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- W4248679967 abstract "Abstract Background Environmental factors like, temperature, humidity, light intensity, the supply of water, minerals, and CO 2 influence the growth of a plant and biomass accumulation and production of secondary metabolites. Plant cell culture technologies have been effective tools for both studying and producing plant secondary metabolites under in vitro conditions and for plant improvement. The main objective of the current study was to investigate the biomass production and accumulation of secondary metabolites in Brassica rapa in response to synergism of abiotic factors including salt and colored lights. Methods Brassica rapa sterilized seed were germinated and exposed to different colored lights (white as a control, yellow, blue, green and red) in combination with different concentrations of salt. The length of shoot, root and biomass (fresh and dry) were monitored during the developmental stages. Total phenolics and flavonoids content of the samples were also investigated. Data was analyzed using ANOVA-single factorial. Results Results revealed that plants exposed to the synergism of salt stress and spectral lights have shown negative effects on the seed germination. Shoot length (75 mm) increased, while root length (55 mm) was inhibited in plants exposed to synergism of spectral lights and different concentrations of salt when compared with controlled conditions (48 mm for shoot and 100 mm for root). However, the fresh weight of the plants was increased at lower concentration of salt than controlled. Lowest concentration of salt in synergism with green light showed the maximum response. Total phenolic content increased, while total flavonoid decreases with increasing salt concentration. Maximum total phenolic and flavonoids content were recorded in dark incubation with a high and medium concentration of salt respectively. Conclusion Based on these results, it was concluded that synergism of low salt concentration and colored lights are effective but high concentrations of salt in combination with colored lights inhibited the growth of Brassica rapa ." @default.
- W4248679967 created "2022-05-12" @default.
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- W4248679967 date "2020-05-29" @default.
- W4248679967 modified "2023-09-28" @default.
- W4248679967 title "Interactive Effects of Spectral Lights and Salt Stress on Production of Secondary Metabolites and Growth Behavior in Economically Important Brassica Rapa" @default.
- W4248679967 doi "https://doi.org/10.21203/rs.3.rs-29234/v1" @default.
- W4248679967 hasPublicationYear "2020" @default.
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