Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Growth, Carbon Assimilation and Quality of Kesum (Persicaria minor) as Exposed to Zinc Oxide Nanoparticles

View through CrossRef
Aims: This study was conducted to investigate the effect of zinc oxide nanoparticles towards the Persicaria minor that can be used as a guidance for further toxicity investigation of ZnO-NPs. Study Design: A Completely Randomized Block Design (RCBD) was used with three replication. Each unit was consisted with eight plants and the total of 96 plants were used in this study. Place and Duration of Study: This study was conducted in plot 1, Vegetables Field plot for Teaching and Research, Taman Pertanian Universiti, Universiti Putra Malaysia (UPM) Selangor, Malaysia, from May 2018 until August 2018. Methodology: Persicaria minor were exposed to four different concentration of zinc oxide nanoparticles (ZnO-NPs) which were (50,100 and 150 mg/L) and 0 mg/L as a control. The ZnO-NPs was dissolved in distilled water before being applied to plants. 40 mL of ZnO-NPs solution was applied to each plant. The growth, carbon assimilation and also secondary metabolites were measured in this experiment. Results: The results showed that the treatment of zinc oxide nanoparticles enhanced growth of the Persicaria minor as the plant treated with zinc oxide nanoparticles had higher plant height and total biomass when compared to control treatment. However, the analysis revealed that the treatment of zinc oxide nanoparticles highly and significantly influenced the carbon assimilation and quality of this plant as the treated plants showed reduction in chlorophyll content, photosynthesis rate, stomatal conductance and transpiration rate but increased in production of secondary metabolites. The increased in production of plant secondary metabolites may be attributed by the plant protection mechanism due to metabolic stress caused by high concentration of zinc oxide nanoparticles. Conclusion: This research will progressively help in contributing some reliable and valid data on the effect of zinc oxide nanoparticles (ZnO-NPs), towards the Persicaria minor that can be used as guidance for further experimental investigation regarding this field.
Title: Growth, Carbon Assimilation and Quality of Kesum (Persicaria minor) as Exposed to Zinc Oxide Nanoparticles
Description:
Aims: This study was conducted to investigate the effect of zinc oxide nanoparticles towards the Persicaria minor that can be used as a guidance for further toxicity investigation of ZnO-NPs.
Study Design: A Completely Randomized Block Design (RCBD) was used with three replication.
Each unit was consisted with eight plants and the total of 96 plants were used in this study.
Place and Duration of Study: This study was conducted in plot 1, Vegetables Field plot for Teaching and Research, Taman Pertanian Universiti, Universiti Putra Malaysia (UPM) Selangor, Malaysia, from May 2018 until August 2018.
Methodology: Persicaria minor were exposed to four different concentration of zinc oxide nanoparticles (ZnO-NPs) which were (50,100 and 150 mg/L) and 0 mg/L as a control.
The ZnO-NPs was dissolved in distilled water before being applied to plants.
40 mL of ZnO-NPs solution was applied to each plant.
The growth, carbon assimilation and also secondary metabolites were measured in this experiment.
Results: The results showed that the treatment of zinc oxide nanoparticles enhanced growth of the Persicaria minor as the plant treated with zinc oxide nanoparticles had higher plant height and total biomass when compared to control treatment.
However, the analysis revealed that the treatment of zinc oxide nanoparticles highly and significantly influenced the carbon assimilation and quality of this plant as the treated plants showed reduction in chlorophyll content, photosynthesis rate, stomatal conductance and transpiration rate but increased in production of secondary metabolites.
The increased in production of plant secondary metabolites may be attributed by the plant protection mechanism due to metabolic stress caused by high concentration of zinc oxide nanoparticles.
Conclusion: This research will progressively help in contributing some reliable and valid data on the effect of zinc oxide nanoparticles (ZnO-NPs), towards the Persicaria minor that can be used as guidance for further experimental investigation regarding this field.

Related Results

Penetapan Kadar Saponin Ekstrak Daun Kesum (<i>Polygonum minus Huds</i>)
Penetapan Kadar Saponin Ekstrak Daun Kesum (<i>Polygonum minus Huds</i>)
Daun Kesum (Polygonum minus) merupakan tanaman khas Kalimantan Barat yang memiliki aroma yang tajam dan khas. Kesum merupakan tanaman merambat yang tumbuh di semak-semak kecil, mem...
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
Calculating the zinc content per 100 kcal, 100 g or 100 mL, or the reference amount customarily consumed (RACC) of food shows the zinc content of some foods inappropriately. So, ma...
Interaction studies of nanomaterials with plasma protein using experimental and computational methods
Interaction studies of nanomaterials with plasma protein using experimental and computational methods
Nanomaterials have received considerable attention due to their unique physicochemical properties and various applications. The present study attempts to fill in the knowledge gaps...
UJI FITOKIMIA PADA DAUN KESUM (Polygonum minus Huds.) DARI KALIMANTAN BARAT
UJI FITOKIMIA PADA DAUN KESUM (Polygonum minus Huds.) DARI KALIMANTAN BARAT
esum leaves are one of the plants that are widely available in West Kalimantan and are used by the community as vegetables or cooking spices. Research on the chemical content of ke...
COMPARISON OF ANTIMICROBIAL EFFECT OF VARIOUS OILS MIXED WITH ZINC OXIDE – AN EX VIVO, IN VITRO STUDY
COMPARISON OF ANTIMICROBIAL EFFECT OF VARIOUS OILS MIXED WITH ZINC OXIDE – AN EX VIVO, IN VITRO STUDY
Background. Success of endodontic treatment depends on complete elimination and various factors such as the antimicrobial activity of the obturating materials. Therefore a study wa...

Back to Top