Open Journal of Forestry

Volume 6, Issue 5 (October 2016)

ISSN Print: 2163-0429   ISSN Online: 2163-0437

Google-based Impact Factor: 0.90  Citations  

Effect of Light Intensity on Leaf Photosynthetic Characteristics and Accumulation of Flavonoids in Lithocarpus litseifolius (Hance) Chun. (Fagaceae)

HTML  XML Download Download as PDF (Size: 1942KB)  PP. 445-459  
DOI: 10.4236/ojf.2016.65034    1,983 Downloads   5,947 Views  Citations
Author(s)
Aimin Li1,2,3, Shenghua Li1,2,3, Xianjin Wu1,2,3*, Jian Zhang1,2,3, Anna He1,2,3, Guang Zhao1, Xu Yang1

ABSTRACT

The active compounds in herb drugs are mainly secondary metabolites, which are greatly influenced by external conditions. Particularly, light intensity has a great influence on the photosynthesis and accumulation of secondary metabolites. In this study, the light intensity was changed, and the influence of the light intensity on leaf photosynthetic characteristics, antioxidant enzyme activity and flavone contents of Lithocarpus litseifoliusp (Hance) Chun. was discussed. The results showed that (1) L. litseifolius is a typical heliophyte. As the light intensity decreased, the contents of chlorophyll a (Chl a), chlorophyll b (Chl b) and total chlorophyll (Chl a + b) all increased. However, the Chl a/b ratio gradually decreased. The daily variation of net photosynthetic rate changed from a double-peak curve under natural light to single-peak curve under 20% full light two shading nets. (2) As the light intensity decreased, the SOD and POD activities and the soluble proteins content decreased in the leaves. In contrast, the malondialdehyde content increased. (3) The flavone content was the highest in leaves at one shading nets 60% of full light, and the lowest occurred in leaves at two shading nets 20% of full light. A comprehensive analysis indicated that an appropriate shading could induce shade tolerance in the leaves of L. litseifolius, which promoted the accumulation of flavonoids. L. litseifolius should be planted in the lower position of sunny slope or the upper position of shady slope to increase the content of flavone in the leaves.

Share and Cite:

Li, A. , Li, S. , Wu, X. , Zhang, J. , He, A. , Zhao, G. and Yang, X. (2016) Effect of Light Intensity on Leaf Photosynthetic Characteristics and Accumulation of Flavonoids in Lithocarpus litseifolius (Hance) Chun. (Fagaceae). Open Journal of Forestry, 6, 445-459. doi: 10.4236/ojf.2016.65034.

Cited by

[1] Physiological and biochemical responses of Chinese cabbage (Brassica rapa var. chinensis) to different light treatments
Chemical and …, 2022
[2] Manipulation of light quality is an effective tool to regulate photosynthetic capacity and fruit antioxidant properties of Solanum lycopersicum L. cv.'Microtom'in a …
PeerJ, 2022
[3] The Effect of Hydrolysis on the Antioxidant Activity of Olive Mill Waste
Applied Sciences, 2022
[4] Karakteristik mikoriza arbuskula tanaman serai wangi (Cymbopogon nardus L.) di lapangan ternaungi dan tidak ternaungi
Jurnal Ilmu Pertanian …, 2022
[5] Metabolome profiling of stratified seeds provides insight into the regulation of dormancy in Davidia involucrata
Plant Diversity, 2022
[6] Pengaruh ketinggian lokasi tumbuh terhadap kadar total flavonoid dan daya antioksidan daun kirinyuh (Chromolaena odorata (l.) RM King & H. Rob)
2022
[7] Characterization of Flavonoid Constituents in Stems of Lithocarpus litseifolius (Hance) Chun by UHPLC-Q-Exactive Orbitrap MS
2021
[8] Phenolic Content, Main Flavonoids, and Antioxidant Capacity of Instant Sweet Tea (Lithocarpus litseifolius [Hance] Chun) Prepared with Different Raw Materials and …
2021
[9] THE EFFECT OF LIGHT-EMITTING DIODES ON THE GROWTH, ANTIOXIDANT AND ANTI-MICROBIAL ACTIVITY OF MISAI KUCING (ORTHOSIPHON …
2021
[10] Efecto de la radiación luminosa y la concentración de CO2 sobre la actividad fotosintética de un biofilm algal
2020
[11] Effect of different light intensity on physiology, antioxidant capacity and photosynthetic characteristics on wheat seedlings under high CO 2 concentration in a closed …
2020
[12] Phytochemicals and bioactive analysis of different sweet tea (Lithocarpus litseifolius [Hance] Chun) varieties
2020
[13] LED Lights Promote Growth and Flavonoid Accumulation of Anoectochilus roxburghii and Are Linked to the Enhanced Expression of Several Related Genes
2020
[14] Flavonoid Compounds and Photosynthesis in Passiflora Plant Leaves under Varying Light Intensities
2020
[15] Interactive effects of water and CO2 on light response efficiency and gas exchange traits in pine (Pinus) and spruce (Picea) species
2020
[16] Respon Hasil dan Kadar Total Flavonoid Umbi Bawang Dayak (Eleutherine palmifolia (L.) Merr) terhadap Pemberian Naungan
2020
[17] Effect of different light intensity on physiology, antioxidant capacity and photosynthetic characteristics on wheat seedlings under high CO2 concentration in a closed …
2020
[18] An Effect of Light Intensity on the Total Flavonoid and Phenolic Content of Moringa Oleifera: Aisha Idris, Alona C. Linatoc, Surayya M. Muhammad, and Zakiyyu …
2019
[19] Comprehensive Transcriptome Analysis Revealed the Effects of the Light Quality, Light Intensity, and Photoperiod on Phlorizin Accumulation in Lithocarpus …
2019
[20] An Effect of Light Intensity on the Total Flavonoid and Phenolic Content of Moringa Oleifera
2019
[21] LED 不同光强对油茶苗生理生化特性的影响
2019
[22] GROWTH PERFORMANCE AND PHYTOCHEMICALS OF Vernonia amygdalina Delile AS AFFECTED BY LIGHT INTENSITY, GROWING MEDIA, HARVEST …
2019
[23] EFFECT OF LIGHT INTENSITY ON THE PHOTOSYNTHESIS AND STOMATAL DENSITY OF SELECTED PLANT SPECIES OF GUNUNG LEDANG, JOHOR
Malaysian Applied Biology, 2019
[24] Growth Performance and Phytochemicals of Vernonia Amygdalina delile as Affected by Light Intensity, Growing Media, Harvest Time and Storage …
2019
[25] Evaluation of the photoprotective role of quercetin to selected light-adapted and shade-tolerant plant species
2019
[26] Evaluation of carbon dioxide absorption capacity and biomass accumulation of sub-urban plants in Universiti Tun Hussein Onn Malaysia (UTHM)
2018
[27] Controlling Powdery Mildew on Cucurbit Using Biological Control Agents
2018
[28] Effect of Light Quality and Quantity on the Accumulation of Flavonoid in Plant Species
2018
[29] Effect of Light Intensity on the Total Flavonoid and Total Phenolic Contents of Mikania Micrantha and Tridax Procumbens
2018
[30] Influence of Light Intensity on Leaf Photosynthetic Traits and Alkaloid Content of Kiasahan (Tetracera scandens L.)
IOP Conference Series: Earth and Environmental Science, 2018
[31] Pilot-scale demonstration of phytoremediation of PAH-contaminated sediments by Hydrilla verticillata and Vallisneria spiralis
2017
[32] Plant secondary metabolites and some plant growth regulators elicited by UV irradiation, light and/or shade
Medicinal Plants and Environmental Challenges, 2017
[33] Photosynthetic Response of Soybean Leaf to Wide Light-Fluctuation in Maize-Soybean Intercropping System
Frontiers in Plant Science, 2017
[34] Photoprotective Role of Quercetin to Tetracera sarmentosa

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.