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Genome-Wide Analysis of the Gibberellin-Oxidases Family Members in Four Species and a Functional Analysis of in Plant Height. | LitMetric

Genome-Wide Analysis of the Gibberellin-Oxidases Family Members in Four Species and a Functional Analysis of in Plant Height.

Int J Mol Sci

Beijing Key Laboratory of Ornamental Plants Germplasm Innovation & Molecular Breeding, National Engineering Research Center for Floriculture, State Key Laboratory of Efficient Production of Forest Resources, Beijing Laboratory of Urban and Rural Ecological Environment, Engineering Research Center of Landscape Environment of Ministry of Education, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, China.

Published: August 2024

AI Article Synopsis

  • Gibberellins (GAs) are crucial enzymes for plant growth, influenced by gibberellin-oxidases (GAoxs), and this study identifies 85 GAox genes across four plant species, classifying them into six subgroups.
  • Analysis of gene structure reveals conserved GAoxs, with findings indicating specific tissue expression and the role of certain genes in regulating GA levels during flower bud dormancy.
  • Overexpression of a specific GAox led to noticeable physical changes in the plant, such as shorter height and variation in leaf structure, highlighting the importance of GAoxs in controlling plant architecture.

Article Abstract

Gibberellins (GAs), enzymes that play a significant role in plant growth and development, and their levels in plants could be regulated by gibberellin-oxidases (GAoxs). As important fruit trees and ornamental plants, the study of the mechanism of plant architecture formation of the genus is crucial. Here, 85 genes were identified from , , , and , and they were classified into six subgroups. Conserved motif and gene structure analysis showed that GAoxs were conserved in the four species. Collinearity analysis revealed two fragment replication events of s in the genome. Promoter cis-elements analysis revealed 24 s contained hormone-responsive elements and development regulatory elements. The expression profile indicated that s have tissue expression specificity, and GA levels during the dormancy stage of flower buds were controlled by certain s. After being treated with IAA or GA, the transcription level of in stems was significantly increased and showed a differential expression level between upright and weeping stems. GUS activity driven by promoter was detected in roots, stems, leaves, and flower organs of . overexpression in leads to dwarfing phenotype, increased number of rosette leaves but decreased leaf area, and delayed flowering. Our results showed that GAoxs were conserved in species, and played an essential role in regulating plant height.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11354515PMC
http://dx.doi.org/10.3390/ijms25168697DOI Listing

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