Characterization of 33 <i>HbbZIP</i> Gene Family Members and Analysis of Their Expression Profiles in Rubber Tree in Response to ABA, Glyphosate and Powdery Mildew Treatment

Plant bZIP transcription factors play important roles in nearly all biological processes. Elucidation of the potential functions of these proteins in rubber trees will help to improve breeding and cultivation techniques. Here, we identified 33 <i>HbbZIP</i> family genes based on genomic...

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Bibliographic Details
Main Authors: Meng Wang, Yan Wang, Dong Zhang, Qifeng Liu, Yanchao Liu, Bi Qin, Xiaoyu Liang, Lifeng Wang, Yu Zhang
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Forests
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Online Access:https://www.mdpi.com/1999-4907/14/3/556
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Summary:Plant bZIP transcription factors play important roles in nearly all biological processes. Elucidation of the potential functions of these proteins in rubber trees will help to improve breeding and cultivation techniques. Here, we identified 33 <i>HbbZIP</i> family genes based on genomic data and named them according to their homologs in <i>Arabidopsis thaliana</i>. The genes were divided into 10 subgroups, namely, A to I. All the proteins had three motifs that varied in the different subgroups. The exons and introns were also analyzed on the basis of DNA sequence analysis. Expression analysis revealed that the 33 <i>HbbZIPs</i> were expressed primarily in the flowers, followed by the leaves and roots, while the lowest expression was detected in the latex and bark. In response to ABA treatment, the genes were significantly differentially expressed. The highest <i>HbbZIP</i>38 level increased by approximately 21-fold, and the lowest <i>HbbZIP</i>56 level decreased by 21-fold. In response to powdery mildew infection, most <i>HbbZIPs</i> were upregulated at 6 h after treatment; however, <i>HbbZIP</i>58 and <i>HbbZIP</i>47 were downregulated at this time point. In response to glyphosate, the expression of only <i>HbbZIP</i>21 and <i>HbbZIP</i>38 decreased, while that of the other HbbZIP proteins increased. Taken together, these results suggested that members of the different <i>HbbZIP</i> subgroups have specific functions. Overall, this study lays a solid foundation for further exploration of the potential roles of <i>HbbZIPs</i> in rubber trees.
ISSN:1999-4907