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Identification and Analysis of Genes Involved in Auxin, Abscisic Acid, Gibberellin, and Brassinosteroid Metabolisms Under Drought Stress in Tender Shoots of Tea Plants.

Authors :
Li H
Teng RM
Liu JX
Yang RY
Yang YZ
Lin SJ
Han MH
Liu JY
Zhuang J
Source :
DNA and cell biology [DNA Cell Biol] 2019 Nov; Vol. 38 (11), pp. 1292-1302. Date of Electronic Publication: 2019 Sep 27.
Publication Year :
2019

Abstract

Endogenous phytohormones auxin (indole-3-acetic acid [IAA]), abscisic acid (ABA), gibberellin (GA <subscript>3</subscript> ), 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, GA <subscript>3</subscript> , 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 GA <subscript>3</subscript> -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, GA <subscript>3</subscript> , 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, GA <subscript>3</subscript> , and BR metabolisms in tender shoots of tea plants.

Details

Language :
English
ISSN :
1557-7430
Volume :
38
Issue :
11
Database :
MEDLINE
Journal :
DNA and cell biology
Publication Type :
Academic Journal
Accession number :
31560570
Full Text :
https://doi.org/10.1089/dna.2019.4896