane had become detached from the intine surface; this ultrastructural feature might therefore be involved in the loss of pollen viability.
More Related Videos
07:12Determination of Self-Incompatibility and Inter-Incompatibility Relationships in Citrus Using Manual Pollination, Microscopy, and S-Genotype Analyses
Published on: June 30, 2023
07:07Author Spotlight: A High-Resolution, Single-Grain, In Vivo Pollen Hydration Bioassay for Arabidopsis thaliana
Published on: June 30, 2023
Related Concept Videos
Seed Structure and Early Development of the Sporophyte
Pollination and Flower Structure
The Calvin Benson Cycle
Introduction to Plant Diversity
Fruit Development, Structure, and Function