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多瓣突变体中整合的mRNA和微小RNA转录组变异为春兰的花形态建成提供了见解。

Integrated mRNA and microRNA transcriptome variations in the multi-tepal mutant provide insights into the floral patterning of the orchid Cymbidium goeringii.

作者信息

Yang Fengxi, Zhu Genfa, Wang Zhen, Liu Hailin, Xu Qingquan, Huang Dan, Zhao Chaoyi

机构信息

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

Guangdong Key Laboratory of Biotechnology for Plant Development, College of Life Science, South China Normal University, Guangzhou, 510631, People's Republic of China.

出版信息

BMC Genomics. 2017 May 11;18(1):367. doi: 10.1186/s12864-017-3756-9.

Abstract

BACKGROUND

Cymbidium goeringii is a very famous traditional orchid plant in China, which is well known for its spectacular and diverse flower morphology. In particular, the multi-tepal mutants have considerable ecological and cultural value. However, the current understanding of the molecular mechanisms of floral patterning and multi-tepal development is limited. In this study, we performed expression profiling of both microRNA (miRNA) and mRNA from wild-type and typical multi-tepal-mutant flowers of C. goeringii for the first time, to identify the genes and pathways regulating floral morphogenesis in C. goeringii.

RESULTS

Total clean reads of 98,988,774 and 100,188,534 bp were obtained from the wild-type and mutant library, respectively, and de novo assembled into 98,446 unigenes, with an average length of 989 bp. Among them, 18,489 were identified as differentially expressed genes between the two libraries according to comparative transcript profiling. The majority of the gene ontology terms and Kyoto Encyclopedia of Genes and Genomes pathway enrichment responses were for membrane-building and ploidy-related processes, consistent with the excessive floral organs and altered cell size observed in the mutant. There were 29 MADS-box genes, as well as a large number of floral-related regulators and hormone-responsive genes, considered as candidates regulating floral patterning of C. goeringii. Small RNA sequencing revealed 132 conserved miRNA families expressed in flowers of C. goeringii, and 11 miRNAs corresponding to 455 putative target genes were considered to be responsible for multi-tepal development. Importantly, integrated analysis of mRNA and miRNA sequencing data showed two transcription factor/microRNA-based genetic pathways contributing to the multi-tepal trait: well-known floral-related miR156/SPL and miR167/ARF regulatory modes involved in reproductive organ development; and the miR319/TCP4-miR396/GRF regulatory cascade probably regulating cell proliferation of the multi-tepal development.

CONCLUSIONS

Integrated mRNA and miRNA profiling data provided comprehensive gene expression information on the wild-type and multi-tepal mutant at the transcriptional level that could facilitate our understanding of the molecular mechanisms of floral patterning of C. goeringii. These data could also be used as an important resource for investigating the genetics of floral morphogenesis and various biological mechanisms of orchid plants.

摘要

背景

春兰是中国一种非常著名的传统兰花植物,以其壮观多样的花形态而闻名。特别是,多花被片突变体具有相当大的生态和文化价值。然而,目前对花模式形成和多花被片发育分子机制的了解有限。在本研究中,我们首次对春兰野生型和典型多花被片突变体花的微小RNA(miRNA)和信使核糖核酸(mRNA)进行表达谱分析,以鉴定调控春兰花形态发生的基因和途径。

结果

分别从野生型和突变体文库中获得了98,988,774和100,188,534 bp的总净读段,并从头组装成98,446个单基因,平均长度为989 bp。其中,根据比较转录谱分析,两个文库之间有18,489个基因被鉴定为差异表达基因。大多数基因本体论术语和京都基因与基因组百科全书途径富集反应与膜构建和倍性相关过程有关,这与突变体中观察到的过多花器官和细胞大小改变一致。有29个MADS盒基因,以及大量与花相关的调节因子和激素反应基因,被认为是调控春兰花模式形成的候选基因。小RNA测序揭示了在春兰花中表达的132个保守miRNA家族,11个对应455个假定靶基因的miRNA被认为与多花被片发育有关。重要的是,mRNA和miRNA测序数据的综合分析显示了两条基于转录因子/微小RNA的遗传途径导致多花被片性状:参与生殖器官发育的著名的与花相关的miR156/SPL和miR167/ARF调控模式;以及可能调控多花被片发育细胞增殖的miR319/TCP4-miR396/GRF调控级联。

结论

mRNA和miRNA表达谱数据的综合提供了野生型和多花被片突变体在转录水平上全面的基因表达信息,有助于我们理解春兰花模式形成的分子机制。这些数据也可作为研究兰花植物花形态发生遗传学和各种生物学机制的重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eea5/5426072/d61bf8989dee/12864_2017_3756_Fig1_HTML.jpg

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