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柳杉基因组中 MIKC 型 MADS 框基因的全基因组鉴定与分析。

Genome-wide identification and analysis of MIKC-type MADS-box genes expression in Chimonanthus salicifolius.

机构信息

School of Landscape Architecture, Zhejiang Agriculture and Forestry University, Hangzhou, 311300, China.

出版信息

Genes Genomics. 2023 Sep;45(9):1127-1141. doi: 10.1007/s13258-023-01420-7. Epub 2023 Jul 12.

Abstract

BACKGROUND

MIKC type MADS-box transcription factors are one of the largest gene families and play a pivotal role in flowering time and flower development. Chimonanthus salicifolius belongs to the family Calycanthaceae and has a unique flowering time and flowering morphology compared to other Chimonanthus species, but the research on MIKC type MADS-box gene family of C. salicifolius has not been reported.

OBJECTIVE

Identification, comprehensive bioinformatic analysis, the expression pattern of MIKC-type MADS-box gene family from different tissues of C. salicifolius.

METHODS

Genome-wide investigation and expression pattern under different tissues of the MIKC-type MADS-box gene family in C. salicifolius, and their phylogenetic relationships, evolutionary characteristics, gene structure, motif distribution, promoter cis-acting element were performed.

RESULTS

A total of 29 MIKC-type MADS-box genes were identified from the whole genome sequencing. Interspecies synteny analysis revealed more significant collinearity between C. salicifolius and the magnoliids species compared to eudicots and monocots. MIKC-type MADS-box genes from the same subfamily share similar distribution patterns, gene structure, and expression patterns. Compared with Arabidopsis thaliana, Nymphaea colorata, and Chimonanthus praecox, the FLC genes were absent in C. salicifolius, while the AGL6 subfamily was expanded in C. salicifolius. The selectively expanded promoter (AGL6) and lack of repressor (FLC) genes may explain the earlier flowering in C. salicifolius. The loss of the AP3 homologous gene in C. salicifolius is probably the primary cause of the morphological distinction between C. salicifolius and C. praecox. The csAGL6a gene is specifically expressed in the flowering process and indicates the potential function of promoting flowering.

CONCLUSION

This study offers a genome-wide identification and expression profiling of the MIKC-types MADS-box genes in the C. salicifolius, and establishes the foundation for screening flowering development genes and understanding the potential function of the MIKC-types MADS-box genes in the C. salicifolius.

摘要

背景

MIKC 型 MADS 盒转录因子是最大的基因家族之一,在开花时间和花发育中起着关键作用。蜡梅属植物属于蜡梅科,与其他蜡梅属植物相比,具有独特的开花时间和开花形态,但蜡梅属植物 MIKC 型 MADS 盒基因家族的研究尚未报道。

目的

从蜡梅不同组织中鉴定、综合生物信息学分析 MIKC 型 MADS 盒基因家族,并分析其表达模式。

方法

对蜡梅基因组范围内 MIKC 型 MADS 盒基因家族进行全基因组鉴定和不同组织表达模式分析,并对其系统发育关系、进化特征、基因结构、基序分布、启动子顺式作用元件进行分析。

结果

从全基因组测序中共鉴定出 29 个 MIKC 型 MADS 盒基因。种间共线性分析表明,与双子叶植物和单子叶植物相比,蜡梅与木兰类植物具有更显著的共线性。来自同一亚家族的 MIKC 型 MADS 盒基因具有相似的分布模式、基因结构和表达模式。与拟南芥、睡莲和腊梅相比,蜡梅中不存在 FLC 基因,而 AGL6 亚家族在蜡梅中扩张。选择性扩张的启动子(AGL6)和缺乏抑制子(FLC)基因可能解释了蜡梅的早花现象。蜡梅中 AP3 同源基因的缺失可能是蜡梅与腊梅形态差异的主要原因。csAGL6a 基因在开花过程中特异性表达,表明其潜在的促进开花功能。

结论

本研究对蜡梅 MIKC 型 MADS 盒基因进行了全基因组鉴定和表达谱分析,为筛选开花发育基因和理解 MIKC 型 MADS 盒基因在蜡梅中的潜在功能奠定了基础。

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