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FAR1/FHY3 Transcription Factors Positively Regulate the Salt and Temperature Stress Responses in Eucalyptus grandis.


ABSTRACT: FAR-RED ELONGATED HYPOCOTYLS3 (FHY3) and its homolog FAR-RED IMPAIRED RESPONSE1 (FAR1), which play pivotal roles in plant growth and development, are essential for the photo-induced phyA nuclear accumulation and subsequent photoreaction. The FAR1/FHY3 family has been systematically characterized in some plants, but not in Eucalyptus grandis. In this study, genome-wide identification of FAR1/FHY3 genes in E. grandis was performed using bioinformatic methods. The gene structures, chromosomal locations, the encoded protein characteristics, 3D models, phylogenetic relationships, and promoter cis-elements were analyzed with this gene family. A total of 33 FAR1/FHY3 genes were identified in E. grandis, which were divided into three groups based on their phylogenetic relationships. A total of 21 pairs of duplicated repeats were identified by homology analysis. Gene expression analysis showed that most FAR1/FHY3 genes were differentially expressed in a spatial-specific manner. Gene expression analysis also showed that FAR1/FHY3 genes responded to salt and temperature stresses. These results and observation will enhance our understanding of the evolution and function of the FAR1/FHY3 genes in E. grandis and facilitate further studies on the molecular mechanism of the FAR1/FHY3 gene family in growth and development regulations, especially in response to salt and temperature.

SUBMITTER: Dai J 

PROVIDER: S-EPMC9115564 | biostudies-literature | 2022

REPOSITORIES: biostudies-literature

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FAR1/FHY3 Transcription Factors Positively Regulate the Salt and Temperature Stress Responses in <i>Eucalyptus grandis</i>.

Dai Jiahao J   Sun Jin J   Peng Wenjing W   Liao Wenhai W   Zhou Yuhan Y   Zhou Xue-Rong XR   Qin Yuan Y   Cheng Yan Y   Cao Shijiang S  

Frontiers in plant science 20220504


FAR-RED ELONGATED HYPOCOTYLS3 (FHY3) and its homolog FAR-RED IMPAIRED RESPONSE1 (FAR1), which play pivotal roles in plant growth and development, are essential for the photo-induced phyA nuclear accumulation and subsequent photoreaction. The FAR1/FHY3 family has been systematically characterized in some plants, but not in <i>Eucalyptus grandis</i>. In this study, genome-wide identification of <i>FAR1/FHY3</i> genes in <i>E. grandis</i> was performed using bioinformatic methods. The gene structur  ...[more]

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