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RcMYB8 enhances salt and drought tolerance in rose (Rosa chinensis) by modulating RcPR5/1 and RcP5CS1.

Authors :
Zhang, Yichang
Yu, Shuang
Niu, Pengfei
Su, Lin
Jiao, Xuecheng
Sui, Xiuyu
Shi, Yaru
Liu, Boda
Lu, Wanpei
Zhu, Hong
Jiang, Xinqiang
Source :
Molecular Horticulture; 1/29/2024, Vol. 4 Issue 1, p1-20, 20p
Publication Year :
2024

Abstract

Plant Myeloblastosis (MYB) proteins function crucially roles upon variegated abiotic stresses. Nonetheless, their effects and mechanisms in rose (Rosa chinensis) are not fully clarified. In this study, we characterized the effects of rose RcMYB8 under salt and drought tolerances. For induction of the RcMYB8 expression, NaCl and drought stress treatment were adopted. Rose plants overexpressing RcMYB8 displayed enhanced tolerance to salinity and drought stress, while silencing RcMYB8 resulted in decreased tolerance, as evidenced by lowered intra-leaf electrolyte leakage and callose deposition, as well as photosynthetic sustainment under stressed conditions. Here, we further show that RcMYB8 binds similarly to the promoters of RcPR5/1 and RcP5C51 in vivo and in vitro. Inhibiting RcP5CS1 by virus-induced gene silencing led to decreased drought tolerance through the reactive oxygen species (ROS) homeostatic regulation. RcP5CS1-silenced plants showed an increase in ion leakage and reduce of proline content, together with the content of malondialdehyde (MDA) increased, lowered activities of Catalase (CAT), peroxidase (POD) and superoxide dismutase (SOD). Our study highlights the transcriptional modulator role of RcMYB8 in drought and salinity tolerances, which bridges RcPR5/1 and RcP5CS1 by promoting ROS scavenging. Besides, it is probably applicable to the rose plant engineering for enhancing their abiotic stress tolerances. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
27309401
Volume :
4
Issue :
1
Database :
Complementary Index
Journal :
Molecular Horticulture
Publication Type :
Academic Journal
Accession number :
175023883
Full Text :
https://doi.org/10.1186/s43897-024-00080-9