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Organ-Specific Gene Expression Reveals the Role of the Cymbidium ensifolium-miR396/Growth-Regulating Factors Module in Flower Development of the Orchid Plant Cymbidium ensifolium
Yang, Fengxi; Lu, Chuqiao; Wei, Yonglu; Wu, Jieqiu; Ren, Rui; Gao, Jie; Ahmad, Sagheer; Jin, Jianpeng; Xv, Yechun; Liang, Gang1; Zhu, Genfa
2022
Source PublicationFRONTIERS IN PLANT SCIENCE
ISSN1664-462X
Volume12Issue:_Pages:-
Abstract

Orchids are some of the most popular ornamental plants worldwide. Orchid floral morphology has increasingly attracted horticultural and commercial attention. Although multiple genes have been shown to be involved in the formation of the orchid flower, the underlying multi-level regulatory networks are largely unknown. In this study, we analyzed the ontogeny of flower development in Cymbidium ensifolium, a traditional orchid in the tropical and subtropical regions of Asia, by performing deep sequencing of the transcriptome of individual flower organs to discover organ-specific genes potentially involved in their growth. We identified 3,017 differentially-expressed genes (DEGs) during the development of various flower organs, and observed over-representation of GROWTH-REGULATING FACTORS (GRFs) specific to flower column (gynostemium). Eleven C. ensifolium GRFs (CeGRFs) from our transcriptome data clustered into five phylogenetic subgroups. Ten of these GRFs shared a region complementary to C. ensifolium microRNA396 (Ce-miR396), and degradome sequencing confirmed the cleavage of transcripts derived from seven CeGRFs. We cloned Ce-miR396 and used a protoplast-based transient expression system to overexpress it in Cymbidium protoplasts. We observed a significant decrease in the transcripts of several CeGRFs in flowers and leaves, indicating a potential role for miR396-GRF module in organ development through the cleavage of distinct CeGRFs. Temporal and spatial expression analysis indicated that most CeGRF transcripts accumulated in flower buds and column tissues, where Ce-miR396 expression was the lowest. Expression dynamics in wild type and floral-defective mutants further confirmed a strong correlation between Ce-miR396, CeGRFs, and flower organ development and column specification. Moreover, overexpression of Ce-miR396 in Nicotiana tabacum resulted in curved pistils and reduced fertility, implying that the conserved role of Ce-miR396 in floral development. These results provide tools to better understand the biological roles of GRFs in orchid development, and open new avenues for the diversification of orchid floral patterns.

Keywordorchid Cymbidium ensifolium floral organ growth-regulating factor MiR396
Subject AreaPlant Sciences
DOI10.3389/fpls.2021.799778
Indexed BySCI
Language英语
WOS IDWOS:000753613600001
Citation statistics
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/13008
Collection2012年后新成立研究组
Affiliation1.Guangdong Acad Agr Sci, Environm Hort Res Inst, Guangdong Key Lab Ornamental Plant Germplasm Inno, Guangzhou, Peoples R China
2.CAS Key Lab Trop Plant Resources & Sustainable Us, Xishuangbanna Trop Bot Garden, Kunming, Yunnan, Peoples R China
Recommended Citation
GB/T 7714
Yang, Fengxi,Lu, Chuqiao,Wei, Yonglu,et al. Organ-Specific Gene Expression Reveals the Role of the Cymbidium ensifolium-miR396/Growth-Regulating Factors Module in Flower Development of the Orchid Plant Cymbidium ensifolium[J]. FRONTIERS IN PLANT SCIENCE,2022,12(_):-.
APA Yang, Fengxi.,Lu, Chuqiao.,Wei, Yonglu.,Wu, Jieqiu.,Ren, Rui.,...&Zhu, Genfa.(2022).Organ-Specific Gene Expression Reveals the Role of the Cymbidium ensifolium-miR396/Growth-Regulating Factors Module in Flower Development of the Orchid Plant Cymbidium ensifolium.FRONTIERS IN PLANT SCIENCE,12(_),-.
MLA Yang, Fengxi,et al."Organ-Specific Gene Expression Reveals the Role of the Cymbidium ensifolium-miR396/Growth-Regulating Factors Module in Flower Development of the Orchid Plant Cymbidium ensifolium".FRONTIERS IN PLANT SCIENCE 12._(2022):-.
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