Pan-Genomic Identification and Analysis of the Maize BBX Family
Xingyun Wang, Senan Cheng, Baijuan Du

TL;DR
This study identifies and analyzes the maize BBX gene family, revealing their evolutionary relationships and roles in stress responses.
Contribution
The study provides a comprehensive pan-genomic analysis of the maize BBX family, including evolutionary insights and stress response functions.
Findings
Maize has 35 BBX genes, including 18 core and 14 near-core genes.
Most BBX genes are under purifying selection, except ZmBBX20 and ZmBBX42.
BBX gene expression changes significantly under cold stress.
Abstract
BBX transcription factors play crucial roles in plant growth, development, and stress resistance. Utilizing maize whole-genome data, we identified 35 members of the maize BBX gene family, comprising 18 core genes, 14 near-core genes, 4 non-essential genes, and 150 private genes. The phylogenetic tree constructed using Arabidopsis thaliana revealed that the fourth subfamily contained the largest number of core genes, totaling eight, and exhibited significant diversity throughout the evolutionary process of maize. The Ka/Ks ratios of the BBX family members in the 26 genomes indicated that, except for ZmBBX20 and ZmBBX42 under positive selection, the remaining genes were subjected to purifying selection. Further analysis combining transcriptome data and RT-qPCR demonstrated that maize BBX family member expression levels changed significantly in response to cold stress after cold treatment,…
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Taxonomy
TopicsPlant Stress Responses and Tolerance · Plant Gene Expression Analysis · Plant Molecular Biology Research
