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基于表型观察和转录组分析的梅花重瓣花候选基因筛选。

Candidate genes screening based on phenotypic observation and transcriptome analysis for double flower of Prunus mume.

机构信息

Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, Hubei, 430070, China.

出版信息

BMC Plant Biol. 2022 Oct 26;22(1):499. doi: 10.1186/s12870-022-03895-0.

Abstract

BACKGROUND

Prunus mume is an early spring flower of Rosaceae, which owns high application value in gardens. Being an excellent ornamental trait, the double flower trait has always been one of the important breeding goals of plant breeders. However, the key regulatory genes of double flower traits of P. mume are still unclear at present.

RESULTS

The floral organs' morphological differences of 20 single and 20 double flower cultivars of P. mume were compared firstly. And it was found that double flower trait of P. mume were often accompanied by petaloid stamen, multiple carpels and an increase in the total number of floral organs. Then, transcriptome sequencing of two representative cultivars P. mume 'Danban Lve' and P. mume 'Xiao Lve' were conducted at 3 Stage of flower bud development with distinct morphological differentiation. 3256 differentially expression genes (DEGs) were detected, and 20 candidate genes for double flower trait of P. mume were screened out including hub genes PmAP1-1 and PmAG-2 based on DEGs function analysis and WGCNA analysis. And it was found that epigenetic and hormone related genes may also play an important role in the process of double flower.

CONCLUSIONS

This study suggested that the double flower trait of P.mume is more like accumulation origin based on morphological observation. 20 genes and co-expression network related to the formation of double flower P. mume were preliminarily screened through transcriptomics analysis. The results provided a reference for further understanding of the molecular mechanism of double flower trait in P. mume.

摘要

背景

梅花是蔷薇科早春花卉,具有很高的园林应用价值。重瓣花性状作为优良的观赏性状,一直是园艺工作者的重要育种目标之一。然而,目前关于梅花重瓣花性状的关键调控基因尚不清楚。

结果

首先比较了 20 个单瓣和 20 个重瓣梅花品种的花器官形态差异,发现梅花重瓣花常伴有瓣状雄蕊、多心皮和花器官总数增加。然后,在花发育的 3 个阶段对具有明显形态分化的两个代表性品种梅花‘淡妆绿萼’和梅花‘小绿萼’进行转录组测序。共检测到 3256 个差异表达基因(DEGs),并通过 DEGs 功能分析和 WGCNA 分析筛选出 20 个梅花重瓣花候选基因,包括 hub 基因 PmAP1-1 和 PmAG-2。此外,研究发现,表观遗传和激素相关基因可能在重瓣花形成过程中也发挥着重要作用。

结论

本研究通过形态观察认为梅花重瓣花性状更倾向于累加起源。通过转录组学分析,初步筛选出 20 个与梅花重瓣花形成相关的基因和共表达网络。研究结果为进一步了解梅花重瓣花性状的分子机制提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc6f/9597982/ed5ba1a4af22/12870_2022_3895_Fig1_HTML.jpg

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