Genome-wide identification and functional characterization of LBD gene family in four Cymbidium species (Orchidaceae) and potential regulatory role of CsiLBD27 in floral development of Cymbidium sinense.

IF 3.5 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Yonglu Wei, Zengyu Lin, Jianpeng Jin, Wei Zhu, Jie Gao, Jie Li, Qi Xie, Chuqiao Lu, Genfa Zhu, Fengxi Yang
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Abstract

Background: The Lateral Organ Boundaries Domain (LBD) gene family, encompassing plant-specific LOB domain proteins, plays essential roles in various aspects of plant growth and development, and has continuously diversified its functions across numerous species. However, studies on LBD genes in the Orchidaceae family remain limited. To our knowledge, this is the first systematic investigation of the LBD gene family in Cymbidium, a genus that exhibits remarkable species and trait diversity within the Orchidaceae.

Results: In this study, we identified 122 LBD genes within the genomes of four Cymbidium species, distributed on 20 chromosomes. These genes were classified into class I (109 members, including 16 in subclass Ic/d) and class II (13 members), with protein lengths ranging from 94-477 amino acids. Promoter sequences of CymLBD genes revealed various cis-elements significant for light, hormonal, biotic, and abiotic stress responses. Transcriptomic analysis revealed tissue- and stage-specific expression of CymLBD genes in Cymbidium, and RT-qPCR and yeast one-hybrid assays indicated that CsiLBD27 may regulate floral patterning by directly binding to the CsiSEP3 promoter and activating its transcription. Under ABA treatment, the genes CsiLBD13, CsiLBD19, and CsiLBD21 displayed tissue-specific expression changes, suggesting hormone-responsive regulation. In Cymbidium ensifolium, 16 CenLBD genes were differentially expressed, while in Cymbidium mannii, 9 CmaLBD gene expression exist obvious circadian rhythm. GO and KEGG enrichment of 1074 and 399 predicted target genes, respectively, indicating a diverse range of functions for LBDs.

Conclusions: Collectively, this study provides the first comprehensive insight into the evolutionary dynamics, regulatory mechanisms, and functional roles of LBD genes in Cymbidium. These findings offer a valuable genetic resource for understanding floral and vegetative development in Orchidaceae and uncover potential novel functions of LBD genes.

4种兰属植物LBD基因家族的全基因组鉴定、功能特征及CsiLBD27在花发育中的潜在调控作用
背景:LBD基因家族包括植物特异性LOB结构域蛋白,在植物生长发育的各个方面发挥着重要作用,并在许多物种中不断多样化其功能。然而,对兰科植物LBD基因的研究仍然有限。据我们所知,这是对蕙兰LBD基因家族的首次系统研究,蕙兰属在兰科中表现出显著的物种和性状多样性。结果:在4种大花蕙兰的基因组中鉴定出122个LBD基因,分布在20条染色体上。这些基因被分为I类(109个成员,其中16个在Ic/d亚类)和II类(13个成员),蛋白质长度从94-477个氨基酸不等。CymLBD基因的启动子序列揭示了各种对光、激素、生物和非生物应激反应有重要意义的顺式元件。转录组学分析显示,CymLBD基因在蕙兰中具有组织特异性和阶段特异性表达,RT-qPCR和酵母单杂交实验表明,CsiLBD27可能通过直接结合CsiSEP3启动子并激活其转录来调节花的模式。在ABA处理下,CsiLBD13、CsiLBD19和CsiLBD21基因表现出组织特异性表达变化,提示激素响应性调控。在春兰中,16个CenLBD基因存在差异表达,而在甘露春兰中,9个CmaLBD基因的表达存在明显的昼夜节律。GO和KEGG分别富集1074个和399个预测靶基因,表明lbd具有多种功能。结论:本研究首次全面揭示了大花蕙兰LBD基因的进化动态、调控机制和功能作用。这些发现为了解兰科植物的花和营养发育以及揭示LBD基因潜在的新功能提供了宝贵的遗传资源。
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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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