Related Experiment Video
Updated: Mar 2, 2026

Manipulation of Ploidy in Caenorhabditis elegans
Published on: March 15, 2018
Reproductive Strategy of the Polyploid Species Varronia curassavica Jacq. in Restinga Environment
Marcia Patricia Hoeltgebaum1,2, Diana Marcela Morales Londoño1, Ana Paula Lando1
1Universidade Federal de Santa Catarina, Centro de Ciências Agrárias, Departamento de Fitotecnia, Rodovia Admar Gonzaga, 1346, Itacorubi, Florianópolis/SC CEP 88.034-001, Brazil
Abstract:
This study aimed to elucidate the breeding strategies of Varronia curassavica, an important medicinal species associated with Brazilian restinga. This was accomplished by combining phenological and genetic data. Every 2 weeks over a period of 2 years, we measured flowering and fruiting phenology to evaluate the activity and intensity of phenophases (n = 60). We evaluated the mating system, pollen ovule ratio and genotypes from progeny and mother plants using 8 nuclear microsatellite loci. We observed flowering and fruiting of V. curassavica at low intensity throughout the entire year, but with 2 distinct peaks, one of which was seasonal, corresponding to the period of gradual increase of temperature and photoperiod. Overlapping of flowering and fruiting strategies favors gene flow among different groups of individuals and between populations by attraction of fauna throughout the year. Analysis of the mating system indicates that V. curassavica is a typical outcrossed species (t^ = 0.98; pollen/ovule ratio = 7087.50). Combining phenology with genetic studies improved our understanding of the reproductive strategies of this species. The typical outcrossing system of V. curassavica reflects the existence of functional self-incompatibility mechanisms still unaffected by changes in genetic balance by polyploidy.
More Related Videos
09:31Author Spotlight: Advancing Coral Research by Exploring Climate Change Resistance, Ex Situ Aquaculture, and Reproduction Strategies
Published on: June 23, 2023
07:23Inducing Polyp Bail-out in Coral Colonies to Obtain Individualized Micropropagates for Laboratory Experimental Use
Published on: April 28, 2022
Related Concept Videos
Asexual Reproduction
Energy Budgets
Seedless Vascular Plants
Formation of Species
Multipotency and Niche of Bulge Stem Cell
Diversity of Protists IV