2022
DOI: 10.1007/s11240-022-02364-8
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Morphoanatomy and changes in antioxidant defense associated with the natural ventilation system of micropropagated Lippia dulcis plantlets

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Cited by 12 publications
(8 citation statements)
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“…The results obtained for LAR (0.014 cm 2 mg -1 ) suggest that Lippia dulcis plantlets grown in MS had a larger leaf area that was useful for carrying out photosynthesis, which contributed to gains in LDW shown in Table 2. Rocha et al (2022) found that the highest LAR contributed to higher dry weight averages in Lippia dulcis under in vitro conditions. According to Benincasa (2003), the leaves are the center for the production of photosynthates (dry weight), and the rest of the plant depends on the export of this material through the leaves.…”
Section: Growth Analysismentioning
confidence: 86%
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“…The results obtained for LAR (0.014 cm 2 mg -1 ) suggest that Lippia dulcis plantlets grown in MS had a larger leaf area that was useful for carrying out photosynthesis, which contributed to gains in LDW shown in Table 2. Rocha et al (2022) found that the highest LAR contributed to higher dry weight averages in Lippia dulcis under in vitro conditions. According to Benincasa (2003), the leaves are the center for the production of photosynthates (dry weight), and the rest of the plant depends on the export of this material through the leaves.…”
Section: Growth Analysismentioning
confidence: 86%
“…Some studies have already demonstrated that different in vitro conditions can affect the growth of Lippia species. Rocha et al (2022) reported that light intensity and light quality influenced plantlets propagation, providing better conditions for the acclimatization phase. Lazzarini et al (2019a) observed the influence of the explant type and natural ventilation system and concluded that explants with a pair of leaves and a ventilation system with four membranes promoted the greatest growth, leaf area, and carvacrol and thymol contents in L. gracilis.…”
Section: Introductionmentioning
confidence: 99%
“…Lazzarini et al (2019) reported that an alternative system with 4 membranes and the type of explant significantly influenced the growth and volatile fraction of Lippia gracilis. Rocha et al (2022) arvensis and M. viridis ((de Oliveira et al, 2021).…”
Section: In Vitro Growthmentioning
confidence: 99%
“…The use of alternative membrane systems (AMSs) has been shown to be promising in the optimization of the growth of medicinal plants in vitro (de Oliveira et al, 2021;Lazzarini et al, 2019;Rocha et al, 2022;Silva et al, 2016;Silva et al, 2017). The use of AMSs allows the entry of CO2 into the microenvironment and improves photosynthetic capacity while maintaining asepsis and reducing the relative humidity and ethylene concentration in the flasks, enabling the production of Research, Society and Development, v. 11, n. 12, e203111234446, 2022 (CC BY 4.0) | ISSN 2525-3409 | DOI: http://dx.doi.org/10.33448/rsd-v11i12.34446 more vigorous plants with greater survival in the acclimatization period (Saldanha et al, 2012).…”
Section: Introductionmentioning
confidence: 99%
“…Em trabalho realizado por Ribeiro et al (2018) o substrato foi um fator que influenciou diretamente na propagação vegetativa de estacas de ipecacuanha. Rocha et al (2022a) relataram que a intensidade da luz e os espectros de luz resultaram na propagação de plântulas com melhores condições para a fase de aclimatação. Além disso, Rocha et al (2022b) relataram que a propagação in vitro é uma técnica de cultura de tecidos vegetais amplamente utilizada para a produção de plantas medicinais.…”
Section: Introductionunclassified