Cold stress significantly threatens grape quality, yield, and geographical distribution. Although ethylene-responsive factors (ERFs) are recognized for their pivotal roles in cold stress, the regulatory mechanisms of many ERFs contributing to tolerance remain unclear. In this study, we identified the cold-responsive gene VvERF117 and elucidated its positive regulatory function in cold tolerance. VvERF117 exhibits transcriptional activity and localizes to the nucleus. VvERF117 overexpression improved cold tolerance in transgenic Arabidopsis, grape calli, and grape leaves, whereas VvERF117 silencing increased cold sensitivity in grape calli and leaves. Furthermore, VvERF117 overexpression remarkably upregulated the expression of several stress-related genes. Importantly, BAS1, encoding a 2-Cys peroxidase (POD), was confirmed as a direct target gene of VvERF117. Meanwhile, compared to the wild-type, POD activity and HO content were remarkably increased and decreased in VvERF117-overexpressing grape calli and leaves, respectively. Conversely, VvERF117 silencing displayed the opposite trend in grape calli and leaves under cold stress. These findings indicate that VvERF117 plays a positive role in cold resistance by, at least in part, enhancing antioxidant capacity through regulating the POD-encoding gene VvBAS1, leading to effective mitigation of reactive oxygen species.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.131804DOI Listing

Publication Analysis

Top Keywords

grape calli
16
cold tolerance
12
cold stress
12
calli leaves
12
vverf117
9
cold
8
gene vverf117
8
vverf117 overexpression
8
leaves vverf117
8
vverf117 silencing
8

Similar Publications

Basic leucine zipper (bZIP) transcription factors serve as crucial regulators in plants' response to abiotic stress; however, its function in grapevine heat tolerance is still largely unknown. Here, we undertook a comprehensive investigation of grape genome, leading to the identification of 65 VvbZIP genes, among which 16 VvbZIPs were significantly induced under heat stress. Overexpression of VvbZIP36 enhanced heat tolerance in grape calli, while virus-induced gene silencing (VIGS) of VvbZIP36 reflected thermal sensitivity.

View Article and Find Full Text PDF

Ethylene increases the NaHCO stress tolerance of grapevines partially via the VvERF1B-VvMYC2-VvPMA10 pathway.

Plant Biotechnol J

January 2025

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops in Huang-Huai Region, Ministry of Agriculture, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, China.

Here, we evaluated the role of ethylene in regulating the NaHCO stress tolerance of grapevines and clarified the mechanism by which VvERF1B regulates the response to NaHCO stress. The exogenous application of ACC and VvACS3 overexpression in grapevines and grape calli revealed that ethylene increased NaHCO stress tolerance, and this was accompanied by increased plasma membrane H-ATPase (PMA) activity. The expression of VvERF1B was strongly induced by ACC, and overexpression of this gene in grapevines conferred increased NaHCO stress tolerance and enhanced PMA activity and H and oxalate secretion.

View Article and Find Full Text PDF
Article Synopsis
  • * VvNAC26 affects sugar metabolism negatively while enhancing ABA pathway-related gene expression, with its mechanism showing dependency on VvSnRK1.2.
  • * Experiments showed that manipulating VvNAC26 and VvSnRK1.2 expression in transgenic grape calli led to significant changes in sugar levels and gene expression, indicating a complex interplay between these factors in plant stress response.
View Article and Find Full Text PDF

Proanthocyanidins (PAs) are vital polyphenolic compounds in plants with various biological functions. Although WRKY transcription factors are known to play important roles, their specific involvement in regulating PAs metabolism in grapes remains underexplored. In this study, we identified six candidate WRKY genes potentially involved in PAs synthesis by transiently overexpressing them in Nicotiana tabacum leaves.

View Article and Find Full Text PDF
Article Synopsis
  • * The study focuses on a gene called VaERF054-like, which is activated by the VaMYB4a gene from Amur grape, suggesting its significance in cold stress tolerance in grapevines.
  • * Findings indicate that VaERF054-like enhances cold tolerance through the ethylene pathway and the CBF signaling pathway, with evidence showing that overexpressing this gene improves freezing stress resistance in grapevines.
View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!