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1.
Int J Mol Sci ; 23(12)2022 Jun 15.
Article in English | MEDLINE | ID: mdl-35743137

ABSTRACT

The enhancement of photosynthesis of tea leaves can increase tea yield. In order to explore the regulation mechanism of exogenous melatonin (MT) on the photosynthetic characteristics of tea plants, tea variety 'Zhongcha 108' was used as the experimental material in this study. The effects of different concentrations (0, 0.2, 0.3, 0.4 mM) of melatonin on the chlorophyll (Chl) content, stomatal opening, photosynthetic and fluorescence parameters, antioxidant enzyme activity, and related gene expression of tea plants were detected and analyzed. The results showed that under 0.2-mM MT treatment, chlorophyll (Chl) content, photosynthetic rate (Pn), stomatal conductance (Gs), intercellular CO2 concentration (Ci), and transpiration rate (Tr) improved, accompanied by a decrease in stomata density and increase in stomata area. Zero point two millimolar MT increased Chl fluorescence level and superoxide dismutase (SOD) activity, and reduced hydrogen peroxide (H2O2) and malondialdehyde (MDA) contents, indicating that MT alleviated PSII inhibition and improved photochemical efficiency. At the same time, 0.2 mM MT induced the expression of genes involved in photosynthesis and chlorophyll metabolism to varying degrees. The study demonstrated that MT can effectively enhance the photosynthetic capacity of tea plants in a dose-dependent manner. These results may promote a comprehensive understanding of the potential regulatory mechanism of exogenous MT on photosynthesis in tea plants.


Subject(s)
Camellia sinensis , Melatonin , Antioxidants/pharmacology , Camellia sinensis/metabolism , Chlorophyll/metabolism , Gene Expression , Hydrogen Peroxide/metabolism , Melatonin/metabolism , Melatonin/pharmacology , Photosynthesis , Plant Leaves , Tea/metabolism
2.
Int J Biol Macromol ; 179: 485-499, 2021 May 15.
Article in English | MEDLINE | ID: mdl-33684430

ABSTRACT

Melatonin (MT) is a bioactive molecule that can regulate various developmental processes. Changes in lignin content play important roles in plant growth and development. Herein, quantitative analysis and histochemical staining showed that lignin content significantly increased over time, and melatonin treatment triggered the lignification at 8 and 16 d in tea leaves. The POD activity participated in lignin formation had also been significantly improved. The effect of melatonin on the increase of lignin content was attenuation over time. Sequencing results based on transcriptome at 8 and 16 d showed that 5273 and 3019 differentially expressed genes (DEGs) were identified in CK1 vs. MT1 and CK2 vs. MT2, respectively. A total of 67 DEGs were annotated to lignin biosynthesis, and 38 and 9 genes were significantly up-regulated under melatonin treatment, respectively. Some transcription factor genes such as MYB were also identified among the two pairwise comparisons, which might relate to lignin metabolism. Melatonin increased the degree of lignification in tea leaves by modifying the enzyme genes expression involved in lignin synthesis pathway. These results provide a reference for further study on the molecular mechanism of the dynamic changes of lignin content induced by melatonin treatment in tea plants.


Subject(s)
Camellia sinensis/metabolism , Gene Expression Regulation, Plant/drug effects , Lignin/biosynthesis , Melatonin/pharmacology , Plant Leaves/metabolism , Plant Proteins/metabolism
3.
DNA Cell Biol ; 38(11): 1292-1302, 2019 Nov.
Article in English | MEDLINE | ID: mdl-31560570

ABSTRACT

Endogenous phytohormones auxin (indole-3-acetic acid [IAA]), abscisic acid (ABA), gibberellin (GA3), and brassinosteroid (BR) play a role in responses to drought stress in higher plants. Tea plant is one of the major economic corps worldwide. The tender shoots of tea plants are the main source for tea production. The effects of drought stress on endogenous IAA, ABA, GA3, and BR metabolisms in tender shoots of tea plants need to be illustrated. In this study, a total of 17 IAA-related genes, 17 ABA-related genes, 18 GA3-related genes, and 8 BR-related genes were identified under drought stress in tender shoots of tea plants, respectively. By using a combination of phytohormone determination, phylogenetic tree construction and sequence analysis, gene expression profiles, functional classification, Kyoto encyclopedia of genes and genomes enrichment, and distribution of genes analysis, we have demonstrated that IAA, ABA, GA3, and BR metabolisms might participate in the regulation of the response to drought stress in tender shoots of tea plants. The expression level of CsLYCE negatively correlated with ABA accumulation under drought stress. Our findings could shed new light on the effects of drought stress on the IAA, ABA, GA3, and BR metabolisms in tender shoots of tea plants.


Subject(s)
Abscisic Acid/metabolism , Brassinosteroids/metabolism , Camellia sinensis , Droughts , Gibberellins/metabolism , Indoleacetic Acids/metabolism , Plant Proteins/genetics , Abscisic Acid/genetics , Camellia sinensis/genetics , Camellia sinensis/growth & development , Camellia sinensis/metabolism , Gene Expression Profiling , Gene Expression Regulation, Plant , Gibberellins/genetics , Metabolic Networks and Pathways/genetics , Plant Growth Regulators/genetics , Plant Growth Regulators/metabolism , Plant Shoots/genetics , Plant Shoots/growth & development , Plant Shoots/metabolism , Stress, Physiological/genetics
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