Transcriptional Cascade in the Regulation of Flowering in the Bamboo Orchid .

Biomolecules

Guangdong Key Laboratory of Ornamental Plant Germplasm Innovation and Utilization, Environmental Horticulture Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China.

Published: May 2021

AI Article Synopsis

  • The study investigates the genetic mechanisms behind continuous flowering in certain orchids, which is uncommon compared to other types.
  • It uses RNA-seq transcriptome analysis to identify about 700 differentially expressed genes (DEGs) and classify them into 35 transcription factor (TF) families, highlighting the bHLH, MYB, and WRKY families as the most prevalent.
  • Key transcription factors like WRKY34 and ERF12 are linked to environmental signals, while others like MYB108 and bHLH49 regulate hormonal balance, suggesting a complex network of genes controlling orchid flowering.

Article Abstract

Flowering in orchids is the most important horticultural trait regulated by multiple mechanisms. flowers throughout the year unlike other orchids with a narrow flowering span. However, little is known of the genetic regulation of this peculiar flowering pattern. This study identifies a number of transcription factor (TF) families in five stages of flower development and four tissue types through RNA-seq transcriptome. About 700 DEGs were annotated to the transcription factor category and classified into 35 TF families, which were involved in multiple signaling pathways. The most abundant TF family was bHLH, followed by MYB and WRKY. Some important members of the bHLH, WRKY, MYB, TCP, and MADS-box families were found to regulate the flowering genes at transcriptional levels. Particularly, the TFs WRKY34 and ERF12 possibly respond to vernalization and photoperiod signaling, MYB108, RR9, VP1, and bHLH49 regulate hormonal balance, and CCA1 may control the circadian pathway. MADS-box TFs including MADS6, 14, 16, AGL5, and SEP may be important regulators of flowering in . Therefore, this study provides a theoretical basis for understanding the molecular mechanism of flowering in .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8224086PMC
http://dx.doi.org/10.3390/biom11060771DOI Listing

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