Cultivo in vitro de Clivia miniata (AMARYLLIDACEAE)
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Universidade Estadual de Ponta Grossa
Abstract
The growing concern for reducing environmental damage and the pursuit of greater
sustainability in agricultural production have placed pressure on producers who are
simultaneously seeking new technologies to increase yield and product quality. Plant
biotechnology emerges as a complementary tool to traditional large-scale agriculture, offering
benefits such as massive clonal propagation, obtaining disease-free plants, somaclonal
variation, ploidy management, germplasm conservation, and genetic transformation. Within
this context, Clivia miniata, a perennial herbaceous plant, stands out as a species of interest
due to its ornamental value and pharmacological potential, attributed to the production of
alkaloids like licorine, which has antiviral, antidiabetic, and antimicrobial benefits. However,
the commercial in vitro cultivation of this plant faces challenges such as the time required for
propagation and relatively low multiplication rates. The study aims to overcome these barriers
through the application of tissue culture and biotechnology techniques, focusing on
optimizing callus induction in C. miniata through experiments using different growth
regulators. In Chapter 2, the research examines the effects of sucrose concentration and fruit
maturity on the in vitro germination of Clivia miniata seeds and subsequent callus induction.
Viability testing revealed that up to 70% of the seeds were viable. Five sucrose concentrations
(0, 10, 20, 30, and 40 g.L-1) were tested in the MS culture medium. During in vitro
germination, sucrose concentration affected the germination speed, with lower concentrations
resulting in higher germination for seeds from mature fruits. Callus induction from in vitro
germinated seedlings yielded variable results, with high concentrations of growth regulators
leading to significant explant mortality. However, specific combinations of growth regulators
showed high survival rates and callus induction. The results indicate that the optimal sucrose
concentration for in vitro germination is 5.1 g.L-1, and the appropriate choice of growth
regulators, especially the cytokinin BAP, is crucial for effective callus induction. The third
chapter of the thesis consisted of two experiments. In Experiment I, clivia seeds were tested
for viability, and after disinfection, embryos were transferred to glass tubes containing MS
culture medium and different growth regulators. The experiment lasted 120 days under
specific temperature and light absence conditions. Explants were visually evaluated every 30
days, and callus regeneration was performed in medium supplemented with kinetin and
naphthaleneacetic acid. Histological analysis of the callus revealed the absence of somatic
embryogenesis. In Experiment II, callus was cultivated in temporary immersion bioreactors
with different combinations of growth regulators, and the treatment with 4 BAP + 4 NAA
stood out for higher fresh mass after 60 days. Callus induction analysis showed notable
results, especially in the combination 4 BAP + 4 2,4-D, with a constant increase in the
percentage of induced callus and explant survival above 75%. Treatments containing
naphthaleneacetic acid resulted in higher fresh mass production. Cytokinin BAP is identified
as essential for callogenesis, regardless of the auxin used. In summary, the study provides
valuable insights to optimize callus induction conditions in Clivia miniata, contributing not
only to the advancement of in vitro cultivation of this species but also to the exploration of its
pharmaceutical potential.
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REIS, Camila Audrey dos. Cultivo in vitro de Clivia miniata (AMARYLLIDACEAE). 2025. Tese (Doutorado em Agronomia) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2025.
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