4.7 Article

Modulation of auxin content in Arabidopsis confers improved drought stress resistance

期刊

PLANT PHYSIOLOGY AND BIOCHEMISTRY
卷 82, 期 -, 页码 209-217

出版社

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.plaphy.2014.06.008

关键词

Abscisic acid; Arabidopsis; Auxin; Drought stress; Reactive oxygen species; Metabolite

资金

  1. National Natural Science Foundation of China [31370302, 31200194]
  2. Hundred Talents Program
  3. Knowledge Innovative Key Program of Chinese Academy of Sciences [54Y154761001076, 29Y32963100263]
  4. Youth Innovation Promotion Association of Chinese Academy of Sciences [29Y42937100437, 55Y45544600544]
  5. Outstanding Young Talent Program of Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture [52Y35281100381, 52Y452331003]

向作者/读者索取更多资源

Auxin is a well-known plant phytohormone that is involved in multiple plant growth processes and stress responses. In this study, auxin response was significantly modulated under drought stress condition. The iaaM-OX transgenic lines with higher endogenous indole-3-acetic acid (IAA) level and IAA pre-treated wild type (WT) plants exhibited enhanced drought stress resistance, while the yuc1yuc2yuc6 triple mutants with lower endogenous IAA level showed decreased stress resistance in comparison to non-treated WT plants. Additionally, endogenous and exogenous auxin positively modulated the expression levels of multiple abiotic stress-related genes (RAB18, RD22, RD29A, RD29B, DREB2A, and DREB2B), and positively affected reactive oxygen species (ROS) metabolism and underlying antioxidant enzyme activities. Moreover, auxin significantly modulated some carbon metabolites including amino acids, organic acids, sugars, sugar alcohols and aromatic amines. Notably, endogenous and exogenous auxin positively modulated root architecture especially the lateral root number. Taken together, this study demonstrated that auxin might participate in the positive regulation of drought stress resistance, through regulation of root architecture, ABA-responsive genes expression, ROS metabolism, and metabolic homeostasis, at least partially. (C) 2014 Elsevier Masson SAS. All rights reserved.

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