CYCLIN H;1 Regulates Drought Stress Responses and Blue Light-Induced Stomatal Opening by Inhibiting Reactive Oxygen Species Accumulation in Arabidopsisopen access
- Authors
- Zhou, Xiao Feng; Jin, Yin Hua; Yoo, Chan Yul; Lin, Xiao-Li; Kim, Woe-Yeon; Yun, Dae-Jin; Bressan, Ray A.; Hasegawa, Paul M.; Jin, Jing Bo
- Issue Date
- Jun-2013
- Publisher
- AMER SOC PLANT BIOLOGISTS
- Citation
- PLANT PHYSIOLOGY, v.162, no.2, pp 1030 - 1041
- Pages
- 12
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- PLANT PHYSIOLOGY
- Volume
- 162
- Number
- 2
- Start Page
- 1030
- End Page
- 1041
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/20627
- DOI
- 10.1104/pp.113.215798
- ISSN
- 0032-0889
1532-2548
- Abstract
- Arabidopsis (Arabidopsis thaliana) CYCLIN-DEPENDENT KINASE Ds (CDKDs) phosphorylate the C-terminal domain of the largest subunit of RNA polymerase II. Arabidopsis CYCLIN H; 1 (CYCH;1) interacts with and activates CDKDs; however, the physiological function of CYCH; 1 has not been determined. Here, we report that CYCH; 1, which is localized to the nucleus, positively regulates blue light-induced stomatal opening. Reduced-function cych;1 RNA interference (cych; 1 RNAi) plants exhibited a drought tolerance phenotype. CYCH; 1 is predominantly expressed in guard cells, and its expression was substantially down-regulated by dehydration. Transpiration of intact leaves was reduced in cych; 1 RNAi plants compared with the wild-type control in light but not in darkness. CYCH; 1 down-regulation impaired blue light-induced stomatal opening but did not affect guard cell development or abscisic acid-mediated stomatal closure. Microarray and real-time polymerase chain reaction analyses indicated that CYCH; 1 did not regulate the expression of abscisic acid-responsive genes or light-induced stomatal opening signaling determinants, such as MYB60, MYB61, Hypersensitive to red and blue1, and Protein phosphatase7. CYCH; 1 down-regulation induced the expression of redox homeostasis genes, such as LIPOXYGENASE3 (LOX3), LOX4, ARABIDOPSIS GLUTATHIONE PEROXIDASE 7 (ATGPX7), EARLY LIGHT-INDUCIBLE PROTEIN1 (ELIP1), and ELIP2, and increased hydrogen peroxide production in guard cells. Furthermore, loss-of-function mutations in CDKD; 2 or CDKD; 3 did not affect responsiveness to drought stress, suggesting that CYCH; 1 regulates the drought stress response in a CDKD-independent manner. We propose that CYCH; 1 regulates blue light-mediated stomatal opening by controlling reactive oxygen species homeostasis.
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