Multifaceted roles of WRKY transcription factors in abiotic stress and flavonoid biosynthesis

J Zhang, H Zhao, L Chen, J Lin, Z Wang… - Frontiers in Plant …, 2023 - frontiersin.org
Increasing biotic and abiotic stresses are seriously impeding the growth and yield of staple
crops and threatening global food security. As one of the largest classes of regulators in …

Physiological, hormonal and molecular dynamics of root system architectural response to drought stress signaling in crops

S Gusain, K Kumari, R Joshi - Rhizosphere, 2024 - Elsevier
Drought represents one of the most devastating environmental challenges, exerting
deleterious effects on agricultural productivity worldwide. Plants are particularly susceptible …

[HTML][HTML] Maize WRKY Transcription Factor ZmWRKY79 Positively Regulates Drought Tolerance through Elevating ABA Biosynthesis

F Gulzar, J Fu, C Zhu, J Yan, X Li, TA Meraj… - International journal of …, 2021 - mdpi.com
Drought stress causes heavy damages to crop growth and productivity under global climatic
changes. Transcription factors have been extensively studied in many crops to play …

MdWRKY11 participates in anthocyanin accumulation in red-fleshed apples by affecting MYB transcription factors and the photoresponse factor MdHY5

W Liu, Y Wang, L Yu, H Jiang, Z Guo, H Xu… - Journal of Agricultural …, 2019 - ACS Publications
Red-fleshed apples are popular as a result of their high anthocyanin content. MdMYB10 and
its homologues are known to be important regulators of anthocyanin synthesis in apple, but …

[HTML][HTML] Rice OsHSFA3 Gene Improves Drought Tolerance by Modulating Polyamine Biosynthesis Depending on Abscisic Acid and ROS Levels

MD Zhu, M Zhang, DJ Gao, K Zhou, SJ Tang… - International journal of …, 2020 - mdpi.com
Drought is a serious problem, which causes heavy yield losses for rice. Heat-shock factors
(HSFs) had been implicated in tolerance to drought and high temperature. However, there …

Multiome in the Same Cell Reveals the Impact of Osmotic Stress on Arabidopsis Root Tip Development at Single‐Cell Level

Q Liu, W Ma, R Chen, ST Li, Q Wang, C Wei… - Advanced …, 2024 - Wiley Online Library
Cell‐specific transcriptional regulatory networks (TRNs) play vital roles in plant development
and response to environmental stresses. However, traditional single‐cell mono‐omics …

[HTML][HTML] The maize clade A PP2C phosphatases play critical roles in multiple abiotic stress responses

Z He, J Wu, X Sun, M Dai - International journal of molecular sciences, 2019 - mdpi.com
As the core components of abscisic acid (ABA) signal pathway, Clade A PP2C (PP2C-A)
phosphatases in ABA-dependent stress responses have been well studied in Arabidopsis …

The sweet sorghum SbWRKY50 is negatively involved in salt response by regulating ion homeostasis

Y Song, J Li, Y Sui, G Han, Y Zhang, S Guo… - Plant molecular biology, 2020 - Springer
The WRKY transcription factor family is involved in responding to biotic and abiotic stresses.
Its members contain a typical WRKY domain and can regulate plant physiological responses …

Genome-wide identification and comprehensive analysis of WRKY transcription factor family in safflower during drought stress

X Song, X Hou, Y Zeng, D Jia, Q Li, Y Gu, H Miao - Scientific Reports, 2023 - nature.com
The WRKY family is an important family of transcription factors in plant development and
stress response. Currently, there are few reports on the WRKY gene family in safflower …