Genomic characterization, expression and functional analysis of the plant homeodomain (PHD) family in tomato (Solanum lycopersicum L.) under abiotic stresses
Together, these findings provide a foundation for functional characterization and useful information for future research on the role of SlPHD family members in plant abiotic stress tolerance.
It is demonstrated that heterologous expression of TksPLATZ1, TksPLATZ2 and TksPLATZ7 localize to the cell nucleus and act as transcriptional activators and repressors, respectively, which enhances the tolerance of Arabidopsis to salt and osmotic stress.
Jinxian Chen, Wenhao Wu, Ming-Hua Luo et al.· Phytochemistry· 0 citations
A systematic analysis of the MtPLATZ gene family in M. truncatula is provided, offering a valuable reference for functional studies and genetic improvement of stress tolerance in legumes.
The identified SlPAE genes were classified phylogenetically into three conserved subfamilies, with branch members sharing domain architectures, motifs, and genomic structure, providing a much-needed framework for future research into their specific biological roles in tomatoes.
Ruizhen Li, Lin Shen, Jianzhong Tie et al.· BMC Plant Biology· 0 citations
An extensive genome-wide study of the DUF668 gene family in potato demonstrated that StDUF668s play a role in crucial biological processes, involving abiotic and biotic stress responses, and provided a valuable resource for future research aimed at improving potato stress tolerance and growth.
Aiana Gill, Tanvi Mongia, Garima Kakkar et al.· Journal of Applied Genetics· 0 citations
The results of STRING-based computer simulations predicting protein–protein interactions indicate that PpTCP3 and PpTCP5 interact with key hormone pathways and stress-related transcription factors (TFs), including auxin signaling and strigolactone signaling.
Yanfu Jing, Yang Yu, Zimin Xiao et al.· International Journal of Mol...· 0 citations
The GmWIP gene family has expanded substantially in soybean relative to previously characterized species and shows genotype-dependent transcriptional responses to salt stress, suggesting that specific GmWIP members are candidate regulators of salt tolerance and warrant further functional investigation.
Tianjiao Gao, Shuping Yan, S. F. Lamlom et al.· Genes· 0 citations
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