Tea green leafhopper infestations affect tea plant growth by altering the synthesis of brassinolide

Author:

Gu Dachuan123ORCID,Wu Shuhua1234,Wang Yuxin123,Yang Yuhua12,Chen Jiaming123,Mao Kaiquan123,Liao Yinyin12,Li Jianlong4,Zeng Lanting123,Yang Ziyin123ORCID

Affiliation:

1. Guangdong Provincial Key Laboratory of Applied Botany & State Key Laboratory of Plant Diversity and Specialty Crops, South China Botanical Garden Chinese Academy of Sciences Guangzhou Guangdong China

2. Key Laboratory of National Forestry and Grassland Administration on Plant Conservation and Utilization in Southern China, South China Botanical Garden Chinese Academy of Sciences Guangzhou Guangdong China

3. College of Advanced Agricultural Sciences University of Chinese Academy of Sciences Beijing China

4. Tea Research Institute Guangdong Academy of Agricultural Sciences Guangzhou Guangdong China

Abstract

AbstractTea green leafhoppers are insects widely distributed in major tea‐growing areas. At present, less attention has been paid to the study on effect of tea green leafhopper infestation on tea growth phenotype. In this study, tea green leafhoppers were used to treat tea branches in laboratory and co‐treated with brassinolide (BL), the highest bioactivity of brassinosteroids (BRs), in tea garden. The results showed that the expression of genes related to BRs synthesis was inhibited and BL content was reduced in tea shoots after infestation by tea green leafhoppers. In addition, area of each leaf position, length and diameter of internodes, and the biomass of the tender shoots of tea plant were decreased after infestation by tea green leafhoppers. The number of trichomes, leaf thickness, palisade tissue thickness and cuticle thickness of tea shoots were increased after tea green leafhoppers infestation. BL spraying could partially recover the phenotypic changes of tea branches caused by tea green leafhoppers infestation. Further studies showed that tea green leafhoppers infestation may regulate the expression of CsDWF4 (a key gene for BL synthesis) through transcription factors CsFP1 and CsTCP1a, which finally affect the BL content. Moreover, BL was applied to inhibit the tea green leafhoppers infestation on tea shoots. In conclusion, our study revealed the effect of plant hormone BL‐mediated tea green leafhoppers infestation on the growth phenotype of tea plants.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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