Universidade Federal de Lavras, Departamento de Biologia, Lavras, MG, Brasil.
Universidade Federal de São João del-Rei, Departamento de Engenharia de Biossistemas, São João del-Rei, MG, Brasil.
J Photochem Photobiol B. 2020 Nov;212:112040. doi: 10.1016/j.jphotobiol.2020.112040. Epub 2020 Sep 22.
Lippia filifolia Mart. & Schauer belongs to the Verbenaceae family and it is endemic from the rupestrian fields of the Espinhaço mountain range, located in Minas Gerais, Brazil. It is an aromatic species with medicinal potential due to the production of volatile compounds that constitute its essential oil. The objective of this work was to evaluate the effects of light quality using light-emitting diodes (LEDs) over the growth of L. filifolia grown in vitro after 45 days of culture, analyzing its volatile organic compounds (VOCs), biochemical, and biometric traits. This study had four treatments according to the wavelength of LED lamps: (i) white (control), (ii) blue, (iii) red, and (iv) a combination of red + blue (mix). The light quality influenced the growth, metabolism, and VOCs production of plantlets. The specimens showed higher height under red and white treatments and higher biomass accumulation, nodal segments, and shoot numbers under the mix treatment. Higher total carbohydrate content was also observed on the mix treatment, while the white LED provided higher chlorophylls and carotenoids contents. In addition, the lipid peroxidation was more pronounced in mix and white LEDs treatments, and it was also observed significant but not quite changes in VOCs profiles due to light quality. Eucalyptol was the compound found in a higher concentration among the VOCs of L. filifolia grown in vitro at all light quality treatments studied.
细梗香草( Lippia filifolia Mart. & Schauer )属于马鞭草科,是巴西米纳斯吉拉斯州埃斯皮尼亚山岩生植被特有种。它是一种芳香植物,具有药用潜力,因为它能产生构成其精油的挥发性化合物。本工作的目的是评估使用发光二极管(LED)的光质对体外培养 45 天后生长的细梗香草的生长的影响,分析其挥发性有机化合物(VOCs)、生化和生物计量特性。本研究根据 LED 灯的波长有四种处理方式:(i)白光(对照)、(ii)蓝光、(iii)红光和(iv)红 + 蓝组合(混合光)。光质影响组培苗的生长、代谢和 VOCs 的产生。在红光和白光处理下,植株表现出更高的株高,而在混合光处理下,生物量积累、节段数和芽数更高。混合光处理下总碳水化合物含量也更高,而白光 LED 则提供了更高的叶绿素和类胡萝卜素含量。此外,混合光和白光 LED 处理下的脂质过氧化更为明显,而且由于光质的不同,VOCs 谱也发生了显著但不太明显的变化。在所有研究的光质处理下,细梗香草的体外培养物中发现桉树脑是浓度较高的化合物之一。